<PersonList Date="2026-04-11T23:50:18.690"><Person PersonID="104339"><Name><FullName>Ron Alterman, M.D.</FullName><FirstName>Ron</FirstName><LastName>Alterman</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2>Neurosurgery - Suite 3B</Address2><Address3>110 Francis Street</Address3><Address4>Boston, MA 02215</Address4><Telephone>617/632-7246</Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>2</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Professor of Neurosurgery</JobTitle><FacultyType FacultyTypeSort="0">Full Professor</FacultyType></Affiliation><Affiliation Primary="false"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Head of the Department of Neurosurgery at Beth Israel-Deaconess Medical Center</JobTitle><FacultyType FacultyTypeSort="5">Other Faculty</FacultyType></Affiliation></AffiliationList><PhotoUrl>https://connects.catalyst.harvard.edu/Profiles/profile/Modules/CustomViewPersonGeneralInfo/PhotoHandler.ashx?NodeID=1234117</PhotoUrl><PublicationList><Publication Source="PubMed" PMID="40838518" PMCID="PMC12368798"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40838518</URL><PublicationReference>Cognitive outcomes of deep brain stimulation depend on age and hippocampal connectivity in Parkinson's and Alzheimer's disease. Alzheimers Dement. 2025 Aug; 21(8):e70498.</PublicationReference><Title>Cognitive outcomes of deep brain stimulation depend on age and hippocampal connectivity in Parkinson's and Alzheimer's disease.</Title><Authors>Howard CW, Reich M, Luo L, Pacheco-Barrios N, Alterman R, Rios AS, Guo M, Luo Z, Friedrich H, Pines A, Montaser-Kouhsari L, Drew W, Hart L, Meyer G, Rajamani N, Friedrich MU, Milanese V, Lozano A, Picht T, Faust K, Horn A, Fox MD. </Authors><Journal>Alzheimers Dement</Journal><Date>2025 Aug</Date><IssueInfo>21(8):e70498</IssueInfo></Publication><Publication Source="PubMed" PMID="40388898"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40388898</URL><PublicationReference>Battery Longevity in Deep Brain Stimulation for Parkinson's Disease. Stereotact Funct Neurosurg. 2025; 103(4):227-235.</PublicationReference><Title>Battery Longevity in Deep Brain Stimulation for Parkinson's Disease.</Title><Authors>Yazdanian F, Enriquez-Marulanda A, Dehmamy N, Mortezaei A, Hassan T, Shils JL, Alterman RL. </Authors><Journal>Stereotact Funct Neurosurg</Journal><Date>2025</Date><IssueInfo>103(4):227-235</IssueInfo></Publication><Publication Source="PubMed" PMID="39951908"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39951908</URL><PublicationReference>Meaningful work, organizational commitment and administrative burden among attending neurosurgeons. Neurochirurgie. 2025 Mar; 71(2):101645.</PublicationReference><Title>Meaningful work, organizational commitment and administrative burden among attending neurosurgeons.</Title><Authors>Mackel CE, Saway BF, Alterman RL, Spiotta AM, Sweet JA, Davis RB, Williamson T, Stippler M. </Authors><Journal>Neurochirurgie</Journal><Date>2025 Mar</Date><IssueInfo>71(2):101645</IssueInfo></Publication><Publication Source="PubMed" PMID="38906476"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38906476</URL><PublicationReference>Factors Associated with Extended Hospitalization in Patients Who Had Adjuvant Middle Meningeal Artery Embolization After Conventional Surgery for Chronic Subdural Hematomas. World Neurosurg. 2024 09; 189:e168-e176.</PublicationReference><Title>Factors Associated with Extended Hospitalization in Patients Who Had Adjuvant Middle Meningeal Artery Embolization After Conventional Surgery for Chronic Subdural Hematomas.</Title><Authors>Filo J, Salih M, Alwakaa O, Ramirez-Velandia F, Shutran M, Vega RA, Stippler M, Papavassiliou E, Alterman RL, Thomas A, Taussky P, Moore J, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2024 09</Date><IssueInfo>189:e168-e176</IssueInfo></Publication><Publication Source="PubMed" PMID="37831227"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37831227</URL><PublicationReference>Surgery in octogenarians with intracranial meningiomas improves functional outcome at 1 year. Acta Neurochir (Wien). 2023 12; 165(12):4183-4189.</PublicationReference><Title>Surgery in octogenarians with intracranial meningiomas improves functional outcome at 1 year.</Title><Authors>Filippidis AS, Phillips KR, Lopez-Rivera V, Enriquez-Marulanda A, Mackel CE, Alterman RL, Vega RA. </Authors><Journal>Acta Neurochir (Wien)</Journal><Date>2023 12</Date><IssueInfo>165(12):4183-4189</IssueInfo></Publication><Publication Source="PubMed" PMID="37039586"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37039586</URL><PublicationReference>Targeting Accuracy of the Leksell Vantage Stereotactic System for Deep Brain Stimulation Surgery: A Retrospective Review. Oper Neurosurg. 2023 06 01; 24(6):602-609.</PublicationReference><Title>Targeting Accuracy of the Leksell Vantage Stereotactic System for Deep Brain Stimulation Surgery: A Retrospective Review.</Title><Authors>Phillips KR, Mackel CE, Alterman RL. </Authors><Journal>Oper Neurosurg</Journal><Date>2023 06 01</Date><IssueInfo>24(6):602-609</IssueInfo></Publication><Publication Source="PubMed" PMID="37151152" PMCID="PMC10172009"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37151152</URL><PublicationReference>Intracranial Metastasis of Extracranial Chondrosarcoma: Systematic Review With Illustrative Case. Brain Tumor Res Treat. 2023 Apr; 11(2):103-113.</PublicationReference><Title>Intracranial Metastasis of Extracranial Chondrosarcoma: Systematic Review With Illustrative Case.</Title><Authors>Mackel CE, Rosenberg H, Varma H, Uhlmann EJ, Vega RA, Alterman RL. </Authors><Journal>Brain Tumor Res Treat</Journal><Date>2023 Apr</Date><IssueInfo>11(2):103-113</IssueInfo></Publication><Publication Source="PubMed" PMID="37123627" PMCID="PMC10139985"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37123627</URL><PublicationReference>Predictors of extended length of stay related to craniotomy for tumor resection. World Neurosurg X. 2023 Jul; 19:100176.</PublicationReference><Title>Predictors of extended length of stay related to craniotomy for tumor resection.</Title><Authors>Phillips KR, Enriquez-Marulanda A, Mackel C, Ogbonna J, Moore JM, Vega RA, Alterman RL. </Authors><Journal>World Neurosurg X</Journal><Date>2023 Jul</Date><IssueInfo>19:100176</IssueInfo></Publication><Publication Source="PubMed" PMID="36921243"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36921243</URL><PublicationReference>Outcome of Chronic Subdural Hematoma Intervention in Patients on Long-Term Antiplatelet Therapy-A Propensity Score Matched Analysis. Neurosurgery. 2023 09 01; 93(3):586-591.</PublicationReference><Title>Outcome of Chronic Subdural Hematoma Intervention in Patients on Long-Term Antiplatelet Therapy-A Propensity Score Matched Analysis.</Title><Authors>Salih M, Young M, Garcia A, Stippler M, Papavassiliou E, Alterman RL, Thomas AJ, Taussky P, Moore J, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2023 09 01</Date><IssueInfo>93(3):586-591</IssueInfo></Publication><Publication Source="PubMed" PMID="36701570"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36701570</URL><PublicationReference>Complications Related to Deep Brain Stimulation Lead Implantation: A Single-Surgeon Case Series. Oper Neurosurg. 2023 03 01; 24(3):276-282.</PublicationReference><Title>Complications Related to Deep Brain Stimulation Lead Implantation: A Single-Surgeon Case Series.</Title><Authors>Powers AY, Nguyen M, Phillips K, Mackel CE, Alterman RL. </Authors><Journal>Oper Neurosurg</Journal><Date>2023 03 01</Date><IssueInfo>24(3):276-282</IssueInfo></Publication><Publication Source="PubMed" PMID="35985470"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35985470</URL><PublicationReference>Effective deep brain stimulation lead revision guided by computerized lead localization: A case report. Brain Stimul. 2022 Sep-Oct; 15(5):1125-1127.</PublicationReference><Title>Effective deep brain stimulation lead revision guided by computerized lead localization: A case report.</Title><Authors>Nguyen M, Ali SM, Alterman RL, Luo L. </Authors><Journal>Brain Stimul</Journal><Date>2022 Sep-Oct</Date><IssueInfo>15(5):1125-1127</IssueInfo></Publication><Publication Source="PubMed" PMID="35319531" PMCID="PMC9514751"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35319531</URL><PublicationReference>Moral Distress and Moral Injury Among Attending Neurosurgeons: A National Survey. Neurosurgery. 2022 07 01; 91(1):59-65.</PublicationReference><Title>Moral Distress and Moral Injury Among Attending Neurosurgeons: A National Survey.</Title><Authors>Mackel CE, Alterman RL, Buss MK, Reynolds RM, Fox WC, Spiotta AM, Davis RB, Stippler M. </Authors><Journal>Neurosurgery</Journal><Date>2022 07 01</Date><IssueInfo>91(1):59-65</IssueInfo></Publication><Publication Source="PubMed" PMID="34850056" PMCID="PMC8716066"><URL>http://www.ncbi.nlm.nih.gov/pubmed/34850056</URL><PublicationReference>Tumor-Derived Cell Culture Model for the Investigation of Meningioma Biology. J Neuropathol Exp Neurol. 2021 12 29; 80(12):1117-1124.</PublicationReference><Title>Tumor-Derived Cell Culture Model for the Investigation of Meningioma Biology.</Title><Authors>Uhlmann EJ, Rabinovsky R, Varma H, El Fatimy R, Kasper EM, Moore JM, Vega RA, Thomas AJ, Alterman RL, Stippler M, Anderson MP, Uhlmann EN, Kipper FC, Krichevsky AM. </Authors><Journal>J Neuropathol Exp Neurol</Journal><Date>2021 12 29</Date><IssueInfo>80(12):1117-1124</IssueInfo></Publication><Publication Source="PubMed" PMID="34690908" PMCID="PMC8531078"><URL>http://www.ncbi.nlm.nih.gov/pubmed/34690908</URL><PublicationReference>Short- and Long-Term Effects of DBS on Gait in Parkinson's Disease. Front Neurol. 2021; 12:688760.</PublicationReference><Title>Short- and Long-Term Effects of DBS on Gait in Parkinson's Disease.</Title><Authors>Brozova H, Barnaure I, Ruzicka E, Stochl J, Alterman R, Tagliati M. </Authors><Journal>Front Neurol</Journal><Date>2021</Date><IssueInfo>12:688760</IssueInfo></Publication><Publication Source="PubMed" PMID="34171921"><URL>http://www.ncbi.nlm.nih.gov/pubmed/34171921</URL><PublicationReference>Middle Meningeal Artery Embolization Versus Conventional Treatment of Chronic Subdural Hematomas. Neurosurgery. 2021 08 16; 89(3):486-495.</PublicationReference><Title>Middle Meningeal Artery Embolization Versus Conventional Treatment of Chronic Subdural Hematomas.</Title><Authors>Enriquez-Marulanda A, Gomez-Paz S, Salem MM, Mallick A, Motiei-Langroudi R, Arle JE, Stippler M, Papavassiliou E, Alterman RL, Ogilvy CS, Moore JM, Thomas AJ. </Authors><Journal>Neurosurgery</Journal><Date>2021 08 16</Date><IssueInfo>89(3):486-495</IssueInfo></Publication><Publication Source="PubMed" PMID="34298519"><URL>http://www.ncbi.nlm.nih.gov/pubmed/34298519</URL><PublicationReference>Cellular transplantation for Parkinson's disease: a strategy whose time has passed. J Neurosurg. 2021 12 01; 135(6):1898-1902.</PublicationReference><Title>Cellular transplantation for Parkinson's disease: a strategy whose time has passed.</Title><Authors>Alterman RL. </Authors><Journal>J Neurosurg</Journal><Date>2021 12 01</Date><IssueInfo>135(6):1898-1902</IssueInfo></Publication><Publication Source="PubMed" PMID="33913497"><URL>http://www.ncbi.nlm.nih.gov/pubmed/33913497</URL><PublicationReference>Letter: Randomized Trial of Unilateral Focused Ultrasound Subthalamotomy for Parkinson Disease. Neurosurgery. 2021 06 15; 89(1):E95-E96.</PublicationReference><Title>Letter: Randomized Trial of Unilateral Focused Ultrasound Subthalamotomy for Parkinson Disease.</Title><Authors>Alterman RL, Schulder M. </Authors><Journal>Neurosurgery</Journal><Date>2021 06 15</Date><IssueInfo>89(1):E95-E96</IssueInfo></Publication><Publication Source="PubMed" PMID="34221568" PMCID="PMC8248242"><URL>http://www.ncbi.nlm.nih.gov/pubmed/34221568</URL><PublicationReference>Parkinsonism reversed from treatment of pineal non-germinomatous germ cell tumor. Surg Neurol Int. 2021; 12:237.</PublicationReference><Title>Parkinsonism reversed from treatment of pineal non-germinomatous germ cell tumor.</Title><Authors>Cole SM, Sarangi S, Einstein D, McMasters M, Alterman R, Bruce J, Hertan L, Shih HA, Wong ET. </Authors><Journal>Surg Neurol Int</Journal><Date>2021</Date><IssueInfo>12:237</IssueInfo></Publication><Publication Source="PubMed" PMID="33289520"><URL>http://www.ncbi.nlm.nih.gov/pubmed/33289520</URL><PublicationReference>Letter: Stem Cell Transplantation for Parkinson Disease: Déjà Vu All Over Again? Neurosurgery. 2021 01 13; 88(2):E216-E217.</PublicationReference><Title>Letter: Stem Cell Transplantation for Parkinson Disease: Déjà Vu All Over Again?</Title><Authors>Alterman RL. </Authors><Journal>Neurosurgery</Journal><Date>2021 01 13</Date><IssueInfo>88(2):E216-E217</IssueInfo></Publication><Publication Source="PubMed" PMID="33339691"><URL>http://www.ncbi.nlm.nih.gov/pubmed/33339691</URL><PublicationReference>GCB-type is a favorable prognostic factor in primary CNS diffuse large B-cell lymphomas. J Clin Neurosci. 2021 Jan; 83:49-55.</PublicationReference><Title>GCB-type is a favorable prognostic factor in primary CNS diffuse large B-cell lymphomas.</Title><Authors>Marcus C, Maragkos GA, Alterman RL, Uhlmann E, Pihan G, Varma H. </Authors><Journal>J Clin Neurosci</Journal><Date>2021 Jan</Date><IssueInfo>83:49-55</IssueInfo></Publication><Publication Source="PubMed" PMID="33303306"><URL>http://www.ncbi.nlm.nih.gov/pubmed/33303306</URL><PublicationReference>A tale of two tinnituses: Does hearing status influence central tinnitus localization? Med Hypotheses. 2021 Jan; 146:110444.</PublicationReference><Title>A tale of two tinnituses: Does hearing status influence central tinnitus localization?</Title><Authors>Naples JG, Sadler S, Watson N, Miller LE, Alterman RL. </Authors><Journal>Med Hypotheses</Journal><Date>2021 Jan</Date><IssueInfo>146:110444</IssueInfo></Publication><Publication Source="PubMed" PMID="32710790"><URL>http://www.ncbi.nlm.nih.gov/pubmed/32710790</URL><PublicationReference>Risk Factors for Wire Fracture or Tethering in Deep Brain Stimulation: A 15-Year Experience. Oper Neurosurg. 2020 11 16; 19(6):708-714.</PublicationReference><Title>Risk Factors for Wire Fracture or Tethering in Deep Brain Stimulation: A 15-Year Experience.</Title><Authors>Mackel CE, Papavassiliou E, Alterman RL. </Authors><Journal>Oper Neurosurg</Journal><Date>2020 11 16</Date><IssueInfo>19(6):708-714</IssueInfo></Publication><Publication Source="PubMed" PMID="31841105"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31841105</URL><PublicationReference>A high-grade glioma with SOS1 amplification. Clin Neuropathol. 2020 May/Jun; 39(3):126-134.</PublicationReference><Title>A high-grade glioma with SOS1 amplification.</Title><Authors>Vidal B, Bryke C, Hsu N, Alterman R, Yeo AT, Charest A, Varma H. </Authors><Journal>Clin Neuropathol</Journal><Date>2020 May/Jun</Date><IssueInfo>39(3):126-134</IssueInfo></Publication><Publication Source="PubMed" PMID="31883483"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31883483</URL><PublicationReference>Factors Affecting the Diagnostic Yield of Frame-Based Stereotactic Intracranial Biopsies. World Neurosurg. 2020 Mar; 135:e695-e701.</PublicationReference><Title>Factors Affecting the Diagnostic Yield of Frame-Based Stereotactic Intracranial Biopsies.</Title><Authors>Maragkos GA, Penumaka A, Ahrendsen JT, Salem MM, Nelton EB, Alterman RL. </Authors><Journal>World Neurosurg</Journal><Date>2020 Mar</Date><IssueInfo>135:e695-e701</IssueInfo></Publication><Publication Source="PubMed" PMID="30265326"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30265326</URL><PublicationReference>Factors Predicting the Need for Surgery of the Opposite Side After Unilateral Evacuation of Bilateral Chronic Subdural Hematomas. Neurosurgery. 2019 11 01; 85(5):648-655.</PublicationReference><Title>Factors Predicting the Need for Surgery of the Opposite Side After Unilateral Evacuation of Bilateral Chronic Subdural Hematomas.</Title><Authors>Motiei-Langroudi R, Thomas AJ, Ascanio L, Alturki A, Papavassiliou E, Kasper EM, Arle J, Alterman RL, Ogilvy CS, Stippler M. </Authors><Journal>Neurosurgery</Journal><Date>2019 11 01</Date><IssueInfo>85(5):648-655</IssueInfo></Publication><Publication Source="PubMed" PMID="31543803" PMCID="PMC6738267"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31543803</URL><PublicationReference>Efficacy of Deep Brain Stimulation in a Patient with Genetically Confirmed Chorea-Acanthocytosis. Case Rep Neurol. 2019 May-Aug; 11(2):199-204.</PublicationReference><Title>Efficacy of Deep Brain Stimulation in a Patient with Genetically Confirmed Chorea-Acanthocytosis.</Title><Authors>Richard A, Hsu J, Baum P, Alterman R, Simon DK. </Authors><Journal>Case Rep Neurol</Journal><Date>2019 May-Aug</Date><IssueInfo>11(2):199-204</IssueInfo></Publication><Publication Source="PubMed" PMID="30641839"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30641839</URL><PublicationReference>Factors influencing the presence of hemiparesis in chronic subdural hematoma. J Neurosurg. 2019 12 01; 131(6):1926-1930.</PublicationReference><Title>Factors influencing the presence of hemiparesis in chronic subdural hematoma.</Title><Authors>Motiei-Langroudi R, Alterman RL, Stippler M, Phan K, Alturki AY, Papavassiliou E, Kasper EM, Arle J, Ogilvy CS, Thomas AJ. </Authors><Journal>J Neurosurg</Journal><Date>2019 12 01</Date><IssueInfo>131(6):1926-1930</IssueInfo></Publication><Publication Source="PubMed" PMID="30011048"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30011048</URL><PublicationReference>In Reply: Commentary: Utilization of Quantitative Susceptibility Mapping for Direct Targeting of the Subthalamic Nucleus During Deep Brain Stimulation Surgery. Oper Neurosurg. 2018 10 01; 15(4):45.</PublicationReference><Title>In Reply: Commentary: Utilization of Quantitative Susceptibility Mapping for Direct Targeting of the Subthalamic Nucleus During Deep Brain Stimulation Surgery.</Title><Authors>Alterman RL, Fleishman A, Ngo L. </Authors><Journal>Oper Neurosurg</Journal><Date>2018 10 01</Date><IssueInfo>15(4):45</IssueInfo></Publication><Publication Source="PubMed" PMID="30838292" PMCID="PMC6336377"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30838292</URL><PublicationReference>Genetic Subtypes and Deep Brain Stimulation in Dystonia. Mov Disord Clin Pract. 2018 Jul-Aug; 5(4):357-360.</PublicationReference><Title>Genetic Subtypes and Deep Brain Stimulation in Dystonia.</Title><Authors>Alterman RL, Filippidis AS. </Authors><Journal>Mov Disord Clin Pract</Journal><Date>2018 Jul-Aug</Date><IssueInfo>5(4):357-360</IssueInfo></Publication><Publication Source="PubMed" PMID="30153389"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30153389</URL><PublicationReference>Sustained quality-of-life improvements over 10 years after deep brain stimulation for dystonia. Mov Disord. 2018 07; 33(7):1160-1167.</PublicationReference><Title>Sustained quality-of-life improvements over 10 years after deep brain stimulation for dystonia.</Title><Authors>Hogg E, During E, E Tan E, Athreya K, Eskenazi J, Wertheimer J, Mamelak AN, Alterman RL, Tagliati M. </Authors><Journal>Mov Disord</Journal><Date>2018 07</Date><IssueInfo>33(7):1160-1167</IssueInfo></Publication><Publication Source="PubMed" PMID="29538685" PMCID="PMC6636249"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29538685</URL><PublicationReference>Congress of Neurological Surgeons Systematic Review and Evidence-Based Guideline on Subthalamic Nucleus and Globus Pallidus Internus Deep Brain Stimulation for the Treatment of Patients With Parkinson's Disease: Executive Summary. Neurosurgery. 2018 06 01; 82(6):753-756.</PublicationReference><Title>Congress of Neurological Surgeons Systematic Review and Evidence-Based Guideline on Subthalamic Nucleus and Globus Pallidus Internus Deep Brain Stimulation for the Treatment of Patients With Parkinson's Disease: Executive Summary.</Title><Authors>Rughani A, Schwalb JM, Sidiropoulos C, Pilitsis J, Ramirez-Zamora A, Sweet JA, Mittal S, Espay AJ, Martinez JG, Abosch A, Eskandar E, Gross R, Alterman R, Hamani C. </Authors><Journal>Neurosurgery</Journal><Date>2018 06 01</Date><IssueInfo>82(6):753-756</IssueInfo></Publication><Publication Source="PubMed" PMID="28633383"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28633383</URL><PublicationReference>Commentary: Utilization of Quantitative Susceptibility Mapping for Direct Targeting of the Subthalamic Nucleus During Deep Brain Stimulation Surgery. Oper Neurosurg. 2018 04 01; 14(4):420-421.</PublicationReference><Title>Commentary: Utilization of Quantitative Susceptibility Mapping for Direct Targeting of the Subthalamic Nucleus During Deep Brain Stimulation Surgery.</Title><Authors>Alterman RL. </Authors><Journal>Oper Neurosurg</Journal><Date>2018 04 01</Date><IssueInfo>14(4):420-421</IssueInfo></Publication><Publication Source="PubMed" PMID="28962000"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28962000</URL><PublicationReference>Stereotactic Drainage of Brainstem Abscess With the BrainLab Varioguide™ System and the Airo™ Intraoperative CT Scanner: Technical Case Report. Oper Neurosurg. 2018 04 01; 14(4):E46-E50.</PublicationReference><Title>Stereotactic Drainage of Brainstem Abscess With the BrainLab Varioguide™ System and the Airo™ Intraoperative CT Scanner: Technical Case Report.</Title><Authors>Almeida CC, Uzuner A, Alterman RL. </Authors><Journal>Oper Neurosurg</Journal><Date>2018 04 01</Date><IssueInfo>14(4):E46-E50</IssueInfo></Publication><Publication Source="PubMed" PMID="29243977"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29243977</URL><PublicationReference>Factors predicting reoperation of chronic subdural hematoma following primary surgical evacuation. J Neurosurg. 2018 11 01; 129(5):1143-1150.</PublicationReference><Title>Factors predicting reoperation of chronic subdural hematoma following primary surgical evacuation.</Title><Authors>Motiei-Langroudi R, Stippler M, Shi S, Adeeb N, Gupta R, Griessenauer CJ, Papavassiliou E, Kasper EM, Arle J, Alterman RL, Ogilvy CS, Thomas AJ. </Authors><Journal>J Neurosurg</Journal><Date>2018 11 01</Date><IssueInfo>129(5):1143-1150</IssueInfo></Publication><Publication Source="PubMed" PMID="29158092"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29158092</URL><PublicationReference>Medical Malpractice in Neurosurgery: A Comprehensive Analysis. World Neurosurg. 2018 Feb; 110:e552-e559.</PublicationReference><Title>Medical Malpractice in Neurosurgery: A Comprehensive Analysis.</Title><Authors>Thomas R, Gupta R, Griessenauer CJ, Moore JM, Adeeb N, Motiei-Langroudi R, Guidal B, Agarwal N, Alterman RL, Friedlander RM, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2018 Feb</Date><IssueInfo>110:e552-e559</IssueInfo></Publication><Publication Source="PubMed" PMID="28515706" PMCID="PMC5413505"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28515706</URL><PublicationReference>Research Priorities in Limb and Task-Specific Dystonias. Front Neurol. 2017; 8:170.</PublicationReference><Title>Research Priorities in Limb and Task-Specific Dystonias.</Title><Authors>Pirio Richardson S, Altenmüller E, Alter K, Alterman RL, Chen R, Frucht S, Furuya S, Jankovic J, Jinnah HA, Kimberley TJ, Lungu C, Perlmutter JS, Prudente CN, Hallett M. </Authors><Journal>Front Neurol</Journal><Date>2017</Date><IssueInfo>8:170</IssueInfo></Publication><Publication Source="PubMed" PMID="28421851" PMCID="PMC5888853"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28421851</URL><PublicationReference>Global and multi-focal changes in cerebral blood flow during subthalamic nucleus stimulation in Parkinson's disease. J Cereb Blood Flow Metab. 2018 04; 38(4):697-705.</PublicationReference><Title>Global and multi-focal changes in cerebral blood flow during subthalamic nucleus stimulation in Parkinson's disease.</Title><Authors>Mubeen AM, Ardekani B, Tagliati M, Alterman R, Dhawan V, Eidelberg D, Sidtis JJ. </Authors><Journal>J Cereb Blood Flow Metab</Journal><Date>2018 04</Date><IssueInfo>38(4):697-705</IssueInfo></Publication><Publication Source="PubMed" PMID="28195357"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28195357</URL><PublicationReference>One step backward: Magnetic resonance guided focused ultrasound thalamotomy for the treatment of medically refractory tremor. Ann Neurol. 2017 03; 81(3):348-350.</PublicationReference><Title>One step backward: Magnetic resonance guided focused ultrasound thalamotomy for the treatment of medically refractory tremor.</Title><Authors>Alterman RL. </Authors><Journal>Ann Neurol</Journal><Date>2017 03</Date><IssueInfo>81(3):348-350</IssueInfo></Publication><Publication Source="PubMed" PMID="28160152" PMCID="PMC5357445"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28160152</URL><PublicationReference>Deep brain stimulation for dystonia: a novel perspective on the value of genetic testing. J Neural Transm (Vienna). 2017 04; 124(4):417-430.</PublicationReference><Title>Deep brain stimulation for dystonia: a novel perspective on the value of genetic testing.</Title><Authors>Jinnah HA, Alterman R, Klein C, Krauss JK, Moro E, Vidailhet M, Raike R. </Authors><Journal>J Neural Transm (Vienna)</Journal><Date>2017 04</Date><IssueInfo>124(4):417-430</IssueInfo></Publication><Publication Source="PubMed" PMID="28163141" PMCID="PMC6050588"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28163141</URL><PublicationReference>Probabilistic conversion of neurosurgical DBS electrode coordinates into MNI space. Neuroimage. 2017 04 15; 150:395-404.</PublicationReference><Title>Probabilistic conversion of neurosurgical DBS electrode coordinates into MNI space.</Title><Authors>Horn A, Kühn AA, Merkl A, Shih L, Alterman R, Fox M. </Authors><Journal>Neuroimage</Journal><Date>2017 04 15</Date><IssueInfo>150:395-404</IssueInfo></Publication><Publication Source="PubMed" PMID="27959760"><URL>http://www.ncbi.nlm.nih.gov/pubmed/27959760</URL><PublicationReference>A Trial of Focused Ultrasound Thalamotomy for Essential Tremor. N Engl J Med. 2016 12 01; 375(22):2201.</PublicationReference><Title>A Trial of Focused Ultrasound Thalamotomy for Essential Tremor.</Title><Authors>Alterman RL. </Authors><Journal>N Engl J Med</Journal><Date>2016 12 01</Date><IssueInfo>375(22):2201</IssueInfo></Publication><Publication Source="PubMed" PMID="27504896"><URL>http://www.ncbi.nlm.nih.gov/pubmed/27504896</URL><PublicationReference>Deep Brain Stimulation for Status Dystonicus: A Case Series and Review of the Literature. 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Implanted</MeshHeader><NumPubs>19</NumPubs><Weight>1.556739505165447e+000</Weight><FirstPubDate>1999-01-01T00:00:00</FirstPubDate><LastPubDate>2025-05-19T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Microelectrodes</MeshHeader><NumPubs>11</NumPubs><Weight>1.232550288878408e+000</Weight><FirstPubDate>1995-10-01T00:00:00</FirstPubDate><LastPubDate>2013-01-16T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Dystonia</MeshHeader><NumPubs>6</NumPubs><Weight>1.017213345359361e+000</Weight><FirstPubDate>2004-09-01T00:00:00</FirstPubDate><LastPubDate>2018-07-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Tremor</MeshHeader><NumPubs>7</NumPubs><Weight>9.786371672220146e-001</Weight><FirstPubDate>1995-10-01T00:00:00</FirstPubDate><LastPubDate>2022-11-28T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Brain 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corrodens</MeshHeader><NumPubs>1</NumPubs><Weight>5.696812266949262e-001</Weight><FirstPubDate>2018-04-01T00:00:00</FirstPubDate><LastPubDate>2018-04-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Electric Stimulation Therapy</MeshHeader><NumPubs>5</NumPubs><Weight>5.564470155383985e-001</Weight><FirstPubDate>1999-01-01T00:00:00</FirstPubDate><LastPubDate>2010-06-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Tinnitus</MeshHeader><NumPubs>1</NumPubs><Weight>5.523986763861899e-001</Weight><FirstPubDate>2020-12-03T00:00:00</FirstPubDate><LastPubDate>2020-12-03T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Neurosurgical 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Computer-Assisted</MeshHeader><NumPubs>2</NumPubs><Weight>2.955518429588300e-001</Weight><FirstPubDate>1997-01-01T00:00:00</FirstPubDate><LastPubDate>2004-09-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Surgery, Computer-Assisted</MeshHeader><NumPubs>1</NumPubs><Weight>2.892418103005958e-001</Weight><FirstPubDate>2017-03-15T00:00:00</FirstPubDate><LastPubDate>2017-03-15T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Imaging, Three-Dimensional</MeshHeader><NumPubs>2</NumPubs><Weight>2.888922788777304e-001</Weight><FirstPubDate>2018-04-01T00:00:00</FirstPubDate><LastPubDate>2023-04-11T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Monitoring, Intraoperative</MeshHeader><NumPubs>4</NumPubs><Weight>2.886453685861444e-001</Weight><FirstPubDate>1995-10-01T00:00:00</FirstPubDate><LastPubDate>2015-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Ultrasonography, 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C</MeshHeader><NumPubs>1</NumPubs><Weight>3.715022975892985e-003</Weight><FirstPubDate>1990-07-01T00:00:00</FirstPubDate><LastPubDate>1990-07-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Kinetics</MeshHeader><NumPubs>1</NumPubs><Weight>2.944439266883978e-003</Weight><FirstPubDate>1990-04-15T00:00:00</FirstPubDate><LastPubDate>1990-04-15T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Recombinant Proteins</MeshHeader><NumPubs>1</NumPubs><Weight>2.573694819549137e-003</Weight><FirstPubDate>1990-04-15T00:00:00</FirstPubDate><LastPubDate>1990-04-15T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Cell Line</MeshHeader><NumPubs>1</NumPubs><Weight>1.911180462595053e-003</Weight><FirstPubDate>1990-04-15T00:00:00</FirstPubDate><LastPubDate>1990-04-15T00:00:00</LastPubDate></Concept></ConceptList></Person><Person PersonID="76799"><Name><FullName>Josh Aronson, M.D.</FullName><FirstName>Josh</FirstName><LastName>Aronson</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2>Suite 3B</Address2><Address3>110 Francis Street</Address3><Address4>Boston, MA 02215</Address4><Telephone>617/632-7246</Telephone><Fax /><Latitude>42.33743600000000</Latitude><Longitude>-71.10544700000000</Longitude></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Assistant Professor of Neurosurgery</JobTitle><FacultyType FacultyTypeSort="2">Assistant Professor</FacultyType></Affiliation></AffiliationList><EducationAndTraining><Education><TrainingAtOrganization>Massachusetts Institute of Technology</TrainingAtOrganization><TrainingLocation>Cambridge, MA</TrainingLocation><DegreeEarned>SB</DegreeEarned><CompletionDate>06/2004</CompletionDate><MajorField>Biology</MajorField></Education><Education><TrainingAtOrganization>Harvard Medical School</TrainingAtOrganization><TrainingLocation>Boston, MA</TrainingLocation><DegreeEarned>MD</DegreeEarned><CompletionDate>06/2009</CompletionDate><MajorField>Medicine, HST</MajorField></Education><Education><TrainingAtOrganization>Massachusetts General Hospital</TrainingAtOrganization><TrainingLocation>Boston, MA</TrainingLocation><CompletionDate>08/2015</CompletionDate><MajorField>Neurosurgery</MajorField></Education></EducationAndTraining><PublicationList><Publication Source="PubMed" PMID="41257543" PMCID="PMC12679531"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41257543</URL><PublicationReference>Thin-Film Reference Electrodes for Fast-Scan Cyclic Voltammetry. 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Cereb Cortex Commun. 2022; 3(2):tgac016.</PublicationReference><Title>Phasic stimulation in the nucleus accumbens enhances learning after traumatic brain injury.</Title><Authors>Aronson JP, Katnani HA, Huguenard A, Mulvaney G, Bader ER, Yang JC, Eskandar EN. </Authors><Journal>Cereb Cortex Commun</Journal><Date>2022</Date><IssueInfo>3(2):tgac016</IssueInfo></Publication><Publication Source="PubMed" PMID="35221888" PMCID="PMC8864965"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35221888</URL><PublicationReference>Modulation of Emotion Perception via Amygdala Stimulation in Humans. 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IEEE Trans Biomed Eng. 2020 12; 67(12):3542-3552.</PublicationReference><Title>Model-Based Image Updating for Brain Shift in Deep Brain Stimulation Electrode Placement Surgery.</Title><Authors>Li C, Fan X, Hong J, Roberts DW, Aronson JP, Paulsen KD. </Authors><Journal>IEEE Trans Biomed Eng</Journal><Date>2020 12</Date><IssueInfo>67(12):3542-3552</IssueInfo></Publication><Publication Source="PubMed" PMID="31384945"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31384945</URL><PublicationReference>Stereoencephalography Electrode Placement Accuracy and Utility Using a Frameless Insertion Platform Without a Rigid Cannula. 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Western</MeshHeader><NumPubs>1</NumPubs><Weight>8.593351185306384e-003</Weight><FirstPubDate>2005-06-01T00:00:00</FirstPubDate><LastPubDate>2005-06-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Algorithms</MeshHeader><NumPubs>1</NumPubs><Weight>8.470702187479242e-003</Weight><FirstPubDate>2018-09-26T00:00:00</FirstPubDate><LastPubDate>2018-09-26T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Predictive Value of Tests</MeshHeader><NumPubs>1</NumPubs><Weight>8.248813242275544e-003</Weight><FirstPubDate>2014-03-07T00:00:00</FirstPubDate><LastPubDate>2014-03-07T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Child</MeshHeader><NumPubs>1</NumPubs><Weight>8.090117917721414e-003</Weight><FirstPubDate>2025-11-17T00:00:00</FirstPubDate><LastPubDate>2025-11-17T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Age Factors</MeshHeader><NumPubs>1</NumPubs><Weight>8.056806535916406e-003</Weight><FirstPubDate>2014-01-03T00:00:00</FirstPubDate><LastPubDate>2014-01-03T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Oligonucleotide Array Sequence Analysis</MeshHeader><NumPubs>1</NumPubs><Weight>8.054429954551879e-003</Weight><FirstPubDate>2005-06-01T00:00:00</FirstPubDate><LastPubDate>2005-06-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Substance-Related Disorders</MeshHeader><NumPubs>1</NumPubs><Weight>7.398827107183255e-003</Weight><FirstPubDate>2012-11-14T00:00:00</FirstPubDate><LastPubDate>2012-11-14T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Brain Neoplasms</MeshHeader><NumPubs>1</NumPubs><Weight>6.274836082675923e-003</Weight><FirstPubDate>2015-07-17T00:00:00</FirstPubDate><LastPubDate>2015-07-17T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Prognosis</MeshHeader><NumPubs>1</NumPubs><Weight>6.089637929437949e-003</Weight><FirstPubDate>2014-03-07T00:00:00</FirstPubDate><LastPubDate>2014-03-07T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Follow-Up Studies</MeshHeader><NumPubs>1</NumPubs><Weight>5.720520381870182e-003</Weight><FirstPubDate>2014-01-03T00:00:00</FirstPubDate><LastPubDate>2014-01-03T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Child, Preschool</MeshHeader><NumPubs>1</NumPubs><Weight>5.657917418521449e-003</Weight><FirstPubDate>2015-07-17T00:00:00</FirstPubDate><LastPubDate>2015-07-17T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Tomography, X-Ray Computed</MeshHeader><NumPubs>1</NumPubs><Weight>5.569640078116660e-003</Weight><FirstPubDate>2015-07-17T00:00:00</FirstPubDate><LastPubDate>2015-07-17T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Immunohistochemistry</MeshHeader><NumPubs>1</NumPubs><Weight>5.506751405429676e-003</Weight><FirstPubDate>2005-06-01T00:00:00</FirstPubDate><LastPubDate>2005-06-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Transcription, Genetic</MeshHeader><NumPubs>1</NumPubs><Weight>5.460920280471343e-003</Weight><FirstPubDate>2005-06-01T00:00:00</FirstPubDate><LastPubDate>2005-06-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Cell Differentiation</MeshHeader><NumPubs>1</NumPubs><Weight>4.963182921480061e-003</Weight><FirstPubDate>2008-02-01T00:00:00</FirstPubDate><LastPubDate>2008-02-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Mice, Inbred C57BL</MeshHeader><NumPubs>1</NumPubs><Weight>4.543175984901970e-003</Weight><FirstPubDate>2008-02-01T00:00:00</FirstPubDate><LastPubDate>2008-02-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Cell Line, Tumor</MeshHeader><NumPubs>1</NumPubs><Weight>4.343336559832980e-003</Weight><FirstPubDate>2005-06-01T00:00:00</FirstPubDate><LastPubDate>2005-06-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Mice</MeshHeader><NumPubs>1</NumPubs><Weight>2.553210465221305e-003</Weight><FirstPubDate>2008-02-01T00:00:00</FirstPubDate><LastPubDate>2008-02-01T00:00:00</LastPubDate></Concept></ConceptList></Person><Person PersonID="199324"><Name><FullName>Michael Avery, M.D.</FullName><FirstName>Michael</FirstName><LastName>Avery</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2> </Address2><Address3>330 Brookline Ave</Address3><Address4>Boston, MA 02215</Address4><Telephone> </Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Clinical Fellow in Neurosurgery</JobTitle><FacultyType FacultyTypeSort="6">Fellow or Post Doc</FacultyType></Affiliation></AffiliationList></Person><Person PersonID="221654"><Name><FullName>Syed Sarmad Bukhari, M.B.,B.S.</FullName><FirstName>Syed Sarmad</FirstName><LastName>Bukhari</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2> </Address2><Address3>330 Brookline Ave</Address3><Address4>Boston, MA 02215</Address4><Telephone> </Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Clinical Fellow in Neurosurgery</JobTitle><FacultyType FacultyTypeSort="6">Fellow or Post Doc</FacultyType></Affiliation></AffiliationList></Person><Person PersonID="163450"><Name><FullName>Alejandro Enriquez-Marulanda, M.D.</FullName><FirstName>Alejandro</FirstName><LastName>Enriquez-Marulanda</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2> </Address2><Address3>330 Brookline Ave</Address3><Address4>Boston, MA 02215</Address4><Telephone>617/632-0949</Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Clinical Fellow in Neurosurgery</JobTitle><FacultyType FacultyTypeSort="6">Fellow or Post Doc</FacultyType></Affiliation></AffiliationList><Overview>Neurosurgery Resident at Beth Israel Deaconess Medical Center (class of 2027). Passionate about cerebrovascular neurosurgery, brain aneurysm treatment, innovation, and education.</Overview><PhotoUrl>https://connects.catalyst.harvard.edu/Profiles/profile/Modules/CustomViewPersonGeneralInfo/PhotoHandler.ashx?NodeID=88064698</PhotoUrl><Twitter>AlejoEnriquez18</Twitter><AwardAndHonors><Award><Title>Best Colombian Medical Student Award </Title><AwardingInstitution>Asociación Colombiana de Facultades de Medicina (ASCOFAME) - Bogota, Colombia</AwardingInstitution><StartDate>2014</StartDate><EndDate>2015</EndDate></Award><Award><Title>Cum Laude Medical Degree</Title><AwardingInstitution>Icesi University - Cali, Colombia</AwardingInstitution><StartDate>2015</StartDate></Award><Award><Title>Scoville Award for Best Clinical Paper</Title><AwardingInstitution>New England Neurosurgical Society - Chatham, MA</AwardingInstitution><StartDate>2021</StartDate><EndDate>2022</EndDate></Award><Award><Title>	Scoville Award for Best Clinical Paper</Title><AwardingInstitution>New England Neurosurgical Society - Chatham, MA</AwardingInstitution><StartDate>2024</StartDate><EndDate>2025</EndDate></Award></AwardAndHonors><EducationAndTraining><Education><TrainingAtOrganization>Fundacion Valle del Lili Hospital</TrainingAtOrganization><TrainingLocation>Cali, Colombia</TrainingLocation><CompletionDate>06/2017</CompletionDate><MajorField>Research Associate in Neurosciences</MajorField></Education><Education><TrainingAtOrganization>Boston Medical Center</TrainingAtOrganization><TrainingLocation>Boston, MA</TrainingLocation><CompletionDate>06/2020</CompletionDate><MajorField>Pre-residency Fellowship in Neurosurgery</MajorField></Education><Education><TrainingAtOrganization>Beth Israel Deaconess Medical Center</TrainingAtOrganization><TrainingLocation>Boston, MA</TrainingLocation><CompletionDate>07/2018</CompletionDate><MajorField>Post-doctoral Neurosurgery Research Fellow</MajorField></Education><Education><TrainingAtOrganization>Universidad Icesi</TrainingAtOrganization><TrainingLocation>Cali, Colombia</TrainingLocation><DegreeEarned>MD</DegreeEarned><CompletionDate>08/2015</CompletionDate><MajorField>Medicine</MajorField></Education></EducationAndTraining><PublicationList><Publication Source="PubMed" PMID="41791106"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41791106</URL><PublicationReference>Therapeutic management of intracranial internal carotid artery blowout syndrome: an institutional case series and individual participant data meta-analysis. J Neurosurg. 2026 Mar 06; 1-14.</PublicationReference><Title>Therapeutic management of intracranial internal carotid artery blowout syndrome: an institutional case series and individual participant data meta-analysis.</Title><Authors>Singh R, Terry F, Mateti N, Li J, Sequeiros J, Zubedi F, Buddhiraju K, Bheemarasetty P, Rodriguez-Calienes A, Lopez-Calle J, Saal-Zapata G, Quispe-Vicuña C, Levy AS, Diaz-Llanes B, Zullo K, Fitzgerald E, Porwal M, Meyer M, Cullen L, Jamshidi AM, Patel R, Enriquez-Marulanda A, Elijovich L, Moses ZB, Taussky P, Jeong S, Starke RM, Luther E. </Authors><Journal>J Neurosurg</Journal><Date>2026 Mar 06</Date><IssueInfo>1-14</IssueInfo></Publication><Publication Source="PubMed" PMID="41759478"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41759478</URL><PublicationReference>Increased prevalence and size of incidental unruptured intracranial aneurysms in male smokers: A case-control study. Clin Neurol Neurosurg. 2026 May; 264:109346.</PublicationReference><Title>Increased prevalence and size of incidental unruptured intracranial aneurysms in male smokers: A case-control study.</Title><Authors>Fodor TB, Lau T, Salih M, Young M, Turcotte E, Olson V, Enriquez-Marulanda A, Pettersson SD, Filo J, Ramirez-Velandia F, Alwakaa O, Gomez-Paz S, Halpin BS, Layton BP, Nguyen BA, Muram S, Granstein J, Taussky P, Bendok B, Ogilvy CS. </Authors><Journal>Clin Neurol Neurosurg</Journal><Date>2026 May</Date><IssueInfo>264:109346</IssueInfo></Publication><Publication Source="PubMed" PMID="41456531"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41456531</URL><PublicationReference>Occlusion of posterior communicating artery aneurysms with a 'fetal' type circulation treated with flow diversion. Clin Neurol Neurosurg. 2026 Mar; 262:109290.</PublicationReference><Title>Occlusion of posterior communicating artery aneurysms with a 'fetal' type circulation treated with flow diversion.</Title><Authors>Han K, Wadhwa A, Ramirez-Velandia F, Enriquez-Marulanda A, Granstein J, Taussky P, Ogilvy CS. </Authors><Journal>Clin Neurol Neurosurg</Journal><Date>2026 Mar</Date><IssueInfo>262:109290</IssueInfo></Publication><Publication Source="PubMed" PMID="41446328" PMCID="PMC12722818"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41446328</URL><PublicationReference>The subdural membrane: unraveling the pathophysiology and treatment of chronic subdural hematoma. Front Surg. 2025; 12:1694048.</PublicationReference><Title>The subdural membrane: unraveling the pathophysiology and treatment of chronic subdural hematoma.</Title><Authors>Arunachalam Sakthiyendran N, Gonzalez-Salido J, Perkins T, Enriquez-Marulanda A, Dasenbrock H, Holsapple J. </Authors><Journal>Front Surg</Journal><Date>2025</Date><IssueInfo>12:1694048</IssueInfo></Publication><Publication Source="PubMed" PMID="41343787"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41343787</URL><PublicationReference>Telemedicine-based triage protocol for complicated mild traumatic brain injury: a strategy to reduce unnecessary interhospital transfers. J Neurosurg. 2026 Mar 01; 144(3):539-546.</PublicationReference><Title>Telemedicine-based triage protocol for complicated mild traumatic brain injury: a strategy to reduce unnecessary interhospital transfers.</Title><Authors>Yazdanian F, Enriquez-Marulanda A, Anderson JS, Stenson BA, Trecartin KW, Lee T, Imperato JC, Davis RB, Rosen CL, Alterman RL, Stippler M. </Authors><Journal>J Neurosurg</Journal><Date>2026 Mar 01</Date><IssueInfo>144(3):539-546</IssueInfo></Publication><Publication Source="PubMed" PMID="41264034"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41264034</URL><PublicationReference>Demographic and social determinants of mortality in cerebral arteriovenous malformations: identifying high-risk clusters in the U.S. Neurosurg Rev. 2025 Nov 20; 49(1):14.</PublicationReference><Title>Demographic and social determinants of mortality in cerebral arteriovenous malformations: identifying high-risk clusters in the U.S.</Title><Authors>Pacheco-Barrios N, Wadhwa A, Purohit S, Enriquez-Marulanda A, Maroufi SF, Alwakaa O, Ramírez-Velandia F, Mensah E, Granstein JH, Ogilvy CS. </Authors><Journal>Neurosurg Rev</Journal><Date>2025 Nov 20</Date><IssueInfo>49(1):14</IssueInfo></Publication><Publication Source="PubMed" PMID="41247563"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41247563</URL><PublicationReference>Post-ablation volume threshold for brain metastasis control using LITT: a systematic review and critical appraisal. J Neurooncol. 2025 Nov 17; 176(1):85.</PublicationReference><Title>Post-ablation volume threshold for brain metastasis control using LITT: a systematic review and critical appraisal.</Title><Authors>Terry F, Brito A, Váscones-Román FF, Rivera V, Enríquez-Marulanda A, Wadhwa A, Alwakaa O, Morán C, Moses ZB, Komotar RJ, Vega RA, Merenzon M. </Authors><Journal>J Neurooncol</Journal><Date>2025 Nov 17</Date><IssueInfo>176(1):85</IssueInfo></Publication><Publication Source="PubMed" PMID="41135119"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41135119</URL><PublicationReference>The orbital grading system in pediatric moyamoya: an interrater reliability analysis of angiographic outcomes. J Neurosurg Pediatr. 2025 Oct 24; 37(1):69-76.</PublicationReference><Title>The orbital grading system in pediatric moyamoya: an interrater reliability analysis of angiographic outcomes.</Title><Authors>Enriquez-Marulanda A, Ruppert-Gomez M, Lazatin P, Staffa S, Rangwala SD, Orbach DB, See AP, Smith ER, Ogilvy CS. </Authors><Journal>J Neurosurg Pediatr</Journal><Date>2025 Oct 24</Date><IssueInfo>37(1):69-76</IssueInfo></Publication><Publication Source="PubMed" PMID="41089918" PMCID="PMC12516402"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41089918</URL><PublicationReference>Management of civilian ballistic injuries to the spine: practice patterns and recovery outcomes at a level 1 trauma center. J Spine Surg. 2025 Sep 30; 11(3):463-476.</PublicationReference><Title>Management of civilian ballistic injuries to the spine: practice patterns and recovery outcomes at a level 1 trauma center.</Title><Authors>Sconzo D, Penumaka A, Berube M, Wadhwa A, Arunachalam Sakthiyendran N, Balagurunath K, Wetsel Z, Enriquez-Marulanda A, Binello E. </Authors><Journal>J Spine Surg</Journal><Date>2025 Sep 30</Date><IssueInfo>11(3):463-476</IssueInfo></Publication><Publication Source="PubMed" PMID="40889337" PMCID="PMC12401954"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40889337</URL><PublicationReference>Reversible edema after radiosurgery for arteriovenous malformations (AVMs): Inflow and outflow imbalance. J Cereb Blood Flow Metab. 2025 Dec; 45(12):2393-2403.</PublicationReference><Title>Reversible edema after radiosurgery for arteriovenous malformations (AVMs): Inflow and outflow imbalance.</Title><Authors>Sconzo D, Ramirez-Velandia F, Enriquez-Marulanda A, Riordan CP, Muram S, Aghdam N, Taussky P, Ogilvy CS. </Authors><Journal>J Cereb Blood Flow Metab</Journal><Date>2025 Dec</Date><IssueInfo>45(12):2393-2403</IssueInfo></Publication><Publication Source="PubMed" PMID="40848611"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40848611</URL><PublicationReference>Predictors of seizures in postoperative traumatic brain injury patients: A single center retrospective study. Clin Neurol Neurosurg. 2025 Oct; 257:109116.</PublicationReference><Title>Predictors of seizures in postoperative traumatic brain injury patients: A single center retrospective study.</Title><Authors>Sconzo D, Wadhwa A, Balagurunath K, Berube M, Wetsel Z, Sakthiyendran NA, Penumaka A, Enriquez-Marulanda A, Ravina K, Binello E. </Authors><Journal>Clin Neurol Neurosurg</Journal><Date>2025 Oct</Date><IssueInfo>257:109116</IssueInfo></Publication><Publication Source="PubMed" PMID="40649171" PMCID="PMC12250825"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40649171</URL><PublicationReference>Clinical Predictors of Inpatient Mortality and Poor Postoperative Course After aSAH Microsurgical Clipping: A 10-Year Experience from a Peruvian Tertiary Care Center. J Clin Med. 2025 Jul 07; 14(13).</PublicationReference><Title>Clinical Predictors of Inpatient Mortality and Poor Postoperative Course After aSAH Microsurgical Clipping: A 10-Year Experience from a Peruvian Tertiary Care Center.</Title><Authors>Terry F, Enríquez-Marulanda A, Chinchihualpa-Paredes N, Carbajal-Galarza M, Vidal-Cuellar CL, Mas-Ubillus G, Diaz-Llanes B, Quispe-Vicuña C, Pacheco-Barrios N, Arbulu-Zuazo R, Moses ZB, Sequeiros J, Luther E, Starke RM, Taussky P, Lopez-Calle J. </Authors><Journal>J Clin Med</Journal><Date>2025 Jul 07</Date><IssueInfo>14(13)</IssueInfo></Publication><Publication Source="PubMed" PMID="40578008"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40578008</URL><PublicationReference>Impact of smoking on occlusion rates following stereotactic radiosurgery for Spetzler Martin grade I-III brain arteriovenous malformations - A propensity score matched analysis of the MISTA consortium. J Clin Neurosci. 2025 Sep; 139:111411.</PublicationReference><Title>Impact of smoking on occlusion rates following stereotactic radiosurgery for Spetzler Martin grade I-III brain arteriovenous malformations - A propensity score matched analysis of the MISTA consortium.</Title><Authors>Sconzo D, Ramirez-Velandia F, Muram S, Enriquez-Marulanda A, Riordan CP, Adeeb N, Musmar B, Salim HA, Kandregula S, Dmywtriw AA, Abdelsalam A, Ataoglu C, Erginoglu U, Kondziolka D, Aslan A, Naamani KE, Sheehan J, Park MS, Zeineddine HA, Ironside N, Kumbhare D, Gummadi S, Essibayi MA, Tos SM, Keles A, Rezai A, Pöppe J, Sen RD, Baskaya MK, Griessenauer CJ, Jabbour P, Tjoumakaris SI, Atallah E, Riina H, Abushehab A, Burkhardt JK, Starke RM, Sekhar LN, Levitt MR, Altschul DJ, Haranhalli N, McAvoy M, Abla A, Stapleton C, Koch M, Srinivasan VM, Chen PR, Blackburn S, Kim LJ, Choudhri O, Pukenas B, Mantziaris G, O'Leary S, Kan P, Li YL, Simonato D, Bulsara K, Fuschi M, Alaraj A, Hanalioglu S, Patel A, Savardekar A, Cuellar H, Lawton M, Morcos J, Guthikonda B, Taussky P, Ogilvy CS. </Authors><Journal>J Clin Neurosci</Journal><Date>2025 Sep</Date><IssueInfo>139:111411</IssueInfo></Publication><Publication Source="PubMed" PMID="40526289"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40526289</URL><PublicationReference>The Orbital Grading system yields higher precision than the Matsushima grading system in assessing angiographic outcomes after EDAS for Moyamoya disease: an interrater reliability analysis. Neurosurg Rev. 2025 Jun 17; 48(1):513.</PublicationReference><Title>The Orbital Grading system yields higher precision than the Matsushima grading system in assessing angiographic outcomes after EDAS for Moyamoya disease: an interrater reliability analysis.</Title><Authors>Alwakaa O, Mensah E, Ramirez-Velandia F, Enriquez-Marulanda A, Muram S, Bukhari SS, Singh J, See AP, Granstein JH, Taussky P, Ogilvy CS. </Authors><Journal>Neurosurg Rev</Journal><Date>2025 Jun 17</Date><IssueInfo>48(1):513</IssueInfo></Publication><Publication Source="PubMed" PMID="40387334"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40387334</URL><PublicationReference>Comparative Effectiveness of Conservative Management Versus Surgical Fixation in Acute Type II Odontoid Fractures. Neurosurgery. 2026 Jan 01; 98(1):61-72.</PublicationReference><Title>Comparative Effectiveness of Conservative Management Versus Surgical Fixation in Acute Type II Odontoid Fractures.</Title><Authors>Yazdanian F, Enriquez-Marulanda A, Ramirez-Velandia F, Alwakaa O, Sconzo D, Terry F, Pandya P, Papavassiliou E, Stippler M, Moses ZB. </Authors><Journal>Neurosurgery</Journal><Date>2026 Jan 01</Date><IssueInfo>98(1):61-72</IssueInfo></Publication><Publication Source="PubMed" PMID="40388898"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40388898</URL><PublicationReference>Battery Longevity in Deep Brain Stimulation for Parkinson's Disease. Stereotact Funct Neurosurg. 2025; 103(4):227-235.</PublicationReference><Title>Battery Longevity in Deep Brain Stimulation for Parkinson's Disease.</Title><Authors>Yazdanian F, Enriquez-Marulanda A, Dehmamy N, Mortezaei A, Hassan T, Shils JL, Alterman RL. </Authors><Journal>Stereotact Funct Neurosurg</Journal><Date>2025</Date><IssueInfo>103(4):227-235</IssueInfo></Publication><Publication Source="PubMed" PMID="40175760"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40175760</URL><PublicationReference>Risk factors of postprocedure seizures following standalone middle meningeal artery embolization of chronic subdural hematomas: a bi-institutional retrospective analysis. 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Neurosurgery. 2020 01 01; 86(Suppl 1):S74-S75.</PublicationReference><Title>Commentary: Failure of Flow Diverter Therapy: Predictors and Management Strategies.</Title><Authors>Enriquez-Marulanda A, Thomas AJ. </Authors><Journal>Neurosurgery</Journal><Date>2020 01 01</Date><IssueInfo>86(Suppl 1):S74-S75</IssueInfo></Publication><Publication Source="PubMed" PMID="31838519"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31838519</URL><PublicationReference>Commentary: Introduction: History and Development of Flow Diverter Technology and Evolution. Neurosurgery. 2020 01 01; 86(Suppl 1):S11-S12.</PublicationReference><Title>Commentary: Introduction: History and Development of Flow Diverter Technology and Evolution.</Title><Authors>Enriquez-Marulanda A, Thomas AJ. </Authors><Journal>Neurosurgery</Journal><Date>2020 01 01</Date><IssueInfo>86(Suppl 1):S11-S12</IssueInfo></Publication><Publication Source="PubMed" PMID="31843731"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31843731</URL><PublicationReference>Symptomatic Hemorrhage From Cerebral Cavernous Malformations: Evidence from a Cohort Study. World Neurosurg. 2020 Mar; 135:e477-e487.</PublicationReference><Title>Symptomatic Hemorrhage From Cerebral Cavernous Malformations: Evidence from a Cohort Study.</Title><Authors>Gomez-Paz S, Maragkos GA, Salem MM, Ascanio LC, Lee M, Enriquez-Marulanda A, Orrego-Gonzalez E, Kicielinski K, Moore JM, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2020 Mar</Date><IssueInfo>135:e477-e487</IssueInfo></Publication><Publication Source="PubMed" PMID="31703202"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31703202</URL><PublicationReference>Early postmarket results with PulseRider for treatment of wide-necked intracranial aneurysms: a multicenter experience. J Neurosurg. 2020 12 01; 133(6):1756-1765.</PublicationReference><Title>Early postmarket results with PulseRider for treatment of wide-necked intracranial aneurysms: a multicenter experience.</Title><Authors>Srinivasan VM, Srivatsan A, Spiotta AM, Hendricks BK, Ducruet AF, Albuquerque FC, Puri A, Amans MR, Hetts SW, Cooke DL, Ogilvy CS, Thomas AJ, Enriquez-Marulanda A, Rai A, Boo S, Carlson AP, Crowley RW, Rangel-Castilla L, Lanzino G, Chen PR, Diaz O, Bohnstedt BN, O'Connor KP, Burkhardt JK, Johnson JN, Chen SR, Kan P. </Authors><Journal>J Neurosurg</Journal><Date>2020 12 01</Date><IssueInfo>133(6):1756-1765</IssueInfo></Publication><Publication Source="PubMed" PMID="31700716" PMCID="PMC6822561"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31700716</URL><PublicationReference>Effect of Premorbid Antiplatelet Medication Use on Delayed Cerebral Ischemia After Aneurysmal Subarachnoid Hemorrhage: A Propensity Score-matched Study. Cureus. 2019 Sep 09; 11(9):e5603.</PublicationReference><Title>Effect of Premorbid Antiplatelet Medication Use on Delayed Cerebral Ischemia After Aneurysmal Subarachnoid Hemorrhage: A Propensity Score-matched Study.</Title><Authors>Enriquez-Marulanda A, Salem MM, Ravindran K, Ascanio LC, Maragkos GA, Gomez-Paz S, Alturki AY, Ogilvy CS, Thomas AJ, Moore J. </Authors><Journal>Cureus</Journal><Date>2019 Sep 09</Date><IssueInfo>11(9):e5603</IssueInfo></Publication><Publication Source="PubMed" PMID="30476203"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30476203</URL><PublicationReference>Surgical Resection of a Cavernous Malformation of the Anterior Perforated Substance: 2-Dimensional Operative Video. Oper Neurosurg. 2019 Aug 01; 17(2):E64.</PublicationReference><Title>Surgical Resection of a Cavernous Malformation of the Anterior Perforated Substance: 2-Dimensional Operative Video.</Title><Authors>Enriquez-Marulanda A, Alturki AY, Ascanio LC, Thomas AJ, Ogilvy CS. </Authors><Journal>Oper Neurosurg</Journal><Date>2019 Aug 01</Date><IssueInfo>17(2):E64</IssueInfo></Publication><Publication Source="PubMed" PMID="30541114"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30541114</URL><PublicationReference>Comparison of Pipeline Embolization Device and Flow Re-Direction Endoluminal Device Flow Diverters for Internal Carotid Artery Aneurysms: A Propensity Score-Matched Cohort Study. Neurosurgery. 2019 08 01; 85(2):E249-E255.</PublicationReference><Title>Comparison of Pipeline Embolization Device and Flow Re-Direction Endoluminal Device Flow Diverters for Internal Carotid Artery Aneurysms: A Propensity Score-Matched Cohort Study.</Title><Authors>Griessenauer CJ, Thomas AJ, Enriquez-Marulanda A, Deshmukh A, Jain A, Ogilvy CS, Kocer N, Engelhorn T, Möhlenbruch M, Holtmannspötter M, Janssen H, Finkenzeller T, Reith W, Sonnberger M, Buhk JH, Schirmer CM, Killer-Oberpfalzer M. </Authors><Journal>Neurosurgery</Journal><Date>2019 08 01</Date><IssueInfo>85(2):E249-E255</IssueInfo></Publication><Publication Source="PubMed" PMID="31075494"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31075494</URL><PublicationReference>Carotid Cavernous Fistulas and Dural Arteriovenous Fistulas of the Cavernous Sinus: Validation of a New Classification According to Venous Drainage. World Neurosurg. 2019 Aug; 128:e621-e631.</PublicationReference><Title>Carotid Cavernous Fistulas and Dural Arteriovenous Fistulas of the Cavernous Sinus: Validation of a New Classification According to Venous Drainage.</Title><Authors>Leone G, Renieri L, Enriquez-Marulanda A, Dmytriw AA, Nappini S, Laiso A, Buono G, Marseglia M, Iuliano A, Muto M, Briganti F, Mangiafico S, Limbucci N. </Authors><Journal>World Neurosurg</Journal><Date>2019 Aug</Date><IssueInfo>128:e621-e631</IssueInfo></Publication><Publication Source="PubMed" PMID="31026827"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31026827</URL><PublicationReference>Predictive factors of incomplete aneurysm occlusion after endovascular treatment with the Pipeline embolization device. J Neurosurg. 2020 05 01; 132(5):1598-1605.</PublicationReference><Title>Predictive factors of incomplete aneurysm occlusion after endovascular treatment with the Pipeline embolization device.</Title><Authors>Maragkos GA, Ascanio LC, Salem MM, Gopakumar S, Gomez-Paz S, Enriquez-Marulanda A, Jain A, Schirmer CM, Foreman PM, Griessenauer CJ, Kan P, Ogilvy CS, Thomas AJ. </Authors><Journal>J Neurosurg</Journal><Date>2020 05 01</Date><IssueInfo>132(5):1598-1605</IssueInfo></Publication><Publication Source="PubMed" PMID="30998116" PMCID="PMC6728696"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30998116</URL><PublicationReference>No differences in effectiveness and safety between pipeline embolization device and stent-assisted coiling for the treatment of communicating segment internal carotid artery aneurysms. 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World Neurosurg. 2019 Jul; 127:335.</PublicationReference><Title>Percutaneous Transverse Sinus Cannulation for Dural Arteriovenous Fistula Coiling: Operative Video.</Title><Authors>Maragkos GA, Alturki AY, Greenstein PE, Enriquez-Marulanda A, Kicielinski KJ, Moore JM, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2019 Jul</Date><IssueInfo>127:335</IssueInfo></Publication><Publication Source="PubMed" PMID="30872200"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30872200</URL><PublicationReference>Surgical and Endovascular Comprehensive Treatment Outcomes of Unruptured Intracranial Aneurysms: Reduction of Treatment Bias. World Neurosurg. 2019 Jun; 126:e878-e887.</PublicationReference><Title>Surgical and Endovascular Comprehensive Treatment Outcomes of Unruptured Intracranial Aneurysms: Reduction of Treatment Bias.</Title><Authors>Ogilvy CS, Jordan NJ, Ascanio LC, Enriquez-Marulanda AA, Salem MM, Moore JM, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2019 Jun</Date><IssueInfo>126:e878-e887</IssueInfo></Publication><Publication Source="PubMed" PMID="29608747"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29608747</URL><PublicationReference>Pharmacy-Mediated Antiplatelet Management Protocol Compared to One-time Platelet Function Testing Prior to Pipeline Embolization of Cerebral Aneurysms: A Propensity Score-Matched Cohort Study. Neurosurgery. 2019 03 01; 84(3):673-679.</PublicationReference><Title>Pharmacy-Mediated Antiplatelet Management Protocol Compared to One-time Platelet Function Testing Prior to Pipeline Embolization of Cerebral Aneurysms: A Propensity Score-Matched Cohort Study.</Title><Authors>Griessenauer CJ, Jain A, Enriquez-Marulanda A, Gupta R, Adeeb N, Moore JM, Grassi SA, Dalal SS, Ogilvy CS, Thomas AJ, Schirmer CM. </Authors><Journal>Neurosurgery</Journal><Date>2019 03 01</Date><IssueInfo>84(3):673-679</IssueInfo></Publication><Publication Source="PubMed" PMID="30771544"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30771544</URL><PublicationReference>Evaluation of Radiological Features of the Posterior Communicating Artery and Their Impact on Efficacy of Saccular Aneurysm Treatment with the Pipeline Embolization Device: A Case Series Study. World Neurosurg. 2019 05; 125:e998-e1007.</PublicationReference><Title>Evaluation of Radiological Features of the Posterior Communicating Artery and Their Impact on Efficacy of Saccular Aneurysm Treatment with the Pipeline Embolization Device: A Case Series Study.</Title><Authors>Enriquez-Marulanda A, Ravindran K, Salem MM, Ascanio LC, Kan P, Srinivasan VM, Griessenauer CJ, Schirmer CM, Jain A, Moore JM, Ogilvy CS, Thomas AJ, Alturki AY. </Authors><Journal>World Neurosurg</Journal><Date>2019 05</Date><IssueInfo>125:e998-e1007</IssueInfo></Publication><Publication Source="PubMed" PMID="31218289" PMCID="PMC6580893"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31218289</URL><PublicationReference>Suction Decompression Assisted Clipping of a Large Middle Cerebral Artery Aneurysm: 2-Dimensional Operative Video. World Neurosurg X. 2019 Apr; 2:100014.</PublicationReference><Title>Suction Decompression Assisted Clipping of a Large Middle Cerebral Artery Aneurysm: 2-Dimensional Operative Video.</Title><Authors>Gomez-Paz S, Enriquez-Marulanda A, Ascanio LC, Foreman P, Thomas AJ, Ogilvy CS. </Authors><Journal>World Neurosurg X</Journal><Date>2019 Apr</Date><IssueInfo>2:100014</IssueInfo></Publication><Publication Source="PubMed" PMID="30641842"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30641842</URL><PublicationReference>Outcomes after coverage of lenticulostriate vessels by flow diverters: a multicenter experience. J Neurosurg. 2020 02 01; 132(2):473-480.</PublicationReference><Title>Outcomes after coverage of lenticulostriate vessels by flow diverters: a multicenter experience.</Title><Authors>Wagner KM, Srinivasan VM, Srivatsan A, Ghali MGZ, Thomas AJ, Enriquez-Marulanda A, Alturki AY, Ogilvy CS, Mokin M, Kuhn AL, Puri A, Grandhi R, Chen S, Johnson J, Kan P. </Authors><Journal>J Neurosurg</Journal><Date>2020 02 01</Date><IssueInfo>132(2):473-480</IssueInfo></Publication><Publication Source="PubMed" PMID="30611949"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30611949</URL><PublicationReference>Factors Associated with Ventriculoperitoneal Shunt Failures in the First 30 Postoperative Days in Pediatric Patients. World Neurosurg. 2019 Apr; 124:e517-e526.</PublicationReference><Title>Factors Associated with Ventriculoperitoneal Shunt Failures in the First 30 Postoperative Days in Pediatric Patients.</Title><Authors>Orrego-González E, Enriquez-Marulanda A, Ravindran K, Celin-Varcalcel D, Parrado-Sánchez L, Lobato-Polo J. </Authors><Journal>World Neurosurg</Journal><Date>2019 Apr</Date><IssueInfo>124:e517-e526</IssueInfo></Publication><Publication Source="PubMed" PMID="29635403"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29635403</URL><PublicationReference>C5-C6 Cervical Spinal Cord Cavernous Malformation Microsurgical Resection: 2-Dimensional Operative Video. Oper Neurosurg. 2019 Jan 01; 16(1):E7.</PublicationReference><Title>C5-C6 Cervical Spinal Cord Cavernous Malformation Microsurgical Resection: 2-Dimensional Operative Video.</Title><Authors>Enriquez-Marulanda A, Alturki AY, Kicielinski K, Thomas AJ, Ogilvy CS. </Authors><Journal>Oper Neurosurg</Journal><Date>2019 Jan 01</Date><IssueInfo>16(1):E7</IssueInfo></Publication><Publication Source="PubMed" PMID="29672768"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29672768</URL><PublicationReference>Microsurgical Resection of a Meningioma at the Entrance of Dorello's Canal Causing VI Cranial Nerve Compression: 2-Dimensional Operative Video. Oper Neurosurg. 2019 Jan 01; 16(1):E8.</PublicationReference><Title>Microsurgical Resection of a Meningioma at the Entrance of Dorello's Canal Causing VI Cranial Nerve Compression: 2-Dimensional Operative Video.</Title><Authors>Alturki A, Enriquez-Marulanda A, Gupta R, Thomas AJ, Ogilvy CS. </Authors><Journal>Oper Neurosurg</Journal><Date>2019 Jan 01</Date><IssueInfo>16(1):E8</IssueInfo></Publication><Publication Source="PubMed" PMID="29949011"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29949011</URL><PublicationReference>Accuracy and Safety of External Ventricular Drain Placement by Physician Assistants and Nurse Practitioners in Aneurysmal Acute Subarachnoid Hemorrhage. Neurocrit Care. 2018 Dec; 29(3):435-442.</PublicationReference><Title>Accuracy and Safety of External Ventricular Drain Placement by Physician Assistants and Nurse Practitioners in Aneurysmal Acute Subarachnoid Hemorrhage.</Title><Authors>Enriquez-Marulanda A, Ascanio LC, Salem MM, Maragkos GA, Jhun R, Alturki AY, Moore JM, Ogilvy CS, Thomas AJ. </Authors><Journal>Neurocrit Care</Journal><Date>2018 Dec</Date><IssueInfo>29(3):435-442</IssueInfo></Publication><Publication Source="PubMed" PMID="30497139"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30497139</URL><PublicationReference>Whole blood aggregometry prior to Pipeline embolization device treatment of intracranial aneurysms: defining an optimal platelet inhibition cutoff value for clopidogrel. J Neurosurg. 2019 11 01; 131(5):1437-1444.</PublicationReference><Title>Whole blood aggregometry prior to Pipeline embolization device treatment of intracranial aneurysms: defining an optimal platelet inhibition cutoff value for clopidogrel.</Title><Authors>Foreman PM, Enriquez-Marulanda A, Mooney JH, Schmalz PGR, Griessenauer CJ, Deveikis JP, Harrigan MR. </Authors><Journal>J Neurosurg</Journal><Date>2019 11 01</Date><IssueInfo>131(5):1437-1444</IssueInfo></Publication><Publication Source="PubMed" PMID="30296622"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30296622</URL><PublicationReference>Patterns of Stroke Transfers and Identification of Predictors for Thrombectomy. World Neurosurg. 2019 Jan; 121:e675-e683.</PublicationReference><Title>Patterns of Stroke Transfers and Identification of Predictors for Thrombectomy.</Title><Authors>Catanese L, Gupta R, Griessenauer CJ, Moore JM, Adeeb N, Enriquez-Marulanda A, Alturki AY, Ascanio LC, Lioutas V, Shoamanesh A, Cohen W, Kumar S, Selim M, Thomas AJ, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2019 Jan</Date><IssueInfo>121:e675-e683</IssueInfo></Publication><Publication Source="PubMed" PMID="30268551"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30268551</URL><PublicationReference>Proposal of a Grading System for Predicting Discharge Mortality and Functional Outcome in Patients with Aneurysmal Subarachnoid Hemorrhage. World Neurosurg. 2019 Jan; 121:e500-e510.</PublicationReference><Title>Proposal of a Grading System for Predicting Discharge Mortality and Functional Outcome in Patients with Aneurysmal Subarachnoid Hemorrhage.</Title><Authors>Maragkos GA, Enriquez-Marulanda A, Salem MM, Ascanio LC, Chida K, Gupta R, Alturki AY, Kicielinski KP, Ogilvy CS, Moore JM, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2019 Jan</Date><IssueInfo>121:e500-e510</IssueInfo></Publication><Publication Source="PubMed" PMID="30201581"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30201581</URL><PublicationReference>Quantitative Assessment of In-Stent Stenosis After Pipeline Embolization Device Treatment of Intracranial Aneurysms: A Single-Institution Series and Systematic Review. World Neurosurg. 2018 Dec; 120:e1031-e1040.</PublicationReference><Title>Quantitative Assessment of In-Stent Stenosis After Pipeline Embolization Device Treatment of Intracranial Aneurysms: A Single-Institution Series and Systematic Review.</Title><Authors>Ravindran K, Salem MM, Enriquez-Marulanda A, Alturki AY, Moore JM, Thomas AJ, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2018 Dec</Date><IssueInfo>120:e1031-e1040</IssueInfo></Publication><Publication Source="PubMed" PMID="29281055"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29281055</URL><PublicationReference>Resection of a Midbrain Cavernous Malformation Via Far Posterior Subtemporal Approach to the Dorsolateral Brainstem: 2-Dimensional Operative Video. Oper Neurosurg. 2018 Sep 01; 15(3):352.</PublicationReference><Title>Resection of a Midbrain Cavernous Malformation Via Far Posterior Subtemporal Approach to the Dorsolateral Brainstem: 2-Dimensional Operative Video.</Title><Authors>Alturki AY, Enriquez-Marulanda A, Thomas AJ, Ogilvy CS. </Authors><Journal>Oper Neurosurg</Journal><Date>2018 Sep 01</Date><IssueInfo>15(3):352</IssueInfo></Publication><Publication Source="PubMed" PMID="30149155"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30149155</URL><PublicationReference>Statin Therapy and Diabetes Do Not Affect Aneurysm Occlusion or Clinical Outcomes After Pipeline Embolization Device Treatment: A Preliminary Study. World Neurosurg. 2018 Dec; 120:e525-e532.</PublicationReference><Title>Statin Therapy and Diabetes Do Not Affect Aneurysm Occlusion or Clinical Outcomes After Pipeline Embolization Device Treatment: A Preliminary Study.</Title><Authors>Salem MM, Maragkos GA, Enriquez-Marulanda A, Ascanio L, Ravindran K, Alturki AY, Ogilvy CS, Thomas AJ, Moore JM. </Authors><Journal>World Neurosurg</Journal><Date>2018 Dec</Date><IssueInfo>120:e525-e532</IssueInfo></Publication><Publication Source="PubMed" PMID="30026147"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30026147</URL><PublicationReference>Use of Flow Diversion for the Treatment of Distal Circulation Aneurysms: A Multicohort Study. World Neurosurg. 2018 Oct; 118:e825-e833.</PublicationReference><Title>Use of Flow Diversion for the Treatment of Distal Circulation Aneurysms: A Multicohort Study.</Title><Authors>Ravindran K, Enriquez-Marulanda A, Kan PTM, Renieri L, Limbucci N, Mangiafico S, Salem MM, Alturki AY, Moore JM, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2018 Oct</Date><IssueInfo>118:e825-e833</IssueInfo></Publication><Publication Source="PubMed" PMID="30004284"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30004284</URL><PublicationReference>Proposal of a follow-up imaging strategy following Pipeline flow diversion treatment of intracranial aneurysms. J Neurosurg. 2019 07 01; 131(1):32-39.</PublicationReference><Title>Proposal of a follow-up imaging strategy following Pipeline flow diversion treatment of intracranial aneurysms.</Title><Authors>Gupta R, Ogilvy CS, Moore JM, Griessenauer CJ, Enriquez-Marulanda A, Leadon M, Adeeb N, Ascanio L, Maragkos GA, Jain A, Schmalz PGR, Alturki AY, Kicielinski K, Schirmer CM, Thomas AJ. </Authors><Journal>J Neurosurg</Journal><Date>2019 07 01</Date><IssueInfo>131(1):32-39</IssueInfo></Publication><Publication Source="PubMed" PMID="30150902" PMCID="PMC6107341"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30150902</URL><PublicationReference>Case Report: Rapid Eye Movement Sleep Behavior Disorder as the First Manifestation of Multiple Sclerosis: A Case Report and Literature Review. Int J MS Care. 2018 Jul-Aug; 20(4):180-184.</PublicationReference><Title>Case Report: Rapid Eye Movement Sleep Behavior Disorder as the First Manifestation of Multiple Sclerosis: A Case Report and Literature Review.</Title><Authors>Enriquez-Marulanda A, Quintana-Peña V, Takeuchi Y, Quiñones J. </Authors><Journal>Int J MS Care</Journal><Date>2018 Jul-Aug</Date><IssueInfo>20(4):180-184</IssueInfo></Publication><Publication Source="PubMed" PMID="29934069"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29934069</URL><PublicationReference>Characterization of 95 patients with traumatic brain injury due to gunshot wounds at a referral center in Cali, Colombia. Neurocirugia (Engl Ed). 2018 Sep - Oct; 29(5):217-224.</PublicationReference><Title>Characterization of 95 patients with traumatic brain injury due to gunshot wounds at a referral center in Cali, Colombia.</Title><Authors>Ospina-Delgado D, Mosquera Salas LM, Enríquez-Marulanda A, Hernández-Morales J, Pacheco R, Lobato-Polo J. </Authors><Journal>Neurocirugia (Engl Ed)</Journal><Date>2018 Sep - Oct</Date><IssueInfo>29(5):217-224</IssueInfo></Publication><Publication Source="PubMed" PMID="29673817"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29673817</URL><PublicationReference>Combined Outcomes of Endovascular or Surgical Treatment of Unruptured Anterior Communicating Artery Aneurysms: Is a More Aggressive Management Strategy Warranted? World Neurosurg. 2018 Jul; 115:e331-e336.</PublicationReference><Title>Combined Outcomes of Endovascular or Surgical Treatment of Unruptured Anterior Communicating Artery Aneurysms: Is a More Aggressive Management Strategy Warranted?</Title><Authors>Schmalz PGR, Enriquez-Marulanda A, Alturki A, Stapleton CJ, Thomas AJ, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2018 Jul</Date><IssueInfo>115:e331-e336</IssueInfo></Publication><Publication Source="PubMed" PMID="29602003"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29602003</URL><PublicationReference>Deep Brain Stimulation Surgery for Status Dystonicus: A Single-Center Experience and Literature Review. World Neurosurg. 2018 Jun; 114:e992-e1001.</PublicationReference><Title>Deep Brain Stimulation Surgery for Status Dystonicus: A Single-Center Experience and Literature Review.</Title><Authors>Lobato-Polo J, Ospina-Delgado D, Orrego-González E, Gómez-Castro JF, Orozco JL, Enriquez-Marulanda A. </Authors><Journal>World Neurosurg</Journal><Date>2018 Jun</Date><IssueInfo>114:e992-e1001</IssueInfo></Publication><Publication Source="PubMed" PMID="29378343"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29378343</URL><PublicationReference>Anti-Yo-Associated Paraneoplastic Cerebellar Degeneration Manifesting as Acute Cerebellitis with Posterior Cranial Fossa Hypertension. World Neurosurg. 2018 Apr; 112:117-122.</PublicationReference><Title>Anti-Yo-Associated Paraneoplastic Cerebellar Degeneration Manifesting as Acute Cerebellitis with Posterior Cranial Fossa Hypertension.</Title><Authors>Enríquez-Marulanda A, Beltrán-Osorio LD, Escobar LA, Granados AM, Velásquez-Lasprilla F, Orozco JL. </Authors><Journal>World Neurosurg</Journal><Date>2018 Apr</Date><IssueInfo>112:117-122</IssueInfo></Publication><Publication Source="PubMed" PMID="29425984"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29425984</URL><PublicationReference>Defining a Clopidogrel Response Cut-Off Value Using Light Transmission Aggregometry Before Pipeline Embolization of Unruptured Intracranial Aneurysms. World Neurosurg. 2018 May; 113:e146-e152.</PublicationReference><Title>Defining a Clopidogrel Response Cut-Off Value Using Light Transmission Aggregometry Before Pipeline Embolization of Unruptured Intracranial Aneurysms.</Title><Authors>Adeeb N, Gupta R, Schneider AM, Leadon M, Enriquez A, Griessenauer CJ, Salem M, Alturki A, Schmalz P, Ogilvy CS, Thomas AJ, Moore JM. </Authors><Journal>World Neurosurg</Journal><Date>2018 May</Date><IssueInfo>113:e146-e152</IssueInfo></Publication><Publication Source="PubMed" PMID="29232818"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29232818</URL><PublicationReference>In Reply to the Letter to the Editor "Validation of Predictive Scoring System for Ventriculoperitoneal Shunt Insertion After Aneurysmal Subarachnoid Hemorrhage: Statistical and Methodologic Issues". 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Case Rep Med. 2016; 2016:3601395.</PublicationReference><Title>Intracavitary Irradiation as a Safe Alternative for Cystic Craniopharyngiomas: Case Report and Review of the Literature.</Title><Authors>Enriquez-Marulanda A, Sierra-Ruiz M, Pabón LM, Lobato-Polo J. </Authors><Journal>Case Rep Med</Journal><Date>2016</Date><IssueInfo>2016:3601395</IssueInfo></Publication></PublicationList><ConceptList><Concept><MeshHeader>Intracranial Aneurysm</MeshHeader><NumPubs>38</NumPubs><Weight>5.761486827608927e+000</Weight><FirstPubDate>2017-09-28T00:00:00</FirstPubDate><LastPubDate>2026-02-18T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Embolization, Therapeutic</MeshHeader><NumPubs>36</NumPubs><Weight>4.926044794428663e+000</Weight><FirstPubDate>2017-10-26T00:00:00</FirstPubDate><LastPubDate>2025-12-23T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Hematoma, Subdural, 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Index</MeshHeader><NumPubs>1</NumPubs><Weight>1.023198486423350e-002</Weight><FirstPubDate>2018-10-05T00:00:00</FirstPubDate><LastPubDate>2018-10-05T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Algorithms</MeshHeader><NumPubs>1</NumPubs><Weight>1.011916390251550e-002</Weight><FirstPubDate>2021-04-20T00:00:00</FirstPubDate><LastPubDate>2021-04-20T00:00:00</LastPubDate></Concept></ConceptList></Person><Person PersonID="85011"><Name><FullName>Edwin Garvin Fischer, M.D.</FullName><FirstName>Edwin</FirstName><LastName>Fischer</LastName></Name><Address><Address1>Surgery - Suite 3A</Address1><Address2> </Address2><Address3>110 Francis Street</Address3><Address4>Boston, MA 02215</Address4><Telephone>617/632-9795</Telephone><Fax /><Latitude>42.33700000000000</Latitude><Longitude>-71.11000000000000</Longitude></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Corresponding Member of the Faculty of Neurosurgery</JobTitle><FacultyType FacultyTypeSort="5">Other Faculty</FacultyType></Affiliation></AffiliationList><PublicationList><Publication Source="PubMed" PMID="23493237" PMCID="PMC3589833"><URL>http://www.ncbi.nlm.nih.gov/pubmed/23493237</URL><PublicationReference>Fibrin sealant augmentation with autologous pericranium for duraplasty after suboccipital decompression in Chiari 1 patients: A case series. Surg Neurol Int. 2013; 4:6.</PublicationReference><Title>Fibrin sealant augmentation with autologous pericranium for duraplasty after suboccipital decompression in Chiari 1 patients: A case series.</Title><Authors>Lam FC, Penumaka A, Chen CC, Fischer EG, Kasper EM. </Authors><Journal>Surg Neurol Int</Journal><Date>2013</Date><IssueInfo>4:6</IssueInfo></Publication><Publication Source="PubMed" PMID="22120400"><URL>http://www.ncbi.nlm.nih.gov/pubmed/22120400</URL><PublicationReference>Quo vadis, academia? Can academic neurosurgery be resurrected? World Neurosurg. 2012 Jul; 78(1-2):20-3.</PublicationReference><Title>Quo vadis, academia? Can academic neurosurgery be resurrected?</Title><Authors>Kasper EM, Fischer EG, Ostertag CB. </Authors><Journal>World Neurosurg</Journal><Date>2012 Jul</Date><IssueInfo>78(1-2):20-3</IssueInfo></Publication><Publication Source="PubMed" PMID="8773276"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8773276</URL><PublicationReference>MRI of infarction of a cavernous sinus tumor in Nelson's syndrome. Neuroradiology. 1996 Jan; 38(1):47-9.</PublicationReference><Title>MRI of infarction of a cavernous sinus tumor in Nelson's syndrome.</Title><Authors>Eustace S, Buff B, Ecklund K, Degirolami U, Fischer EG. </Authors><Journal>Neuroradiology</Journal><Date>1996 Jan</Date><IssueInfo>38(1):47-9</IssueInfo></Publication><Publication Source="PubMed" PMID="8608577"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8608577</URL><PublicationReference>Posterior fossa decompression for Chiari I deformity, including resection of the cerebellar tonsils. Childs Nerv Syst. 1995 Nov; 11(11):625-9.</PublicationReference><Title>Posterior fossa decompression for Chiari I deformity, including resection of the cerebellar tonsils.</Title><Authors>Fischer EG. </Authors><Journal>Childs Nerv Syst</Journal><Date>1995 Nov</Date><IssueInfo>11(11):625-9</IssueInfo></Publication><Publication Source="PubMed" PMID="8057155"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8057155</URL><PublicationReference>Reversible visual deficit following debulking of a Rathke's cleft cyst: a tethered chiasm? J Neurosurg. 1994 Sep; 81(3):459-62.</PublicationReference><Title>Reversible visual deficit following debulking of a Rathke's cleft cyst: a tethered chiasm?</Title><Authors>Fischer EG, DeGirolami U, Suojanen JN. </Authors><Journal>J Neurosurg</Journal><Date>1994 Sep</Date><IssueInfo>81(3):459-62</IssueInfo></Publication><Publication Source="PubMed" PMID="8407391"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8407391</URL><PublicationReference>20-year experience in childhood craniopharyngioma. Int J Radiat Oncol Biol Phys. 1993 Sep 30; 27(2):189-95.</PublicationReference><Title>20-year experience in childhood craniopharyngioma.</Title><Authors>Hetelekidis S, Barnes PD, Tao ML, Fischer EG, Schneider L, Scott RM, Tarbell NJ. </Authors><Journal>Int J Radiat Oncol Biol Phys</Journal><Date>1993 Sep 30</Date><IssueInfo>27(2):189-95</IssueInfo></Publication><Publication Source="PubMed" PMID="2398383"><URL>http://www.ncbi.nlm.nih.gov/pubmed/2398383</URL><PublicationReference>Craniopharyngiomas in children. Long-term effects of conservative surgical procedures combined with radiation therapy. J Neurosurg. 1990 Oct; 73(4):534-40.</PublicationReference><Title>Craniopharyngiomas in children. Long-term effects of conservative surgical procedures combined with radiation therapy.</Title><Authors>Fischer EG, Welch K, Shillito J, Winston KR, Tarbell NJ. </Authors><Journal>J Neurosurg</Journal><Date>1990 Oct</Date><IssueInfo>73(4):534-40</IssueInfo></Publication><Publication Source="PubMed" PMID="3391815"><URL>http://www.ncbi.nlm.nih.gov/pubmed/3391815</URL><PublicationReference>Pre-radiation chemotherapy for infants and poor prognosis children with medulloblastoma. Int J Radiat Oncol Biol Phys. 1988 Jul; 15(1):177-81.</PublicationReference><Title>Pre-radiation chemotherapy for infants and poor prognosis children with medulloblastoma.</Title><Authors>Loeffler JS, Kretschmar CS, Sallan SE, LaVally BL, Winston KR, Fischer EG, Tarbell NJ. </Authors><Journal>Int J Radiat Oncol Biol Phys</Journal><Date>1988 Jul</Date><IssueInfo>15(1):177-81</IssueInfo></Publication><Publication Source="PubMed" PMID="3405416"><URL>http://www.ncbi.nlm.nih.gov/pubmed/3405416</URL><PublicationReference>Cavernous hemangioma of the thoracic spinal cord. Neuroradiology. 1988; 30(3):261-4.</PublicationReference><Title>Cavernous hemangioma of the thoracic spinal cord.</Title><Authors>Wang AM, Morris JH, Fischer EG, Peterson R, Lin JC. </Authors><Journal>Neuroradiology</Journal><Date>1988</Date><IssueInfo>30(3):261-4</IssueInfo></Publication><Publication Source="PubMed" PMID="835156"><URL>http://www.ncbi.nlm.nih.gov/pubmed/835156</URL><PublicationReference>Reassessment of cerebral capillary changes in acute global ischemia and their relationship to the "no-reflow phenomenon". Stroke. 1977 Jan-Feb; 8(1):36-9.</PublicationReference><Title>Reassessment of cerebral capillary changes in acute global ischemia and their relationship to the "no-reflow phenomenon".</Title><Authors>Fischer EG, Ames A, Hedley-Whyte ET, O'Gorman S. </Authors><Journal>Stroke</Journal><Date>1977 Jan-Feb</Date><IssueInfo>8(1):36-9</IssueInfo></Publication><Publication Source="PubMed" PMID="4688255"><URL>http://www.ncbi.nlm.nih.gov/pubmed/4688255</URL><PublicationReference>Cervical cord injuries secondary to hyperextension of the head in breech presentations. Obstet Gynecol. 1973 Mar; 41(3):369-78.</PublicationReference><Title>Cervical cord injuries secondary to hyperextension of the head in breech presentations.</Title><Authors>Abroms IF, Bresnan MJ, Zuckerman JE, Fischer EG, Strand R. </Authors><Journal>Obstet Gynecol</Journal><Date>1973 Mar</Date><IssueInfo>41(3):369-78</IssueInfo></Publication></PublicationList><ConceptList><Concept><MeshHeader>Nelson Syndrome</MeshHeader><NumPubs>1</NumPubs><Weight>1.201607728019565e-001</Weight><FirstPubDate>1996-01-01T00:00:00</FirstPubDate><LastPubDate>1996-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Cranial Fossa, Posterior</MeshHeader><NumPubs>1</NumPubs><Weight>1.128835732889210e-001</Weight><FirstPubDate>1995-11-01T00:00:00</FirstPubDate><LastPubDate>1995-11-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Empty Sella 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Cortex</MeshHeader><NumPubs>1</NumPubs><Weight>2.566814266958259e-003</Weight><FirstPubDate>1977-01-01T00:00:00</FirstPubDate><LastPubDate>1977-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Infant</MeshHeader><NumPubs>2</NumPubs><Weight>2.238864861565923e-003</Weight><FirstPubDate>1988-07-01T00:00:00</FirstPubDate><LastPubDate>1993-09-30T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Disease Models, Animal</MeshHeader><NumPubs>1</NumPubs><Weight>2.020761647969333e-003</Weight><FirstPubDate>1977-01-01T00:00:00</FirstPubDate><LastPubDate>1977-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Paraplegia</MeshHeader><NumPubs>1</NumPubs><Weight>1.453511253694347e-003</Weight><FirstPubDate>1973-03-01T00:00:00</FirstPubDate><LastPubDate>1973-03-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Neurologic Examination</MeshHeader><NumPubs>1</NumPubs><Weight>1.216494314288324e-003</Weight><FirstPubDate>1973-03-01T00:00:00</FirstPubDate><LastPubDate>1973-03-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Cervical Vertebrae</MeshHeader><NumPubs>1</NumPubs><Weight>9.737853147566375e-004</Weight><FirstPubDate>1973-03-01T00:00:00</FirstPubDate><LastPubDate>1973-03-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Fetus</MeshHeader><NumPubs>1</NumPubs><Weight>8.845687797400307e-004</Weight><FirstPubDate>1973-03-01T00:00:00</FirstPubDate><LastPubDate>1973-03-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Spinal Cord</MeshHeader><NumPubs>1</NumPubs><Weight>8.670581174295768e-004</Weight><FirstPubDate>1973-03-01T00:00:00</FirstPubDate><LastPubDate>1973-03-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Cesarean Section</MeshHeader><NumPubs>1</NumPubs><Weight>8.466103888661572e-004</Weight><FirstPubDate>1973-03-01T00:00:00</FirstPubDate><LastPubDate>1973-03-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Animals</MeshHeader><NumPubs>1</NumPubs><Weight>8.442579085669365e-004</Weight><FirstPubDate>1977-01-01T00:00:00</FirstPubDate><LastPubDate>1977-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Tomography, X-Ray Computed</MeshHeader><NumPubs>1</NumPubs><Weight>8.256372653797010e-004</Weight><FirstPubDate>1988-01-01T00:00:00</FirstPubDate><LastPubDate>1988-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Radiography</MeshHeader><NumPubs>1</NumPubs><Weight>7.112507616708904e-004</Weight><FirstPubDate>1973-03-01T00:00:00</FirstPubDate><LastPubDate>1973-03-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Infant, Newborn</MeshHeader><NumPubs>1</NumPubs><Weight>3.662704029414461e-004</Weight><FirstPubDate>1973-03-01T00:00:00</FirstPubDate><LastPubDate>1973-03-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Pregnancy</MeshHeader><NumPubs>1</NumPubs><Weight>3.299205943721449e-004</Weight><FirstPubDate>1973-03-01T00:00:00</FirstPubDate><LastPubDate>1973-03-01T00:00:00</LastPubDate></Concept></ConceptList></Person><Person PersonID="225815"><Name><FullName>Jimena Gonzalez Salido, M.D.</FullName><FirstName>Jimena</FirstName><LastName>Gonzalez Salido</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2> </Address2><Address3>330 Brookline Ave</Address3><Address4>Boston, MA 02215</Address4><Telephone> </Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Research Fellow in Neurosurgery</JobTitle><FacultyType FacultyTypeSort="6">Fellow or Post Doc</FacultyType></Affiliation></AffiliationList><PhotoUrl>https://connects.catalyst.harvard.edu/Profiles/profile/Modules/CustomViewPersonGeneralInfo/PhotoHandler.ashx?NodeID=298628574</PhotoUrl></Person><Person PersonID="224841"><Name><FullName>Justin Im, M.D.</FullName><FirstName>Justin</FirstName><LastName>Im</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2> </Address2><Address3>330 Brookline Ave</Address3><Address4>Boston, MA 02215</Address4><Telephone> </Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Clinical Fellow in Neurosurgery</JobTitle><FacultyType FacultyTypeSort="6">Fellow or Post Doc</FacultyType></Affiliation></AffiliationList><PublicationList><Publication Source="PubMed" PMID="40372014"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40372014</URL><PublicationReference>Comparative Analysis of Dural Venous Sinus Pressures, Gradients, and Dimensions in Idiopathic Intracranial Hypertension Between Stented and Unstented Patients. Neurosurgery. 2025 Dec 01; 97(6):1406-1417.</PublicationReference><Title>Comparative Analysis of Dural Venous Sinus Pressures, Gradients, and Dimensions in Idiopathic Intracranial Hypertension Between Stented and Unstented Patients.</Title><Authors>Raygor KP, Jaikumar V, Malueg MD, Im J, Khan HS, Bouslama M, Lincoff NS, Monteiro A, Lai PMR, Davies JM, Snyder KV, Levy EI, Siddiqui AH. </Authors><Journal>Neurosurgery</Journal><Date>2025 Dec 01</Date><IssueInfo>97(6):1406-1417</IssueInfo></Publication><Publication Source="PubMed" PMID="39855546"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39855546</URL><PublicationReference>Association of Alcohol Use Disorder and Perioperative Complications and Adverse Events After Spinal Fusion Surgery During the In-Hospital Period: An Analysis of the National Inpatient Sample Database. World Neurosurg. 2025 03; 195:123677.</PublicationReference><Title>Association of Alcohol Use Disorder and Perioperative Complications and Adverse Events After Spinal Fusion Surgery During the In-Hospital Period: An Analysis of the National Inpatient Sample Database.</Title><Authors>Khan AMA, Soliman MAR, Quiceno E, Elbayomy AM, Malueg MD, Aguirre AO, Kuo CC, Whelan TJ, Im J, Levy HW, Khan A, Pollina J, Mullin JP. </Authors><Journal>World Neurosurg</Journal><Date>2025 03</Date><IssueInfo>195:123677</IssueInfo></Publication><Publication Source="PubMed" PMID="39522808"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39522808</URL><PublicationReference>Preliminary Experience Using Axolotl (Ambystoma mexicanum) Dermis Patches as a Biologic Agent for Wound Management After Neurosurgical Procedures. World Neurosurg. 2025 02; 194:123409.</PublicationReference><Title>Preliminary Experience Using Axolotl (Ambystoma mexicanum) Dermis Patches as a Biologic Agent for Wound Management After Neurosurgical Procedures.</Title><Authors>Malueg MD, Baig AA, Moser M, Donnelly BM, Im J, Lim J, Okai BK, Housley SB, Siddiqui AH, Snyder KV. </Authors><Journal>World Neurosurg</Journal><Date>2025 02</Date><IssueInfo>194:123409</IssueInfo></Publication><Publication Source="PubMed" PMID="39326665"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39326665</URL><PublicationReference>Association Between Median Household Income and Perioperative Outcomes of Lumbar Spinal Fusion: An Analysis of the National Inpatient Sample (2009-2020). World Neurosurg. 2024 12; 192:e318-e331.</PublicationReference><Title>Association Between Median Household Income and Perioperative Outcomes of Lumbar Spinal Fusion: An Analysis of the National Inpatient Sample (2009-2020).</Title><Authors>Khan AMA, Quiceno E, Soliman MAR, Elbayomy AM, Malueg MD, Aguirre AO, Greisman JD, Kuo CC, Whelan TJ, Im J, Levy HW, Nichol REM, Khan A, Pollina J, Mullin JP. </Authors><Journal>World Neurosurg</Journal><Date>2024 12</Date><IssueInfo>192:e318-e331</IssueInfo></Publication><Publication Source="PubMed" PMID="38934614"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38934614</URL><PublicationReference>American College of Surgeons National Surgical Quality Improvement Program Surgical Risk Calculator as a Predictor of Postoperative Outcomes After Adult Spinal Deformity Surgery: A Retrospective Cohort Analysis. Neurosurgery. 2025 Feb 01; 96(2):338-345.</PublicationReference><Title>American College of Surgeons National Surgical Quality Improvement Program Surgical Risk Calculator as a Predictor of Postoperative Outcomes After Adult Spinal Deformity Surgery: A Retrospective Cohort Analysis.</Title><Authors>Im J, Soliman MAR, Aguirre AO, Quiceno E, Burns E, Khan AMA, Kuo CC, Baig RA, Khan A, Hess RM, Pollina J, Mullin JP. </Authors><Journal>Neurosurgery</Journal><Date>2025 Feb 01</Date><IssueInfo>96(2):338-345</IssueInfo></Publication><Publication Source="PubMed" PMID="38901378"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38901378</URL><PublicationReference>Comparative analysis of patient demographics, perioperative outcomes, and adverse events after lumbar spinal fusion between urban and rural hospitals: an analysis of the National Inpatient Sample (NIS) database. Clin Neurol Neurosurg. 2024 08; 243:108375.</PublicationReference><Title>Comparative analysis of patient demographics, perioperative outcomes, and adverse events after lumbar spinal fusion between urban and rural hospitals: an analysis of the National Inpatient Sample (NIS) database.</Title><Authors>Im J, Soliman MAR, Quiceno E, Elbayomy AM, Aguirre AO, Kuo CC, Sood EM, Khan A, Levy HW, Ghannam MM, Pollina J, Mullin JP. </Authors><Journal>Clin Neurol Neurosurg</Journal><Date>2024 08</Date><IssueInfo>243:108375</IssueInfo></Publication><Publication Source="PubMed" PMID="38511159" PMCID="PMC10950731"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38511159</URL><PublicationReference>Thrombectomy outcomes for acute ischemic stroke in lower-middle income countries: A systematic review and analysis. World Neurosurg X. 2024 Jul; 23:100317.</PublicationReference><Title>Thrombectomy outcomes for acute ischemic stroke in lower-middle income countries: A systematic review and analysis.</Title><Authors>Lim J, Aguirre AO, Rattani A, Baig AA, Monteiro A, Kuo CC, Siddiqi M, Im J, Housley SB, McPheeters MJ, Ciecierska SK, Jaikumar V, Vakharia K, Davies JM, Snyder KV, Levy EI, Siddiqui AH. </Authors><Journal>World Neurosurg X</Journal><Date>2024 Jul</Date><IssueInfo>23:100317</IssueInfo></Publication><Publication Source="PubMed" PMID="38143028"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38143028</URL><PublicationReference>Comparative Analysis of the 3 Cervical Vertebral Bone Quality (C-VBQ) Score Methodologies and Their Correlations to the Lumbar Vertebral Bone Quality (VBQ) Score. World Neurosurg. 2024 03; 183:e321-e327.</PublicationReference><Title>Comparative Analysis of the 3 Cervical Vertebral Bone Quality (C-VBQ) Score Methodologies and Their Correlations to the Lumbar Vertebral Bone Quality (VBQ) Score.</Title><Authors>Aguirre AO, Soliman MAR, Kuo CC, Ruggiero N, Im J, Khan A, Lim J, Nyabuto E, Smolar DE, Mullin JP, Pollina J. </Authors><Journal>World Neurosurg</Journal><Date>2024 03</Date><IssueInfo>183:e321-e327</IssueInfo></Publication><Publication Source="PubMed" PMID="37823666"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37823666</URL><PublicationReference>Cervical Vertebral Bone Quality Score Independently Predicts Distal Junctional Kyphosis After Posterior Cervical Fusion. Neurosurgery. 2024 Mar 01; 94(3):461-469.</PublicationReference><Title>Cervical Vertebral Bone Quality Score Independently Predicts Distal Junctional Kyphosis After Posterior Cervical Fusion.</Title><Authors>Aguirre AO, Soliman MAR, Kuo CC, Ruggiero N, Im J, Chintaluru Y, Khan AMA, Khan A, Hess RM, Rho K, Smolar DE, Mullin JP, Pollina J. </Authors><Journal>Neurosurgery</Journal><Date>2024 Mar 01</Date><IssueInfo>94(3):461-469</IssueInfo></Publication></PublicationList><ConceptList><Concept><MeshHeader>Spinal Fusion</MeshHeader><NumPubs>5</NumPubs><Weight>8.334111754630201e-001</Weight><FirstPubDate>2023-10-12T00:00:00</FirstPubDate><LastPubDate>2025-02-14T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Hospitals, Rural</MeshHeader><NumPubs>1</NumPubs><Weight>7.521526516943220e-001</Weight><FirstPubDate>2024-06-07T00:00:00</FirstPubDate><LastPubDate>2024-06-07T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Hospitals, 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World Neurosurg. 2025 02; 194:123521.</PublicationReference><Title>Stroke-Related Outcomes in Moyamoya Disease Compared with Moyamoya Syndromes: A Propensity-Matched Analysis.</Title><Authors>Wadhwa A, Han K, Ramirez-Velandia F, Alwakaa O, Riordan C, McNeil E, Granstein JH, Taussky P, Enriquez-Marulanda A, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2025 02</Date><IssueInfo>194:123521</IssueInfo></Publication><Publication Source="PubMed" PMID="39447225"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39447225</URL><PublicationReference>Factors affecting the collateral ingrowth from the superficial temporal artery after Encephalo-Duro-Arterio-Synangiosis in adult patients with Moyamoya disease. Clin Neurol Neurosurg. 2024 11; 246:108611.</PublicationReference><Title>Factors affecting the collateral ingrowth from the superficial temporal artery after Encephalo-Duro-Arterio-Synangiosis in adult patients with Moyamoya disease.</Title><Authors>Ramirez-Velandia F, Alwakaa O, Enriquez-Marulanda A, Wadhwa A, Filo J, Han K, Pettersson SD, Fodor TB, McNeil EP, Young M, Muram S, Shutran M, Taussky P, Ogilvy CS. </Authors><Journal>Clin Neurol Neurosurg</Journal><Date>2024 11</Date><IssueInfo>246:108611</IssueInfo></Publication><Publication Source="PubMed" PMID="39265938"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39265938</URL><PublicationReference>Characterizing Revascularization After Encephalo-Duro-Arterio-Synangiosis (EDAS) in Adult Patients With Moyamoya Disease Using the Orbital Grading System. World Neurosurg. 2024 11; 191:e697-e706.</PublicationReference><Title>Characterizing Revascularization After Encephalo-Duro-Arterio-Synangiosis (EDAS) in Adult Patients With Moyamoya Disease Using the Orbital Grading System.</Title><Authors>Alwakaa O, Enriquez-Marulanda A, Ramirez-Velandia F, Filo J, Mensah E, Wadhwa A, Fodor TB, Pettersson SD, McNeil EP, Young M, Muram S, See AP, Granstein JH, Taussky P, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2024 11</Date><IssueInfo>191:e697-e706</IssueInfo></Publication><Publication Source="PubMed" PMID="39127374"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39127374</URL><PublicationReference>Superficial Temporal Artery Size Changes After Encephaloduroarteriosynangiosis for the Treatment of Moyamoya Disease. 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Stroke</MeshHeader><NumPubs>1</NumPubs><Weight>2.555047742894944e-002</Weight><FirstPubDate>2024-12-19T00:00:00</FirstPubDate><LastPubDate>2024-12-19T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Female</MeshHeader><NumPubs>4</NumPubs><Weight>2.435347286287845e-002</Weight><FirstPubDate>2024-08-08T00:00:00</FirstPubDate><LastPubDate>2024-12-19T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Humans</MeshHeader><NumPubs>5</NumPubs><Weight>1.917546930889367e-002</Weight><FirstPubDate>2023-07-28T00:00:00</FirstPubDate><LastPubDate>2024-12-19T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Risk Factors</MeshHeader><NumPubs>1</NumPubs><Weight>8.216689185185290e-003</Weight><FirstPubDate>2024-12-19T00:00:00</FirstPubDate><LastPubDate>2024-12-19T00:00:00</LastPubDate></Concept></ConceptList></Person><Person PersonID="111211"><Name><FullName>Ziev Moses, M.D.</FullName><FirstName>Ziev</FirstName><LastName>Moses</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2>Neurosurgery-Suite 3B</Address2><Address3>110 Francis Street</Address3><Address4>Boston, MA 02215</Address4><Telephone>617/525-7777</Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Assistant Professor of Neurosurgery</JobTitle><FacultyType FacultyTypeSort="2">Assistant Professor</FacultyType></Affiliation></AffiliationList><PublicationList><Publication Source="PubMed" PMID="41247563"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41247563</URL><PublicationReference>Post-ablation volume threshold for brain metastasis control using LITT: a systematic review and critical appraisal. J Neurooncol. 2025 Nov 17; 176(1):85.</PublicationReference><Title>Post-ablation volume threshold for brain metastasis control using LITT: a systematic review and critical appraisal.</Title><Authors>Terry F, Brito A, Váscones-Román FF, Rivera V, Enríquez-Marulanda A, Wadhwa A, Alwakaa O, Morán C, Moses ZB, Komotar RJ, Vega RA, Merenzon M. </Authors><Journal>J Neurooncol</Journal><Date>2025 Nov 17</Date><IssueInfo>176(1):85</IssueInfo></Publication><Publication Source="PubMed" PMID="41182066"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41182066</URL><PublicationReference>Autonomous extraction of preoperative radiographic predictors on X-ray for cervical spine deformity following laminoplasty: a prospectively validated AI tool. Neurol Neurochir Pol. 2025 Nov 03.</PublicationReference><Title>Autonomous extraction of preoperative radiographic predictors on X-ray for cervical spine deformity following laminoplasty: a prospectively validated AI tool.</Title><Authors>Pettersson SD, Koc NA, Skrzypkowska P, Filo J, Siedlecki K, Aleksandrowicz KM, Lee J, Alwakaa O, Jabbar R, Terry F, Faraj M, Szmuda T, Zielinski P, Moses ZB, Sagan L, Klepinowski T. </Authors><Journal>Neurol Neurochir Pol</Journal><Date>2025 Nov 03</Date><IssueInfo /></Publication><Publication Source="PubMed" PMID="41280303" PMCID="PMC12639625"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41280303</URL><PublicationReference>Predicting rehabilitation discharge after lumbar decompression: Impact of age and preoperative assistive device use. N Am Spine Soc J. 2025 Dec; 24:100815.</PublicationReference><Title>Predicting rehabilitation discharge after lumbar decompression: Impact of age and preoperative assistive device use.</Title><Authors>Avery M, Terry F, Powers AY, Yazdanian F, Lee C, Pandya P, Stippler M, Papavassiliou E, Moses ZB. </Authors><Journal>N Am Spine Soc J</Journal><Date>2025 Dec</Date><IssueInfo>24:100815</IssueInfo></Publication><Publication Source="PubMed" PMID="40649171" PMCID="PMC12250825"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40649171</URL><PublicationReference>Clinical Predictors of Inpatient Mortality and Poor Postoperative Course After aSAH Microsurgical Clipping: A 10-Year Experience from a Peruvian Tertiary Care Center. J Clin Med. 2025 Jul 07; 14(13).</PublicationReference><Title>Clinical Predictors of Inpatient Mortality and Poor Postoperative Course After aSAH Microsurgical Clipping: A 10-Year Experience from a Peruvian Tertiary Care Center.</Title><Authors>Terry F, Enríquez-Marulanda A, Chinchihualpa-Paredes N, Carbajal-Galarza M, Vidal-Cuellar CL, Mas-Ubillus G, Diaz-Llanes B, Quispe-Vicuña C, Pacheco-Barrios N, Arbulu-Zuazo R, Moses ZB, Sequeiros J, Luther E, Starke RM, Taussky P, Lopez-Calle J. </Authors><Journal>J Clin Med</Journal><Date>2025 Jul 07</Date><IssueInfo>14(13)</IssueInfo></Publication><Publication Source="PubMed" PMID="40387334"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40387334</URL><PublicationReference>Comparative Effectiveness of Conservative Management Versus Surgical Fixation in Acute Type II Odontoid Fractures. Neurosurgery. 2026 Jan 01; 98(1):61-72.</PublicationReference><Title>Comparative Effectiveness of Conservative Management Versus Surgical Fixation in Acute Type II Odontoid Fractures.</Title><Authors>Yazdanian F, Enriquez-Marulanda A, Ramirez-Velandia F, Alwakaa O, Sconzo D, Terry F, Pandya P, Papavassiliou E, Stippler M, Moses ZB. </Authors><Journal>Neurosurgery</Journal><Date>2026 Jan 01</Date><IssueInfo>98(1):61-72</IssueInfo></Publication><Publication Source="PubMed" PMID="39249115"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39249115</URL><PublicationReference>Hearing preservation and quality of life in small to medium sized vestibular schwannomas after a wait and scan approach or stereotactic radiosurgery: a systematic review and meta-analysis. Acta Neurochir (Wien). 2024 09 09; 166(1):361.</PublicationReference><Title>Hearing preservation and quality of life in small to medium sized vestibular schwannomas after a wait and scan approach or stereotactic radiosurgery: a systematic review and meta-analysis.</Title><Authors>Brito A, Silva JDS, Terry F, Punukollu A, Levy AS, Silva ALM, Speckter H, Morell AA, Enriquez-Marulanda A, Moses ZB, Komotar RJ, Vega RA. </Authors><Journal>Acta Neurochir (Wien)</Journal><Date>2024 09 09</Date><IssueInfo>166(1):361</IssueInfo></Publication><Publication Source="PubMed" PMID="39159499" PMCID="PMC11337938"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39159499</URL><PublicationReference>Diffuse large B-cell lymphoma in the C8 root mimicking a schwannoma: illustrative case. J Neurosurg Case Lessons. 2024 Aug 19; 8(8).</PublicationReference><Title>Diffuse large B-cell lymphoma in the C8 root mimicking a schwannoma: illustrative case.</Title><Authors>Ramirez-Velandia F, Manchella MK, Penumaka A, Schwartz SN, Varma H, Vega RA, Moses ZB. </Authors><Journal>J Neurosurg Case Lessons</Journal><Date>2024 Aug 19</Date><IssueInfo>8(8)</IssueInfo></Publication><Publication Source="PubMed" PMID="39205670" PMCID="PMC11350436"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39205670</URL><PublicationReference>Circumferential correction of spinal deformity and instability secondary to bacterial spondylodiscitis. N Am Spine Soc J. 2024 Sep; 19:100517.</PublicationReference><Title>Circumferential correction of spinal deformity and instability secondary to bacterial spondylodiscitis.</Title><Authors>Rehman AA, Moses ZB, Turel MK, Nunna RS, Kerolus MG, Meza SJ, Fontes RBV. </Authors><Journal>N Am Spine Soc J</Journal><Date>2024 Sep</Date><IssueInfo>19:100517</IssueInfo></Publication><Publication Source="PubMed" PMID="38770467" PMCID="PMC11104278"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38770467</URL><PublicationReference>Educational Limitations of ChatGPT in Neurosurgery Board Preparation. Cureus. 2024 Apr; 16(4):e58639.</PublicationReference><Title>Educational Limitations of ChatGPT in Neurosurgery Board Preparation.</Title><Authors>Powers AY, McCandless MG, Taussky P, Vega RA, Shutran MS, Moses ZB. </Authors><Journal>Cureus</Journal><Date>2024 Apr</Date><IssueInfo>16(4):e58639</IssueInfo></Publication><Publication Source="PubMed" PMID="38738035" PMCID="PMC11081786"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38738035</URL><PublicationReference>Left-Handed Palming of the Needle Driver: A Technical Report for Surgical Trainees. Cureus. 2024 Apr; 16(4):e57931.</PublicationReference><Title>Left-Handed Palming of the Needle Driver: A Technical Report for Surgical Trainees.</Title><Authors>Powers AY, Rosenthal AE, Mackel CE, Riordan CP, Moses ZB. </Authors><Journal>Cureus</Journal><Date>2024 Apr</Date><IssueInfo>16(4):e57931</IssueInfo></Publication><Publication Source="Custom"><PublicationReference>Minimally invasive treatment of lumbar epidural lipomatosis with local administration of deoxycholic acid. Medical Hypotheses. 2023; 182.</PublicationReference><Title>Minimally invasive treatment of lumbar epidural lipomatosis with local administration of deoxycholic acid</Title><Authors>McCandless MG, Powers AY, Moses ZB. </Authors><Journal>Medical Hypotheses</Journal><Date>2023</Date><IssueInfo>182</IssueInfo></Publication><Publication Source="PubMed" PMID="37660894"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37660894</URL><PublicationReference>Public health insurance, frailty, and lack of home support predict rehab discharge following elective anterior cervical discectomy and fusion. Spine J. 2023 12; 23(12):1830-1837.</PublicationReference><Title>Public health insurance, frailty, and lack of home support predict rehab discharge following elective anterior cervical discectomy and fusion.</Title><Authors>Powers AY, Chang DC, Stippler M, Papavassiliou E, Moses ZB. </Authors><Journal>Spine J</Journal><Date>2023 12</Date><IssueInfo>23(12):1830-1837</IssueInfo></Publication><Publication Source="PubMed" PMID="35106159" PMCID="PMC8787723"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35106159</URL><PublicationReference>Spontaneous Propionibacterium Acnes abscess with intraventricular rupture in an immunocompetent adult without prior neurosurgical intervention. Clin Case Rep. 2022 Jan; 10(1):e05216.</PublicationReference><Title>Spontaneous Propionibacterium Acnes abscess with intraventricular rupture in an immunocompetent adult without prior neurosurgical intervention.</Title><Authors>Smith JL, Cruz-Gordillo P, Luiselli G, Daci R, Owusu-Adjei B, Ogagan C, Moses ZB. </Authors><Journal>Clin Case Rep</Journal><Date>2022 Jan</Date><IssueInfo>10(1):e05216</IssueInfo></Publication><Publication Source="PubMed" PMID="34419662"><URL>http://www.ncbi.nlm.nih.gov/pubmed/34419662</URL><PublicationReference>Patient Satisfaction Following Minimally Invasive and Open Surgeries for Adult Spinal Deformity. World Neurosurg. 2021 11; 155:e301-e314.</PublicationReference><Title>Patient Satisfaction Following Minimally Invasive and Open Surgeries for Adult Spinal Deformity.</Title><Authors>Ryu WHA, Cheong M, Platt A, Moses Z, O'Toole JE, Fontes R, Fessler RG. </Authors><Journal>World Neurosurg</Journal><Date>2021 11</Date><IssueInfo>155:e301-e314</IssueInfo></Publication><Publication Source="PubMed" PMID="34087787"><URL>http://www.ncbi.nlm.nih.gov/pubmed/34087787</URL><PublicationReference>The modified frailty index and patient outcomes following transforaminal lumbar interbody fusion surgery for single-level degenerative spine disease. J Neurosurg Spine. 2021 08 01; 35(2):163-169.</PublicationReference><Title>The modified frailty index and patient outcomes following transforaminal lumbar interbody fusion surgery for single-level degenerative spine disease.</Title><Authors>Moses ZB, Oh SY, Fontes RBV, Deutsch H, O'Toole JE, Fessler RG. </Authors><Journal>J Neurosurg Spine</Journal><Date>2021 08 01</Date><IssueInfo>35(2):163-169</IssueInfo></Publication><Publication Source="PubMed" PMID="34296029" PMCID="PMC8261555"><URL>http://www.ncbi.nlm.nih.gov/pubmed/34296029</URL><PublicationReference>A retrospective comparison of radiographic and clinical outcomes in single-level degenerative lumbar disease undergoing anterior versus transforaminal lumbar interbody fusion. J Spine Surg. 2021 Jun; 7(2):170-180.</PublicationReference><Title>A retrospective comparison of radiographic and clinical outcomes in single-level degenerative lumbar disease undergoing anterior versus transforaminal lumbar interbody fusion.</Title><Authors>Moses ZB, Razvi S, Oh SY, Platt A, Keegan KC, Hamati F, Witiw C, David BT, Fontes RBV, Deutsch H, O'Toole JE, Fessler RG. </Authors><Journal>J Spine Surg</Journal><Date>2021 Jun</Date><IssueInfo>7(2):170-180</IssueInfo></Publication><Publication Source="PubMed" PMID="32147013"><URL>http://www.ncbi.nlm.nih.gov/pubmed/32147013</URL><PublicationReference>Benign Intradural and Paraspinal Nerve Sheath Tumors: Advanced Surgical Techniques. Neurosurg Clin N Am. 2020 Apr; 31(2):221-229.</PublicationReference><Title>Benign Intradural and Paraspinal Nerve Sheath Tumors: Advanced Surgical Techniques.</Title><Authors>Moses ZB, Barzilai O, O'Toole JE. </Authors><Journal>Neurosurg Clin N Am</Journal><Date>2020 Apr</Date><IssueInfo>31(2):221-229</IssueInfo></Publication><Publication Source="PubMed" PMID="31952035"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31952035</URL><PublicationReference>MRI-guided cryoablation for metastatic spine disease: intermediate-term clinical outcomes in 14 consecutive patients. J Neurosurg Spine. 2020 05 01; 32(5):676-681.</PublicationReference><Title>MRI-guided cryoablation for metastatic spine disease: intermediate-term clinical outcomes in 14 consecutive patients.</Title><Authors>Moses ZB, Lee TC, Huang KT, Guenette JP, Chi JH. </Authors><Journal>J Neurosurg Spine</Journal><Date>2020 05 01</Date><IssueInfo>32(5):676-681</IssueInfo></Publication><Publication Source="PubMed" PMID="33134018" PMCID="PMC7591355"><URL>http://www.ncbi.nlm.nih.gov/pubmed/33134018</URL><PublicationReference>MRI and CT Guided Cryoablation for Intracranial Extension of Malignancies along the Trigeminal Nerve. J Neurol Surg B Skull Base. 2020 Oct; 81(5):511-514.</PublicationReference><Title>MRI and CT Guided Cryoablation for Intracranial Extension of Malignancies along the Trigeminal Nerve.</Title><Authors>Lee TC, Guenette JP, Moses ZB, Lee JW, Annino DJ, Chi JH. </Authors><Journal>J Neurol Surg B Skull Base</Journal><Date>2020 Oct</Date><IssueInfo>81(5):511-514</IssueInfo></Publication><Publication Source="PubMed" PMID="31011224" PMCID="PMC6535118"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31011224</URL><PublicationReference>Dorsolateral prefrontal neurons mediate subjective decisions and their variation in humans. Nat Neurosci. 2019 06; 22(6):1010-1020.</PublicationReference><Title>Dorsolateral prefrontal neurons mediate subjective decisions and their variation in humans.</Title><Authors>Jamali M, Grannan B, Haroush K, Moses ZB, Eskandar EN, Herrington T, Patel S, Williams ZM. </Authors><Journal>Nat Neurosci</Journal><Date>2019 06</Date><IssueInfo>22(6):1010-1020</IssueInfo></Publication><Publication Source="PubMed" PMID="30247981" PMCID="PMC6677247"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30247981</URL><PublicationReference>MRI-Guided Cryoablation of Epidural Malignancies in the Spinal Canal Resulting in Neural Decompression and Regrowth of Bone. AJR Am J Roentgenol. 2019 01; 212(1):205-208.</PublicationReference><Title>MRI-Guided Cryoablation of Epidural Malignancies in the Spinal Canal Resulting in Neural Decompression and Regrowth of Bone.</Title><Authors>Lee TC, Guenette JP, Moses ZB, Chi JH. </Authors><Journal>AJR Am J Roentgenol</Journal><Date>2019 01</Date><IssueInfo>212(1):205-208</IssueInfo></Publication><Publication Source="PubMed" PMID="30192219"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30192219</URL><PublicationReference>Direct puncture for diagnosis of intradural spinal arachnoid cyst and fenestration using 3D rotational fluoroscopy: technical note and the "jellyfish sign". J Neurosurg Spine. 2018 12 01; 29(6):720-724.</PublicationReference><Title>Direct puncture for diagnosis of intradural spinal arachnoid cyst and fenestration using 3D rotational fluoroscopy: technical note and the "jellyfish sign".</Title><Authors>Moses ZB, Chi JH, Chavali RVSR. </Authors><Journal>J Neurosurg Spine</Journal><Date>2018 12 01</Date><IssueInfo>29(6):720-724</IssueInfo></Publication><Publication Source="PubMed" PMID="30002452" PMCID="PMC6043557"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30002452</URL><PublicationReference>Decoding unconstrained arm movements in primates using high-density electrocorticography signals for brain-machine interface use. Sci Rep. 2018 Jul 12; 8(1):10583.</PublicationReference><Title>Decoding unconstrained arm movements in primates using high-density electrocorticography signals for brain-machine interface use.</Title><Authors>Hu K, Jamali M, Moses ZB, Ortega CA, Friedman GN, Xu W, Williams ZM. </Authors><Journal>Sci Rep</Journal><Date>2018 Jul 12</Date><IssueInfo>8(1):10583</IssueInfo></Publication><Publication Source="PubMed" PMID="29216380" PMCID="PMC5961256"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29216380</URL><PublicationReference>Recent advances in intradural spinal tumors. Neuro Oncol. 2018 05 18; 20(6):729-742.</PublicationReference><Title>Recent advances in intradural spinal tumors.</Title><Authors>Abd-El-Barr MM, Huang KT, Moses ZB, Iorgulescu JB, Chi JH. </Authors><Journal>Neuro Oncol</Journal><Date>2018 05 18</Date><IssueInfo>20(6):729-742</IssueInfo></Publication><Publication Source="PubMed" PMID="29424675"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29424675</URL><PublicationReference>Intradural spinal arachnoid cyst resection: implications of duraplasty in a large case series. J Neurosurg Spine. 2018 05; 28(5):548-554.</PublicationReference><Title>Intradural spinal arachnoid cyst resection: implications of duraplasty in a large case series.</Title><Authors>Moses ZB, Friedman GN, Penn DL, Solomon IH, Chi JH. </Authors><Journal>J Neurosurg Spine</Journal><Date>2018 05</Date><IssueInfo>28(5):548-554</IssueInfo></Publication><Publication Source="PubMed" PMID="28873992"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28873992</URL><PublicationReference>Genetic Susceptibility for Sciatica and Lumbar Disc Herniation. Neurosurgery. 2017 07 01; 81(1):N13-N14.</PublicationReference><Title>Genetic Susceptibility for Sciatica and Lumbar Disc Herniation.</Title><Authors>Moses ZB, Chi JH. </Authors><Journal>Neurosurgery</Journal><Date>2017 07 01</Date><IssueInfo>81(1):N13-N14</IssueInfo></Publication><Publication Source="PubMed" PMID="28480753"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28480753</URL><PublicationReference>Bibliometric profile of deep brain stimulation. Br J Neurosurg. 2017 Oct; 31(5):587-592.</PublicationReference><Title>Bibliometric profile of deep brain stimulation.</Title><Authors>Hu K, Moses ZB, Xu W, Williams Z. </Authors><Journal>Br J Neurosurg</Journal><Date>2017 Oct</Date><IssueInfo>31(5):587-592</IssueInfo></Publication><Publication Source="PubMed" PMID="28586492"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28586492</URL><PublicationReference>Advances in Implanted Brain-Computer Interfaces Allow for Independent Communication in a Locked-In Patient. Neurosurgery. 2017 05 01; 80(5):N30-N31.</PublicationReference><Title>Advances in Implanted Brain-Computer Interfaces Allow for Independent Communication in a Locked-In Patient.</Title><Authors>Huang KT, Moses ZB, Chi JH. </Authors><Journal>Neurosurgery</Journal><Date>2017 05 01</Date><IssueInfo>80(5):N30-N31</IssueInfo></Publication><Publication Source="PubMed" PMID="27826085"><URL>http://www.ncbi.nlm.nih.gov/pubmed/27826085</URL><PublicationReference>Short-Term Adverse Outcomes After Deep Brain Stimulation Treatment in Patients with Parkinson Disease. World Neurosurg. 2017 Feb; 98:365-374.</PublicationReference><Title>Short-Term Adverse Outcomes After Deep Brain Stimulation Treatment in Patients with Parkinson Disease.</Title><Authors>Hu K, Moses ZB, Hutter MM, Williams Z. </Authors><Journal>World Neurosurg</Journal><Date>2017 Feb</Date><IssueInfo>98:365-374</IssueInfo></Publication><Publication Source="PubMed" PMID="27635968"><URL>http://www.ncbi.nlm.nih.gov/pubmed/27635968</URL><PublicationReference>Silencing the Chatter Between the Spine and the Spleen After Spinal Cord Injury. Neurosurgery. 2016 10; 79(4):N14-5.</PublicationReference><Title>Silencing the Chatter Between the Spine and the Spleen After Spinal Cord Injury.</Title><Authors>Moses ZB, Chi JH. </Authors><Journal>Neurosurgery</Journal><Date>2016 10</Date><IssueInfo>79(4):N14-5</IssueInfo></Publication><Publication Source="PubMed" PMID="27589597"><URL>http://www.ncbi.nlm.nih.gov/pubmed/27589597</URL><PublicationReference>Direct heart shunt placement for CSF diversion: technical note. J Neurosurg Pediatr. 2016 Dec; 25(6):663-666.</PublicationReference><Title>Direct heart shunt placement for CSF diversion: technical note.</Title><Authors>Moses ZB, Ozpinar A, Abd-El-Barr MM, Quinonez LG, Emani SM, Goumnerova LC. </Authors><Journal>J Neurosurg Pediatr</Journal><Date>2016 Dec</Date><IssueInfo>25(6):663-666</IssueInfo></Publication><Publication Source="PubMed" PMID="26584317"><URL>http://www.ncbi.nlm.nih.gov/pubmed/26584317</URL><PublicationReference>Increasing the Frequency on Spinal Cord Stimulation. Neurosurgery. 2015 Dec; 77(6):N10-1.</PublicationReference><Title>Increasing the Frequency on Spinal Cord Stimulation.</Title><Authors>Moses ZB, Vasudeva VS, Chi JH. </Authors><Journal>Neurosurgery</Journal><Date>2015 Dec</Date><IssueInfo>77(6):N10-1</IssueInfo></Publication><Publication Source="PubMed" PMID="25784011"><URL>http://www.ncbi.nlm.nih.gov/pubmed/25784011</URL><PublicationReference>Timing is everything in corticospinal tract recovery after stroke. Neurosurgery. 2015 Apr; 76(4):N18-9.</PublicationReference><Title>Timing is everything in corticospinal tract recovery after stroke.</Title><Authors>Moses ZB, Abd-El-Barr MM, Chi JH. </Authors><Journal>Neurosurgery</Journal><Date>2015 Apr</Date><IssueInfo>76(4):N18-9</IssueInfo></Publication><Publication Source="PubMed" PMID="25655685" PMCID="PMC4466211"><URL>http://www.ncbi.nlm.nih.gov/pubmed/25655685</URL><PublicationReference>Neurogenic Stress Cardiomyopathy After Aneurysmal Subarachnoid Hemorrhage. World Neurosurg. 2015 Jun; 83(6):880-5.</PublicationReference><Title>Neurogenic Stress Cardiomyopathy After Aneurysmal Subarachnoid Hemorrhage.</Title><Authors>Malik AN, Gross BA, Rosalind Lai PM, Moses ZB, Du R. </Authors><Journal>World Neurosurg</Journal><Date>2015 Jun</Date><IssueInfo>83(6):880-5</IssueInfo></Publication><Publication Source="PubMed" PMID="23905950"><URL>http://www.ncbi.nlm.nih.gov/pubmed/23905950</URL><PublicationReference>Neuronavigation in minimally invasive spine surgery. Neurosurg Focus. 2013 Aug; 35(2):E12.</PublicationReference><Title>Neuronavigation in minimally invasive spine surgery.</Title><Authors>Moses ZB, Mayer RR, Strickland BA, Kretzer RM, Wolinsky JP, Gokaslan ZL, Baaj AA. </Authors><Journal>Neurosurg Focus</Journal><Date>2013 Aug</Date><IssueInfo>35(2):E12</IssueInfo></Publication><Publication Source="PubMed" PMID="23288608"><URL>http://www.ncbi.nlm.nih.gov/pubmed/23288608</URL><PublicationReference>Indications for treatment of recurrent carotid stenosis. Br J Surg. 2013 Mar; 100(4):440-7.</PublicationReference><Title>Indications for treatment of recurrent carotid stenosis.</Title><Authors>Bekelis K, Moses Z, Missios S, Desai A, Labropoulos N. </Authors><Journal>Br J Surg</Journal><Date>2013 Mar</Date><IssueInfo>100(4):440-7</IssueInfo></Publication><Publication Source="PubMed" PMID="23061384"><URL>http://www.ncbi.nlm.nih.gov/pubmed/23061384</URL><PublicationReference>Subdural interhemispheric grid electrodes for intracranial epilepsy monitoring: feasibility, safety, and utility: clinical article. J Neurosurg. 2012 Dec; 117(6):1182-8.</PublicationReference><Title>Subdural interhemispheric grid electrodes for intracranial epilepsy monitoring: feasibility, safety, and utility: clinical article.</Title><Authors>Bekelis K, Radwan TA, Desai A, Moses ZB, Thadani VM, Jobst BC, Bujarski KA, Darcey TM, Roberts DW. </Authors><Journal>J Neurosurg</Journal><Date>2012 Dec</Date><IssueInfo>117(6):1182-8</IssueInfo></Publication><Publication Source="PubMed" PMID="22878664" PMCID="PMC3718468"><URL>http://www.ncbi.nlm.nih.gov/pubmed/22878664</URL><PublicationReference>Gadolinium- and 5-aminolevulinic acid-induced protoporphyrin IX levels in human gliomas: an ex vivo quantitative study to correlate protoporphyrin IX levels and blood-brain barrier breakdown. J Neuropathol Exp Neurol. 2012 Sep; 71(9):806-13.</PublicationReference><Title>Gadolinium- and 5-aminolevulinic acid-induced protoporphyrin IX levels in human gliomas: an ex vivo quantitative study to correlate protoporphyrin IX levels and blood-brain barrier breakdown.</Title><Authors>Valdés PA, Moses ZB, Kim A, Belden CJ, Wilson BC, Paulsen KD, Roberts DW, Harris BT. </Authors><Journal>J Neuropathol Exp Neurol</Journal><Date>2012 Sep</Date><IssueInfo>71(9):806-13</IssueInfo></Publication><Publication Source="PubMed" PMID="21798847" PMCID="PMC3145475"><URL>http://www.ncbi.nlm.nih.gov/pubmed/21798847</URL><PublicationReference>d-aminolevulinic acid-induced protoporphyrin IX concentration correlates with histopathologic markers of malignancy in human gliomas: the need for quantitative fluorescence-guided resection to identify regions of increasing malignancy. Neuro Oncol. 2011 Aug; 13(8):846-56.</PublicationReference><Title>d-aminolevulinic acid-induced protoporphyrin IX concentration correlates with histopathologic markers of malignancy in human gliomas: the need for quantitative fluorescence-guided resection to identify regions of increasing malignancy.</Title><Authors>Valdés PA, Kim A, Brantsch M, Niu C, Moses ZB, Tosteson TD, Wilson BC, Paulsen KD, Roberts DW, Harris BT. </Authors><Journal>Neuro Oncol</Journal><Date>2011 Aug</Date><IssueInfo>13(8):846-56</IssueInfo></Publication><Publication Source="PubMed" PMID="18002038"><URL>http://www.ncbi.nlm.nih.gov/pubmed/18002038</URL><PublicationReference>Measuring task-related changes in heart rate variability. Annu Int Conf IEEE Eng Med Biol Soc. 2007; 2007:644-7.</PublicationReference><Title>Measuring task-related changes in heart rate variability.</Title><Authors>Moses ZB, Luecken LJ, Eason JC. </Authors><Journal>Annu Int Conf IEEE Eng Med Biol Soc</Journal><Date>2007</Date><IssueInfo>2007:644-7</IssueInfo></Publication></PublicationList><ConceptList><Concept><MeshHeader>Arachnoid Cysts</MeshHeader><NumPubs>2</NumPubs><Weight>1.070292629058486e+000</Weight><FirstPubDate>2018-02-09T00:00:00</FirstPubDate><LastPubDate>2018-09-07T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Spinal Cord Diseases</MeshHeader><NumPubs>2</NumPubs><Weight>9.193126457370979e-001</Weight><FirstPubDate>2018-02-09T00:00:00</FirstPubDate><LastPubDate>2018-09-07T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Odontoid 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Tests</MeshHeader><NumPubs>1</NumPubs><Weight>9.468140886050254e-003</Weight><FirstPubDate>2012-10-12T00:00:00</FirstPubDate><LastPubDate>2012-10-12T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Seizures</MeshHeader><NumPubs>1</NumPubs><Weight>9.467670893205851e-003</Weight><FirstPubDate>2012-10-12T00:00:00</FirstPubDate><LastPubDate>2012-10-12T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Diagnostic Imaging</MeshHeader><NumPubs>1</NumPubs><Weight>8.084552635519878e-003</Weight><FirstPubDate>2011-08-01T00:00:00</FirstPubDate><LastPubDate>2011-08-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Prospective Studies</MeshHeader><NumPubs>1</NumPubs><Weight>7.807296013803427e-003</Weight><FirstPubDate>2021-08-19T00:00:00</FirstPubDate><LastPubDate>2021-08-19T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Sensitivity and Specificity</MeshHeader><NumPubs>1</NumPubs><Weight>7.549709856427651e-003</Weight><FirstPubDate>2011-08-01T00:00:00</FirstPubDate><LastPubDate>2011-08-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Time Factors</MeshHeader><NumPubs>1</NumPubs><Weight>6.902681897992488e-003</Weight><FirstPubDate>2016-11-05T00:00:00</FirstPubDate><LastPubDate>2016-11-05T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Myocardial Infarction</MeshHeader><NumPubs>1</NumPubs><Weight>5.705795998789777e-003</Weight><FirstPubDate>2013-01-03T00:00:00</FirstPubDate><LastPubDate>2013-01-03T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Stroke</MeshHeader><NumPubs>1</NumPubs><Weight>5.140486862957214e-003</Weight><FirstPubDate>2013-01-03T00:00:00</FirstPubDate><LastPubDate>2013-01-03T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Brain</MeshHeader><NumPubs>1</NumPubs><Weight>4.867956557585043e-003</Weight><FirstPubDate>2017-05-01T00:00:00</FirstPubDate><LastPubDate>2017-05-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Risk Factors</MeshHeader><NumPubs>1</NumPubs><Weight>4.143972461389919e-003</Weight><FirstPubDate>2015-02-03T00:00:00</FirstPubDate><LastPubDate>2015-02-03T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Child</MeshHeader><NumPubs>1</NumPubs><Weight>3.263393400903968e-003</Weight><FirstPubDate>2012-10-12T00:00:00</FirstPubDate><LastPubDate>2012-10-12T00:00:00</LastPubDate></Concept></ConceptList></Person><Person PersonID="64171"><Name><FullName>Christopher S. Ogilvy, M.D.</FullName><FirstName>Christopher</FirstName><LastName>Ogilvy</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2>Dept of Neurosurgery - Suite 3B</Address2><Address3>110 Francis Street</Address3><Address4>Boston, MA 02215</Address4><Telephone> </Telephone><Fax /><Latitude>42.36241700000000</Latitude><Longitude>-71.06893700000000</Longitude></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Professor of Neurosurgery</JobTitle><FacultyType FacultyTypeSort="0">Full Professor</FacultyType></Affiliation></AffiliationList><FundingList><Funding><RoleLabel>Principal Investigator</RoleLabel><AgreementLabel>AVOIDING STROKE DURING CEREBROVASCULAR SURGERY</AgreementLabel><GrantAwardedBy>NIH</GrantAwardedBy><StartDate>1994-04-01</StartDate><EndDate>1999-03-31</EndDate><PrincipalInvestigatorName>OGILVY, CHRISTOPHER S</PrincipalInvestigatorName><Abstract>A technique used with increasing frequency in the neurosurgical operating room is temporary occlusion of a major intracranial vessel to facilitate the obliteration of a vascular lesion (e.g. cerebral aneurysm). While this is of great help technically, it produces a potential for cerebral infraction (stroke). Under these conditions, collateral blood flow is present, which distinguishes this type of ischemic insults from complete, global ischemia as produced by cardiac standstill.

I proposed to explore means of protecting cerebral tissue from such partial or "focal" ischemia, using measures designed to maximize energy supply via collaterals, and to minimize the energy requirements of the tissue. These techniques are designed to prevent rather than to treat ischemia and have been generally under-utilized.

In the initial phase of the proposed study, I will refine an existing model of focal cerebral ischemia in the rabbit to mimic the conditions present when treating patients with cerebrovascular disease, and I will test the effects of three protective measures used singly and in combination. Induced systemic hypertension and intravenous mannitol will be used to improve energy supply by improving collateral blood flow. Mild hypothermia will be used to reduce energy requirements.

In the second phase of the study, I propose to use the focal in vivo ischemia model to test the protective effect of replacing the rabbit's red blood cells with polymerized bovine hemoglobin. The resulting reduction in viscosity, without a reduction in oxygen carrying capacity, is expected to increase substantially the rate of blood flow and oxygen delivery (energy supply) via collaterals to ischemic brain tissue.

During the later phase of study, several pharmacologic agents which suppress neuronal metabolism will be combined and delivered prior to the induced ischemia. Since it is anticipated that some of the most useful agents will not readily pass the blood-brain-barrier, intra-arterial mannitol will be given prior to the agents to transiently open the barrier and increase the penetration. If effective, this would provide a new method for avoiding cerebral tissue injury and would have the potential for direct application in the operating room where agents could be given prior to an interval of "planned" focal brain ischemia.</Abstract></Funding></FundingList><PublicationList><Publication Source="PubMed" PMID="41734937"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41734937</URL><PublicationReference>Safety of endovascular shunting for normal pressure hydrocephalus from a prospective, multicenter, single-arm study. 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J Stroke Cerebrovasc Dis. 2025 May; 34(5):108277.</PublicationReference><Title>Predictors of perioperative stroke in patients with Ischemic-type moyamoya disease treated with surgical revascularization: A retrospective multicenter study.</Title><Authors>Musmar B, Roy JM, Abdalrazeq H, Atallah E, Naamani KE, Chen CJ, Jabre R, Saad H, Grossberg JA, Dmytriw AA, Patel AB, Khorasanizadeh M, Ogilvy CS, Thomas AJ, Monteiro A, Siddiqui A, Cortez GM, Hanel RA, Porto G, Spiotta AM, Piscopo AJ, Hasan DM, Ghorbani M, Weinberg J, Nimjee SM, Bekelis K, Salem MM, Burkhardt JK, Zetchi A, Matouk C, Howard BM, Lai R, Du R, Abbas R, Sioutas GS, Amllay A, Munoz A, Herial NA, Tjoumakaris SI, Gooch MR, Rosenwasser RH, Jabbour P. </Authors><Journal>J Stroke Cerebrovasc Dis</Journal><Date>2025 May</Date><IssueInfo>34(5):108277</IssueInfo></Publication><Publication Source="PubMed" PMID="40016553" PMCID="PMC11868255"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40016553</URL><PublicationReference>Spetzler-Martin grade I and II cerebral arteriovenous malformations: a propensity-score matched analysis of resection and stereotactic radiosurgery in adult patients. 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World Neurosurg. 2025 01; 193:1065-1075.</PublicationReference><Title>Patterns of Dynamic Adaptability of the Circle of Willis in Response to Major Branch Artery Coverage With a Flow Diverter.</Title><Authors>Ramirez-Velandia F, Mensah E, Salih M, Taussky P, Granstein JH, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2025 01</Date><IssueInfo>193:1065-1075</IssueInfo></Publication><Publication Source="PubMed" PMID="39465938"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39465938</URL><PublicationReference>Comparative Outcomes of Unilateral vs Bilateral Revascularization in Moyamoya Disease: A Multicenter Retrospective Study. Neurosurgery. 2025 Jun 01; 96(6):1364-1373.</PublicationReference><Title>Comparative Outcomes of Unilateral vs Bilateral Revascularization in Moyamoya Disease: A Multicenter Retrospective Study.</Title><Authors>Musmar B, Roy JM, Abdalrazeq H, Kaul A, Atallah E, El Naamani K, Chen CJ, Jabre R, Saad H, Grossberg JA, Dmytriw AA, Patel AB, Khorasanizadeh M, Ogilvy CS, Thomas AJ, Monteiro A, Siddiqui A, Cortez GM, Hanel RA, Porto G, Spiotta AM, Piscopo AJ, Hasan DM, Ghorbani M, Weinberg J, Nimjee SM, Bekelis K, Salem MM, Burkhardt JK, Zetchi A, Matouk C, Howard BM, Lai R, Du R, Abbas R, Sioutas GS, Amllay A, Munoz A, Herial NA, Tjoumakaris SI, Gooch MR, Rosenwasser RH, Jabbour P. </Authors><Journal>Neurosurgery</Journal><Date>2025 Jun 01</Date><IssueInfo>96(6):1364-1373</IssueInfo></Publication><Publication Source="PubMed" PMID="39447225"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39447225</URL><PublicationReference>Factors affecting the collateral ingrowth from the superficial temporal artery after Encephalo-Duro-Arterio-Synangiosis in adult patients with Moyamoya disease. Clin Neurol Neurosurg. 2024 11; 246:108611.</PublicationReference><Title>Factors affecting the collateral ingrowth from the superficial temporal artery after Encephalo-Duro-Arterio-Synangiosis in adult patients with Moyamoya disease.</Title><Authors>Ramirez-Velandia F, Alwakaa O, Enriquez-Marulanda A, Wadhwa A, Filo J, Han K, Pettersson SD, Fodor TB, McNeil EP, Young M, Muram S, Shutran M, Taussky P, Ogilvy CS. </Authors><Journal>Clin Neurol Neurosurg</Journal><Date>2024 11</Date><IssueInfo>246:108611</IssueInfo></Publication><Publication Source="PubMed" PMID="39524584" PMCID="PMC11544462"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39524584</URL><PublicationReference>Exploring the hemodynamic behavior of residual aneurysms after coiling and clipping: A computational flow dynamic analysis. 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Neurosurgery. 2024 Oct 17.</PublicationReference><Title>Embolic Materials' Comparison in Meningeal Artery Embolization for Chronic Subdural Hematomas: Multicenter Propensity Score-Matched Analysis of 1070 Cases.</Title><Authors>Salem MM, Helal A, Gajjar AA, Sioutas GS, Khalife J, Kuybu O, Caroll K, Nguyen Hoang A, Baig AA, Salih M, Baker C, Cortez G, Abecassis Z, Ruiz Rodriguez JF, Davies JM, Cawley CM, Riina HA, Spiotta AM, Khalessi AA, Howard BM, Hanel R, Tanweer O, Tonetti DA, Siddiqui AH, Lang MJ, Levy EI, Ogilvy CS, Srinivasan VM, Kan P, Gross BA, Jankowitz BT, Levitt MR, Thomas AJ, Grandhi R, Burkhardt JK. </Authors><Journal>Neurosurgery</Journal><Date>2024 Oct 17</Date><IssueInfo /></Publication><Publication Source="PubMed" PMID="39366024"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39366024</URL><PublicationReference>Evaluating the safety and efficacy of medical management in extracranial pseudoaneurysms: a comparative study. 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World Neurosurg. 2024 11; 191:e697-e706.</PublicationReference><Title>Characterizing Revascularization After Encephalo-Duro-Arterio-Synangiosis (EDAS) in Adult Patients With Moyamoya Disease Using the Orbital Grading System.</Title><Authors>Alwakaa O, Enriquez-Marulanda A, Ramirez-Velandia F, Filo J, Mensah E, Wadhwa A, Fodor TB, Pettersson SD, McNeil EP, Young M, Muram S, See AP, Granstein JH, Taussky P, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2024 11</Date><IssueInfo>191:e697-e706</IssueInfo></Publication><Publication Source="PubMed" PMID="39255917"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39255917</URL><PublicationReference>Types of high-riding vertebral artery: a classification system for preoperative planning of C2 instrumentation based on 908 potential screw insertion sites. 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Neurosurgery. 2019 07 01; 85(suppl_1):S47-S51.</PublicationReference><Title>Role of the Neurosurgeon in Acute Ischemic Stroke Treatment From Triage to Intensive Care Unit.</Title><Authors>Kicielinski KP, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2019 07 01</Date><IssueInfo>85(suppl_1):S47-S51</IssueInfo></Publication><Publication Source="PubMed" PMID="36285050" PMCID="PMC9541773"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36285050</URL><PublicationReference>Microsurgical resection of a medullary cavernous malformation through a far lateral approach. 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Neurocrit Care. 2019 06; 30(Suppl 1):79-86.</PublicationReference><Title>Common Data Elements for Unruptured Intracranial Aneurysm and Subarachnoid Hemorrhage Clinical Research: Recommendations from the Working Group on Long-Term Therapies.</Title><Authors>Wong GKC, Daly JJ, Rhoney DH, Broderick J, Ogilvy C, Roos YB, Siddiqui A, Torner J. </Authors><Journal>Neurocrit Care</Journal><Date>2019 06</Date><IssueInfo>30(Suppl 1):79-86</IssueInfo></Publication><Publication Source="PubMed" PMID="31026827"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31026827</URL><PublicationReference>Predictive factors of incomplete aneurysm occlusion after endovascular treatment with the Pipeline embolization device. J Neurosurg. 2020 05 01; 132(5):1598-1605.</PublicationReference><Title>Predictive factors of incomplete aneurysm occlusion after endovascular treatment with the Pipeline embolization device.</Title><Authors>Maragkos GA, Ascanio LC, Salem MM, Gopakumar S, Gomez-Paz S, Enriquez-Marulanda A, Jain A, Schirmer CM, Foreman PM, Griessenauer CJ, Kan P, Ogilvy CS, Thomas AJ. </Authors><Journal>J Neurosurg</Journal><Date>2020 05 01</Date><IssueInfo>132(5):1598-1605</IssueInfo></Publication><Publication Source="PubMed" PMID="30998116" PMCID="PMC6728696"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30998116</URL><PublicationReference>No differences in effectiveness and safety between pipeline embolization device and stent-assisted coiling for the treatment of communicating segment internal carotid artery aneurysms. 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World Neurosurg. 2019 Jul; 127:335.</PublicationReference><Title>Percutaneous Transverse Sinus Cannulation for Dural Arteriovenous Fistula Coiling: Operative Video.</Title><Authors>Maragkos GA, Alturki AY, Greenstein PE, Enriquez-Marulanda A, Kicielinski KJ, Moore JM, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2019 Jul</Date><IssueInfo>127:335</IssueInfo></Publication><Publication Source="PubMed" PMID="30872200"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30872200</URL><PublicationReference>Surgical and Endovascular Comprehensive Treatment Outcomes of Unruptured Intracranial Aneurysms: Reduction of Treatment Bias. World Neurosurg. 2019 Jun; 126:e878-e887.</PublicationReference><Title>Surgical and Endovascular Comprehensive Treatment Outcomes of Unruptured Intracranial Aneurysms: Reduction of Treatment Bias.</Title><Authors>Ogilvy CS, Jordan NJ, Ascanio LC, Enriquez-Marulanda AA, Salem MM, Moore JM, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2019 Jun</Date><IssueInfo>126:e878-e887</IssueInfo></Publication><Publication Source="PubMed" PMID="31225519" PMCID="PMC6584478"><URL>http://www.ncbi.nlm.nih.gov/pubmed/31225519</URL><PublicationReference>Distal Parent Vessel Occlusion of 2 Superior Cerebellar Artery Fusiform Aneurysms: Report of 2 Cases and Literature Review. World Neurosurg X. 2019 Jul; 3:100026.</PublicationReference><Title>Distal Parent Vessel Occlusion of 2 Superior Cerebellar Artery Fusiform Aneurysms: Report of 2 Cases and Literature Review.</Title><Authors>Ascanio LC, Ogilvy CS, Thomas AJ, Kicielinski K, Gupta R, Alturki AY. </Authors><Journal>World Neurosurg X</Journal><Date>2019 Jul</Date><IssueInfo>3:100026</IssueInfo></Publication><Publication Source="PubMed" PMID="29608747"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29608747</URL><PublicationReference>Pharmacy-Mediated Antiplatelet Management Protocol Compared to One-time Platelet Function Testing Prior to Pipeline Embolization of Cerebral Aneurysms: A Propensity Score-Matched Cohort Study. 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Neurosurgery. 2018 12 01; 83(6):1298-1305.</PublicationReference><Title>Flow Diversion for the Treatment of Basilar Apex Aneurysms.</Title><Authors>Dmytriw AA, Adeeb N, Kumar A, Griessenauer CJ, Phan K, Ogilvy CS, Foreman PM, Shallwani H, Limbucci N, Mangiafico S, Michelozzi C, Krings T, Pereira VM, Matouk CC, Zhang Y, Harrigan MR, Shakir HJ, Siddiqui AH, Levy EI, Renieri L, Cognard C, Thomas AJ, Marotta TR. </Authors><Journal>Neurosurgery</Journal><Date>2018 12 01</Date><IssueInfo>83(6):1298-1305</IssueInfo></Publication><Publication Source="PubMed" PMID="30471443"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30471443</URL><PublicationReference>Unruptured Intracranial Aneurysms: Whom to Treat? World Neurosurg. 2019 Feb; 122:311-312.</PublicationReference><Title>Unruptured Intracranial Aneurysms: Whom to Treat?</Title><Authors>Foreman PM, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2019 Feb</Date><IssueInfo>122:311-312</IssueInfo></Publication><Publication Source="PubMed" PMID="30296622"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30296622</URL><PublicationReference>Patterns of Stroke Transfers and Identification of Predictors for Thrombectomy. World Neurosurg. 2019 Jan; 121:e675-e683.</PublicationReference><Title>Patterns of Stroke Transfers and Identification of Predictors for Thrombectomy.</Title><Authors>Catanese L, Gupta R, Griessenauer CJ, Moore JM, Adeeb N, Enriquez-Marulanda A, Alturki AY, Ascanio LC, Lioutas V, Shoamanesh A, Cohen W, Kumar S, Selim M, Thomas AJ, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2019 Jan</Date><IssueInfo>121:e675-e683</IssueInfo></Publication><Publication Source="PubMed" PMID="30459865" PMCID="PMC6208246"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30459865</URL><PublicationReference>Type I Spinal Arteriovenous Fistula with Ventral Intradural Venous Drainage: A Proposal of a Modified Classification. 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World Neurosurg. 2019 Jan; 121:e500-e510.</PublicationReference><Title>Proposal of a Grading System for Predicting Discharge Mortality and Functional Outcome in Patients with Aneurysmal Subarachnoid Hemorrhage.</Title><Authors>Maragkos GA, Enriquez-Marulanda A, Salem MM, Ascanio LC, Chida K, Gupta R, Alturki AY, Kicielinski KP, Ogilvy CS, Moore JM, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2019 Jan</Date><IssueInfo>121:e500-e510</IssueInfo></Publication><Publication Source="PubMed" PMID="30201581"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30201581</URL><PublicationReference>Quantitative Assessment of In-Stent Stenosis After Pipeline Embolization Device Treatment of Intracranial Aneurysms: A Single-Institution Series and Systematic Review. World Neurosurg. 2018 Dec; 120:e1031-e1040.</PublicationReference><Title>Quantitative Assessment of In-Stent Stenosis After Pipeline Embolization Device Treatment of Intracranial Aneurysms: A Single-Institution Series and Systematic Review.</Title><Authors>Ravindran K, Salem MM, Enriquez-Marulanda A, Alturki AY, Moore JM, Thomas AJ, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2018 Dec</Date><IssueInfo>120:e1031-e1040</IssueInfo></Publication><Publication Source="PubMed" PMID="29281055"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29281055</URL><PublicationReference>Resection of a Midbrain Cavernous Malformation Via Far Posterior Subtemporal Approach to the Dorsolateral Brainstem: 2-Dimensional Operative Video. Oper Neurosurg. 2018 Sep 01; 15(3):352.</PublicationReference><Title>Resection of a Midbrain Cavernous Malformation Via Far Posterior Subtemporal Approach to the Dorsolateral Brainstem: 2-Dimensional Operative Video.</Title><Authors>Alturki AY, Enriquez-Marulanda A, Thomas AJ, Ogilvy CS. </Authors><Journal>Oper Neurosurg</Journal><Date>2018 Sep 01</Date><IssueInfo>15(3):352</IssueInfo></Publication><Publication Source="PubMed" PMID="30149155"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30149155</URL><PublicationReference>Statin Therapy and Diabetes Do Not Affect Aneurysm Occlusion or Clinical Outcomes After Pipeline Embolization Device Treatment: A Preliminary Study. World Neurosurg. 2018 Dec; 120:e525-e532.</PublicationReference><Title>Statin Therapy and Diabetes Do Not Affect Aneurysm Occlusion or Clinical Outcomes After Pipeline Embolization Device Treatment: A Preliminary Study.</Title><Authors>Salem MM, Maragkos GA, Enriquez-Marulanda A, Ascanio L, Ravindran K, Alturki AY, Ogilvy CS, Thomas AJ, Moore JM. </Authors><Journal>World Neurosurg</Journal><Date>2018 Dec</Date><IssueInfo>120:e525-e532</IssueInfo></Publication><Publication Source="PubMed" PMID="29140523"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29140523</URL><PublicationReference>Sequential Coiling-Assisted Deployment of Flow Diverter for Treatment of Fusiform Middle Cerebral Artery Aneurysms. Oper Neurosurg. 2018 08 01; 15(2):E13-E18.</PublicationReference><Title>Sequential Coiling-Assisted Deployment of Flow Diverter for Treatment of Fusiform Middle Cerebral Artery Aneurysms.</Title><Authors>Alturki AY, Schmalz PGR, Ogilvy CS, Thomas AJ. </Authors><Journal>Oper Neurosurg</Journal><Date>2018 08 01</Date><IssueInfo>15(2):E13-E18</IssueInfo></Publication><Publication Source="PubMed" PMID="30028262"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30028262</URL><PublicationReference>Macrophage CD163 expression in cerebrospinal fluid: association with subarachnoid hemorrhage outcome. 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World Neurosurg. 2018 Oct; 118:156-160.</PublicationReference><Title>Histopathological Demonstration of Subacute Endothelialization Following Aneurysm Retreatment with the Pipeline Embolization Device.</Title><Authors>Ravindran K, DiStasio M, Laham R, Ogilvy CS, Thomas AJ, VanderLaan PA, Alturki AY. </Authors><Journal>World Neurosurg</Journal><Date>2018 Oct</Date><IssueInfo>118:156-160</IssueInfo></Publication><Publication Source="PubMed" PMID="30026147"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30026147</URL><PublicationReference>Use of Flow Diversion for the Treatment of Distal Circulation Aneurysms: A Multicohort Study. 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J Neurosurg. 2019 07 01; 131(1):32-39.</PublicationReference><Title>Proposal of a follow-up imaging strategy following Pipeline flow diversion treatment of intracranial aneurysms.</Title><Authors>Gupta R, Ogilvy CS, Moore JM, Griessenauer CJ, Enriquez-Marulanda A, Leadon M, Adeeb N, Ascanio L, Maragkos GA, Jain A, Schmalz PGR, Alturki AY, Kicielinski K, Schirmer CM, Thomas AJ. </Authors><Journal>J Neurosurg</Journal><Date>2019 07 01</Date><IssueInfo>131(1):32-39</IssueInfo></Publication><Publication Source="PubMed" PMID="28973527"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28973527</URL><PublicationReference>A Direct Aspiration First Pass Technique vs Standard Endovascular Therapy for Acute Stroke: A Systematic Review and Meta-Analysis. Neurosurgery. 2018 07 01; 83(1):19-28.</PublicationReference><Title>A Direct Aspiration First Pass Technique vs Standard Endovascular Therapy for Acute Stroke: A Systematic Review and Meta-Analysis.</Title><Authors>Phan K, Dmytriw AA, Teng I, Moore JM, Griessenauer C, Ogilvy C, Thomas A. </Authors><Journal>Neurosurgery</Journal><Date>2018 07 01</Date><IssueInfo>83(1):19-28</IssueInfo></Publication><Publication Source="PubMed" PMID="29915888"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29915888</URL><PublicationReference>Moyamoya disease in pregnancy: a systematic review. Acta Neurochir (Wien). 2018 09; 160(9):1711-1719.</PublicationReference><Title>Moyamoya disease in pregnancy: a systematic review.</Title><Authors>Maragkos GA, Ascanio LC, Chida K, Boone MD, Ogilvy CS, Thomas AJ, Kasper EM. </Authors><Journal>Acta Neurochir (Wien)</Journal><Date>2018 09</Date><IssueInfo>160(9):1711-1719</IssueInfo></Publication><Publication Source="PubMed" PMID="29880475" PMCID="PMC7655425"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29880475</URL><PublicationReference>Risk of Branch Occlusion and Ischemic Complications with the Pipeline Embolization Device in the Treatment of Posterior Circulation Aneurysms. AJNR Am J Neuroradiol. 2018 07; 39(7):1303-1309.</PublicationReference><Title>Risk of Branch Occlusion and Ischemic Complications with the Pipeline Embolization Device in the Treatment of Posterior Circulation Aneurysms.</Title><Authors>Adeeb N, Griessenauer CJ, Dmytriw AA, Shallwani H, Gupta R, Foreman PM, Shakir H, Moore J, Limbucci N, Mangiafico S, Kumar A, Michelozzi C, Zhang Y, Pereira VM, Matouk CC, Harrigan MR, Siddiqui AH, Levy EI, Renieri L, Marotta TR, Cognard C, Ogilvy CS, Thomas AJ. </Authors><Journal>AJNR Am J Neuroradiol</Journal><Date>2018 07</Date><IssueInfo>39(7):1303-1309</IssueInfo></Publication><Publication Source="PubMed" PMID="29754516" PMCID="PMC6050900"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29754516</URL><PublicationReference>Acute retinal hemorrhage after Pipeline embolization device placement for treatment of ophthalmic segment aneurysm: A case report. Interv Neuroradiol. 2018 Aug; 24(4):383-386.</PublicationReference><Title>Acute retinal hemorrhage after Pipeline embolization device placement for treatment of ophthalmic segment aneurysm: A case report.</Title><Authors>Adeeb N, Moore J, Griessenauer CJ, Gupta R, Fazelat AA, Ogilvy CS, Thomas AJ. </Authors><Journal>Interv Neuroradiol</Journal><Date>2018 Aug</Date><IssueInfo>24(4):383-386</IssueInfo></Publication><Publication Source="PubMed" PMID="29726768"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29726768</URL><PublicationReference>Pipeline embolization of posterior circulation aneurysms: a multicenter study of 131 aneurysms. J Neurosurg. 2019 03 01; 130(3):923-935.</PublicationReference><Title>Pipeline embolization of posterior circulation aneurysms: a multicenter study of 131 aneurysms.</Title><Authors>Griessenauer CJ, Ogilvy CS, Adeeb N, Dmytriw AA, Foreman PM, Shallwani H, Limbucci N, Mangiafico S, Kumar A, Michelozzi C, Krings T, Pereira VM, Matouk CC, Harrigan MR, Shakir HJ, Siddiqui AH, Levy EI, Renieri L, Marotta TR, Cognard C, Thomas AJ. </Authors><Journal>J Neurosurg</Journal><Date>2019 03 01</Date><IssueInfo>130(3):923-935</IssueInfo></Publication><Publication Source="PubMed" PMID="28595331"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28595331</URL><PublicationReference>The Use of Single Stent-Assisted Coiling in Treatment of Bifurcation Aneurysms: A Multicenter Cohort Study With Proposal of a Scoring System to Predict Complete Occlusion. Neurosurgery. 2018 05 01; 82(5):710-718.</PublicationReference><Title>The Use of Single Stent-Assisted Coiling in Treatment of Bifurcation Aneurysms: A Multicenter Cohort Study With Proposal of a Scoring System to Predict Complete Occlusion.</Title><Authors>Adeeb N, Griessenauer CJ, Patel AS, Foreman PM, Baccin CE, Moore JM, Gupta R, Alturki A, Harrigan MR, Ogilvy CS, Thomas AJ. </Authors><Journal>Neurosurgery</Journal><Date>2018 05 01</Date><IssueInfo>82(5):710-718</IssueInfo></Publication><Publication Source="PubMed" PMID="29679782"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29679782</URL><PublicationReference>Outcomes After Off-Label Use of the Pipeline Embolization Device for Intracranial Aneurysms: A Multicenter Cohort Study. World Neurosurg. 2018 Jul; 115:e200-e205.</PublicationReference><Title>Outcomes After Off-Label Use of the Pipeline Embolization Device for Intracranial Aneurysms: A Multicenter Cohort Study.</Title><Authors>Zammar SG, Buell TJ, Chen CJ, Crowley RW, Ding D, Griessenauer CJ, Hoh BL, Liu KC, Ogilvy CS, Raper DM, Singla A, Thomas AJ, Cockroft KM, Simon SD. </Authors><Journal>World Neurosurg</Journal><Date>2018 Jul</Date><IssueInfo>115:e200-e205</IssueInfo></Publication><Publication Source="PubMed" PMID="29673817"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29673817</URL><PublicationReference>Combined Outcomes of Endovascular or Surgical Treatment of Unruptured Anterior Communicating Artery Aneurysms: Is a More Aggressive Management Strategy Warranted? World Neurosurg. 2018 Jul; 115:e331-e336.</PublicationReference><Title>Combined Outcomes of Endovascular or Surgical Treatment of Unruptured Anterior Communicating Artery Aneurysms: Is a More Aggressive Management Strategy Warranted?</Title><Authors>Schmalz PGR, Enriquez-Marulanda A, Alturki A, Stapleton CJ, Thomas AJ, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2018 Jul</Date><IssueInfo>115:e331-e336</IssueInfo></Publication><Publication Source="PubMed" PMID="29547083"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29547083</URL><PublicationReference>Relationship between external ventricular drain clamp trials and ventriculoperitoneal shunt insertion following nontraumatic subarachnoid hemorrhage: a single-center study. J Neurosurg. 2019 03 01; 130(3):956-962.</PublicationReference><Title>Relationship between external ventricular drain clamp trials and ventriculoperitoneal shunt insertion following nontraumatic subarachnoid hemorrhage: a single-center study.</Title><Authors>Ascanio LC, Gupta R, Adeeb N, Moore JM, Griessenauer CJ, Mayeku J, Tachie-Baffour Y, Thomas R, Alturki AY, Schmalz PGR, Ogilvy CS, Thomas AJ. </Authors><Journal>J Neurosurg</Journal><Date>2019 03 01</Date><IssueInfo>130(3):956-962</IssueInfo></Publication><Publication Source="PubMed" PMID="29351626"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29351626</URL><PublicationReference>Neuroendovascular Fellowship Training: Self-Assessment of a Program Accredited by the Committee on Advanced Subspecialty Training. Neurosurgery. 2018 03 01; 82(3):407-413.</PublicationReference><Title>Neuroendovascular Fellowship Training: Self-Assessment of a Program Accredited by the Committee on Advanced Subspecialty Training.</Title><Authors>Shakir HJ, Shallwani H, Rangel-Castilla L, Bregy A, Davies JM, Sonig A, Ogilvy CS, Snyder KV, Hopkins LN, Siddiqui AH, Levy EI. </Authors><Journal>Neurosurgery</Journal><Date>2018 03 01</Date><IssueInfo>82(3):407-413</IssueInfo></Publication><Publication Source="PubMed" PMID="29454131"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29454131</URL><PublicationReference>Self-Reported Headaches in Patients with Unruptured Intracranial Aneurysms Treated with the Pipeline Embolization Device. World Neurosurg. 2018 May; 113:e364-e372.</PublicationReference><Title>Self-Reported Headaches in Patients with Unruptured Intracranial Aneurysms Treated with the Pipeline Embolization Device.</Title><Authors>Schneider AM, Moore JM, Adeeb N, Gupta R, Griessenauer CJ, Winkler PA, Sieber S, Alturki AY, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2018 May</Date><IssueInfo>113:e364-e372</IssueInfo></Publication><Publication Source="PubMed" PMID="29425984"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29425984</URL><PublicationReference>Defining a Clopidogrel Response Cut-Off Value Using Light Transmission Aggregometry Before Pipeline Embolization of Unruptured Intracranial Aneurysms. World Neurosurg. 2018 May; 113:e146-e152.</PublicationReference><Title>Defining a Clopidogrel Response Cut-Off Value Using Light Transmission Aggregometry Before Pipeline Embolization of Unruptured Intracranial Aneurysms.</Title><Authors>Adeeb N, Gupta R, Schneider AM, Leadon M, Enriquez A, Griessenauer CJ, Salem M, Alturki A, Schmalz P, Ogilvy CS, Thomas AJ, Moore JM. </Authors><Journal>World Neurosurg</Journal><Date>2018 May</Date><IssueInfo>113:e146-e152</IssueInfo></Publication><Publication Source="PubMed" PMID="29607275" PMCID="PMC5875978"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29607275</URL><PublicationReference>Use of an Absorbable Synthetic Polymer Dural Substitute for Repair of Dural Defects: A Technical Note. Cureus. 2018 Jan 29; 10(1):e2127.</PublicationReference><Title>Use of an Absorbable Synthetic Polymer Dural Substitute for Repair of Dural Defects: A Technical Note.</Title><Authors>Schmalz P, Griessenauer C, Ogilvy CS, Thomas AJ. </Authors><Journal>Cureus</Journal><Date>2018 Jan 29</Date><IssueInfo>10(1):e2127</IssueInfo></Publication><Publication Source="PubMed" PMID="29232818"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29232818</URL><PublicationReference>In Reply to the Letter to the Editor "Validation of Predictive Scoring System for Ventriculoperitoneal Shunt Insertion After Aneurysmal Subarachnoid Hemorrhage: Statistical and Methodologic Issues". World Neurosurg. 2018 01; 109:511.</PublicationReference><Title>In Reply to the Letter to the Editor "Validation of Predictive Scoring System for Ventriculoperitoneal Shunt Insertion After Aneurysmal Subarachnoid Hemorrhage: Statistical and Methodologic Issues".</Title><Authors>Gupta R, Ascanio LC, Enriquez-Marulanda A, Griessenauer CJ, Chinnadurai A, Jhun R, Alturki A, Ogilvy CS, Thomas AJ, Moore JM. </Authors><Journal>World Neurosurg</Journal><Date>2018 01</Date><IssueInfo>109:511</IssueInfo></Publication><Publication Source="PubMed" PMID="29243977"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29243977</URL><PublicationReference>Factors predicting reoperation of chronic subdural hematoma following primary surgical evacuation. J Neurosurg. 2018 11 01; 129(5):1143-1150.</PublicationReference><Title>Factors predicting reoperation of chronic subdural hematoma following primary surgical evacuation.</Title><Authors>Motiei-Langroudi R, Stippler M, Shi S, Adeeb N, Gupta R, Griessenauer CJ, Papavassiliou E, Kasper EM, Arle J, Alterman RL, Ogilvy CS, Thomas AJ. </Authors><Journal>J Neurosurg</Journal><Date>2018 11 01</Date><IssueInfo>129(5):1143-1150</IssueInfo></Publication><Publication Source="PubMed" PMID="29174232"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29174232</URL><PublicationReference>Endovascular Mechanical Thrombectomy in Large-Vessel Occlusion Ischemic Stroke Presenting with Low National Institutes of Health Stroke Scale: Systematic Review and Meta-Analysis. World Neurosurg. 2018 Feb; 110:263-269.</PublicationReference><Title>Endovascular Mechanical Thrombectomy in Large-Vessel Occlusion Ischemic Stroke Presenting with Low National Institutes of Health Stroke Scale: Systematic Review and Meta-Analysis.</Title><Authors>Griessenauer CJ, Medin C, Maingard J, Chandra RV, Ng W, Brooks DM, Asadi H, Killer-Oberpfalzer M, Schirmer CM, Moore JM, Ogilvy CS, Thomas AJ, Phan K. </Authors><Journal>World Neurosurg</Journal><Date>2018 Feb</Date><IssueInfo>110:263-269</IssueInfo></Publication><Publication Source="PubMed" PMID="29158092"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29158092</URL><PublicationReference>Medical Malpractice in Neurosurgery: A Comprehensive Analysis. World Neurosurg. 2018 Feb; 110:e552-e559.</PublicationReference><Title>Medical Malpractice in Neurosurgery: A Comprehensive Analysis.</Title><Authors>Thomas R, Gupta R, Griessenauer CJ, Moore JM, Adeeb N, Motiei-Langroudi R, Guidal B, Agarwal N, Alterman RL, Friedlander RM, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2018 Feb</Date><IssueInfo>110:e552-e559</IssueInfo></Publication><Publication Source="PubMed" PMID="29107165"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29107165</URL><PublicationReference>Transarterial Onyx Embolization of Bilateral Transverse-Sigmoid Dural Arteriovenous Malformation with Transvenous Balloon Assist-Initial U.S. Experience with Copernic RC Venous Remodeling Balloon. World Neurosurg. 2018 Jan; 109:398-402.</PublicationReference><Title>Transarterial Onyx Embolization of Bilateral Transverse-Sigmoid Dural Arteriovenous Malformation with Transvenous Balloon Assist-Initial U.S. Experience with Copernic RC Venous Remodeling Balloon.</Title><Authors>Alturki AY, Enriquez-Marulanda A, Schmalz P, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2018 Jan</Date><IssueInfo>109:398-402</IssueInfo></Publication><Publication Source="PubMed" PMID="29042335"><URL>http://www.ncbi.nlm.nih.gov/pubmed/29042335</URL><PublicationReference>Neurosurgical Resident Error: A Survey of U.S. Neurosurgery Residency Training Program Directors' Perceptions. World Neurosurg. 2018 Jan; 109:e563-e570.</PublicationReference><Title>Neurosurgical Resident Error: A Survey of U.S. Neurosurgery Residency Training Program Directors' Perceptions.</Title><Authors>Gupta R, Moore JM, Adeeb N, Griessenauer CJ, Schneider AM, Gandhi CD, Harsh GR, Thomas AJ, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2018 Jan</Date><IssueInfo>109:e563-e570</IssueInfo></Publication><Publication Source="PubMed" PMID="28986471"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28986471</URL><PublicationReference>International multicentre validation of the arteriovenous malformation-related intracerebral haemorrhage (AVICH) score. J Neurol Neurosurg Psychiatry. 2018 11; 89(11):1163-1166.</PublicationReference><Title>International multicentre validation of the arteriovenous malformation-related intracerebral haemorrhage (AVICH) score.</Title><Authors>Neidert MC, Lawton MT, Kim LJ, Nerva JD, Kurisu K, Ikawa F, Konczalla J, Dinc N, Seifert V, Habdank-Kolaczkowski J, Hatano T, Hayase M, Podlesek D, Schackert G, Wanet T, Gläsker S, Griessenauer CJ, Ogilvy CS, Kneist A, Sure U, Seifert B, Regli L, Bozinov O, Burkhardt JK. </Authors><Journal>J Neurol Neurosurg Psychiatry</Journal><Date>2018 11</Date><IssueInfo>89(11):1163-1166</IssueInfo></Publication><Publication Source="PubMed" PMID="28985663"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28985663</URL><PublicationReference>In Reply to the Letter to the Editor "Pharmacy-Mediated Antiplatelet Management Algorithm Surrounding Neurointerventional Stenting and Flow Diversion Procedures". World Neurosurg. 2017 10; 106:983.</PublicationReference><Title>In Reply to the Letter to the Editor "Pharmacy-Mediated Antiplatelet Management Algorithm Surrounding Neurointerventional Stenting and Flow Diversion Procedures".</Title><Authors>Gupta R, Moore JM, Thomas AJ, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2017 10</Date><IssueInfo>106:983</IssueInfo></Publication><Publication Source="PubMed" PMID="28475757"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28475757</URL><PublicationReference>A Multicenter Cohort Comparison Study of the Safety, Efficacy, and Cost of Ticagrelor Compared to Clopidogrel in Aneurysm Flow Diverter Procedures. Neurosurgery. 2017 Oct 01; 81(4):665-671.</PublicationReference><Title>A Multicenter Cohort Comparison Study of the Safety, Efficacy, and Cost of Ticagrelor Compared to Clopidogrel in Aneurysm Flow Diverter Procedures.</Title><Authors>Moore JM, Adeeb N, Shallwani H, Gupta R, Patel AS, Griessenauer CJ, Youn R, Siddiqui A, Ogilvy CS, Thomas AJ. </Authors><Journal>Neurosurgery</Journal><Date>2017 Oct 01</Date><IssueInfo>81(4):665-671</IssueInfo></Publication><Publication Source="PubMed" PMID="28964945"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28964945</URL><PublicationReference>Validation of a Predictive Scoring System for Ventriculoperitoneal Shunt Insertion After Aneurysmal Subarachnoid Hemorrhage. World Neurosurg. 2018 Jan; 109:e210-e216.</PublicationReference><Title>Validation of a Predictive Scoring System for Ventriculoperitoneal Shunt Insertion After Aneurysmal Subarachnoid Hemorrhage.</Title><Authors>Gupta R, Ascanio LC, Enriquez-Marulanda A, Griessenauer CJ, Chinnadurai A, Jhun R, Alturki A, Ogilvy CS, Thomas AJ, Moore JM. </Authors><Journal>World Neurosurg</Journal><Date>2018 Jan</Date><IssueInfo>109:e210-e216</IssueInfo></Publication><Publication Source="PubMed" PMID="28912285" PMCID="PMC7963750"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28912285</URL><PublicationReference>Predictors of Incomplete Occlusion following Pipeline Embolization of Intracranial Aneurysms: Is It Less Effective in Older Patients? AJNR Am J Neuroradiol. 2017 Dec; 38(12):2295-2300.</PublicationReference><Title>Predictors of Incomplete Occlusion following Pipeline Embolization of Intracranial Aneurysms: Is It Less Effective in Older Patients?</Title><Authors>Adeeb N, Moore JM, Wirtz M, Griessenauer CJ, Foreman PM, Shallwani H, Gupta R, Dmytriw AA, Motiei-Langroudi R, Alturki A, Harrigan MR, Siddiqui AH, Levy EI, Thomas AJ, Ogilvy CS. </Authors><Journal>AJNR Am J Neuroradiol</Journal><Date>2017 Dec</Date><IssueInfo>38(12):2295-2300</IssueInfo></Publication><Publication Source="PubMed" PMID="28893696"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28893696</URL><PublicationReference>Medullary Decompression by Sling Repositioning of Vertebral Artery with Operative Video. World Neurosurg. 2017 Dec; 108:995.e5-995.e7.</PublicationReference><Title>Medullary Decompression by Sling Repositioning of Vertebral Artery with Operative Video.</Title><Authors>Ascanio LC, Alturki AY, Griessenauer CJ, Motiei-Langroudi R, Kumar S, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2017 Dec</Date><IssueInfo>108:995.e5-995.e7</IssueInfo></Publication><Publication Source="PubMed" PMID="28847127"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28847127</URL><PublicationReference>In Reply to the Letter to the Editor Regarding "Safety and Efficacy of Noncompliant Balloon Angioplasty for the Treatment of Subarachnoid Hemorrhage-Induced Vasospasm: A Multicenter Study". World Neurosurg. 2017 09; 105:1023.</PublicationReference><Title>In Reply to the Letter to the Editor Regarding "Safety and Efficacy of Noncompliant Balloon Angioplasty for the Treatment of Subarachnoid Hemorrhage-Induced Vasospasm: A Multicenter Study".</Title><Authors>Griessenauer CJ, Patel AS, Gupta R, Adeeb N, Foreman PM, Shallwani H, Moore JM, Harrigan MR, Siddiqui AH, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2017 09</Date><IssueInfo>105:1023</IssueInfo></Publication><Publication Source="PubMed" PMID="28867315"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28867315</URL><PublicationReference>Soluble Fms-Like Tyrosine Kinase 1 (sFlt-1) and Risk of Cerebral Vasospasm After Aneurysmal Subarachnoid Hemorrhage. World Neurosurg. 2017 Dec; 108:84-89.</PublicationReference><Title>Soluble Fms-Like Tyrosine Kinase 1 (sFlt-1) and Risk of Cerebral Vasospasm After Aneurysmal Subarachnoid Hemorrhage.</Title><Authors>Griessenauer CJ, Chua MH, Hanafy KA, Baffour YT, Chen R, LeBlanc RH, Patel AS, Salem M, Karumanchi SA, Xu D, Thadhani R, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2017 Dec</Date><IssueInfo>108:84-89</IssueInfo></Publication><Publication Source="PubMed" PMID="28823660"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28823660</URL><PublicationReference>Endovascular Thrombectomy Alone versus Combined with Intravenous Thrombolysis. World Neurosurg. 2017 Dec; 108:850-858.e2.</PublicationReference><Title>Endovascular Thrombectomy Alone versus Combined with Intravenous Thrombolysis.</Title><Authors>Phan K, Dmytriw AA, Maingard J, Asadi H, Griessenauer CJ, Ng W, Kewagamang K, Mobbs RJ, Moore JM, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2017 Dec</Date><IssueInfo>108:850-858.e2</IssueInfo></Publication><Publication Source="PubMed" PMID="28698085"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28698085</URL><PublicationReference>Modified Park Bench Position for Superior Vermian Arteriovenous Malformations and Dural Fistulas. World Neurosurg. 2017 Oct; 106:285-290.</PublicationReference><Title>Modified Park Bench Position for Superior Vermian Arteriovenous Malformations and Dural Fistulas.</Title><Authors>Motiei-Langroudi R, Griessenauer CJ, Alturki AY, Chapman PH, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2017 Oct</Date><IssueInfo>106:285-290</IssueInfo></Publication><Publication Source="PubMed" PMID="28599910"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28599910</URL><PublicationReference>Ruptured Distal Anterior Choroidal Artery Aneurysm Treated with Superselective Provocative Testing and Coil Embolization. World Neurosurg. 2017 Sep; 105:1032.e19-1032.e22.</PublicationReference><Title>Ruptured Distal Anterior Choroidal Artery Aneurysm Treated with Superselective Provocative Testing and Coil Embolization.</Title><Authors>Schmalz PGR, Alturki A, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2017 Sep</Date><IssueInfo>105:1032.e19-1032.e22</IssueInfo></Publication><Publication Source="PubMed" PMID="28647659"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28647659</URL><PublicationReference>Flow Diverters as Useful Adjunct to Traditional Endovascular Techniques in Treatment of Direct Carotid-Cavernous Fistulas. World Neurosurg. 2017 Sep; 105:812-817.</PublicationReference><Title>Flow Diverters as Useful Adjunct to Traditional Endovascular Techniques in Treatment of Direct Carotid-Cavernous Fistulas.</Title><Authors>Ogilvy CS, Motiei-Langroudi R, Ghorbani M, Griessenauer CJ, Alturki AY, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2017 Sep</Date><IssueInfo>105:812-817</IssueInfo></Publication><Publication Source="PubMed" PMID="28629712"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28629712</URL><PublicationReference>Corrigendum to 'Predictors of Shunt Insertion in Aneurysmal Subarachnoid Hemorrhage' [World Neurosurgery 98 (2017) 421-426]. World Neurosurg. 2017 08; 104:1043.</PublicationReference><Title>Corrigendum to 'Predictors of Shunt Insertion in Aneurysmal Subarachnoid Hemorrhage' [World Neurosurgery 98 (2017) 421-426].</Title><Authors>Motiei-Langroudi R, Adeeb N, Foreman PM, Harrigan MR, Fisher WS, Vyas NA, Lipsky RH, Walters BC, Tubbs RS, Shoja MM, Moore JM, Gupta R, Ogilvy CS, Thomas AJ, Griessenauer CJ. </Authors><Journal>World Neurosurg</Journal><Date>2017 08</Date><IssueInfo>104:1043</IssueInfo></Publication><Publication Source="PubMed" PMID="28578117"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28578117</URL><PublicationReference>Pipeline Embolization Device in Treatment of 50 Unruptured Large and Giant Aneurysms. World Neurosurg. 2017 Sep; 105:232-237.</PublicationReference><Title>Pipeline Embolization Device in Treatment of 50 Unruptured Large and Giant Aneurysms.</Title><Authors>Adeeb N, Griessenauer CJ, Shallwani H, Shakir H, Foreman PM, Moore JM, Dmytriw AA, Gupta R, Siddiqui AH, Levy EI, Snyder K, Harrigan MR, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2017 Sep</Date><IssueInfo>105:232-237</IssueInfo></Publication><Publication Source="PubMed" PMID="28559080"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28559080</URL><PublicationReference>Comparison of Stent-Assisted Coil Embolization and the Pipeline Embolization Device for Endovascular Treatment of Ophthalmic Segment Aneurysms: A Multicenter Cohort Study. World Neurosurg. 2017 Sep; 105:206-212.</PublicationReference><Title>Comparison of Stent-Assisted Coil Embolization and the Pipeline Embolization Device for Endovascular Treatment of Ophthalmic Segment Aneurysms: A Multicenter Cohort Study.</Title><Authors>Adeeb N, Griessenauer CJ, Foreman PM, Moore JM, Motiei-Langroudi R, Chua MH, Gupta R, Patel AS, Harrigan MR, Alturki AY, Ogilvy CS, Thomas AJ. </Authors><Journal>World Neurosurg</Journal><Date>2017 Sep</Date><IssueInfo>105:206-212</IssueInfo></Publication><Publication Source="PubMed" PMID="28522668" PMCID="PMC7960416"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28522668</URL><PublicationReference>Treatment of Tandem Internal Carotid Artery Aneurysms Using a Single Pipeline Embolization Device: Evaluation of Safety and Efficacy. AJNR Am J Neuroradiol. 2017 Aug; 38(8):1605-1609.</PublicationReference><Title>Treatment of Tandem Internal Carotid Artery Aneurysms Using a Single Pipeline Embolization Device: Evaluation of Safety and Efficacy.</Title><Authors>Adeeb N, Moore JM, Griessenauer CJ, Foreman PM, Shallwani H, Dmytriw AA, Shakir H, Siddiqui AH, Levy EI, Davies JM, Harrigan MR, Thomas AJ, Ogilvy CS. </Authors><Journal>AJNR Am J Neuroradiol</Journal><Date>2017 Aug</Date><IssueInfo>38(8):1605-1609</IssueInfo></Publication><Publication Source="PubMed" PMID="28327931"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28327931</URL><PublicationReference>Flow Diverters for Treatment of 160 Ophthalmic Segment Aneurysms: Evaluation of Safety and Efficacy in a Multicenter Cohort. Neurosurgery. 2017 May 01; 80(5):726-732.</PublicationReference><Title>Flow Diverters for Treatment of 160 Ophthalmic Segment Aneurysms: Evaluation of Safety and Efficacy in a Multicenter Cohort.</Title><Authors>Griessenauer CJ, Piske RL, Baccin CE, Pereira BJA, Reddy AS, Thomas AJ, Abud TG, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2017 May 01</Date><IssueInfo>80(5):726-732</IssueInfo></Publication><Publication Source="PubMed" PMID="28411263"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28411263</URL><PublicationReference>Use of Platelet Function Testing Before Pipeline Embolization Device Placement: A Multicenter Cohort Study. Stroke. 2017 05; 48(5):1322-1330.</PublicationReference><Title>Use of Platelet Function Testing Before Pipeline Embolization Device Placement: A Multicenter Cohort Study.</Title><Authors>Adeeb N, Griessenauer CJ, Foreman PM, Moore JM, Shallwani H, Motiei-Langroudi R, Alturki A, Siddiqui AH, Levy EI, Harrigan MR, Ogilvy CS, Thomas AJ. </Authors><Journal>Stroke</Journal><Date>2017 05</Date><IssueInfo>48(5):1322-1330</IssueInfo></Publication><Publication Source="PubMed" PMID="27489165"><URL>http://www.ncbi.nlm.nih.gov/pubmed/27489165</URL><PublicationReference>Pipeline Embolization Device for Small Intracranial Aneurysms: Evaluation of Safety and Efficacy in a Multicenter Cohort. Neurosurgery. 2017 04 01; 80(4):579-587.</PublicationReference><Title>Pipeline Embolization Device for Small Intracranial Aneurysms: Evaluation of Safety and Efficacy in a Multicenter Cohort.</Title><Authors>Griessenauer CJ, Ogilvy CS, Foreman PM, Chua MH, Harrigan MR, He L, Fusco MR, Mocco JD, Stapleton CJ, Patel AB, Sonig A, Siddiqui AH, Thomas AJ. </Authors><Journal>Neurosurgery</Journal><Date>2017 04 01</Date><IssueInfo>80(4):579-587</IssueInfo></Publication><Publication Source="PubMed" PMID="28365434"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28365434</URL><PublicationReference>Ultra-Early Angiographic Vasospasm After Aneurysmal Subarachnoid Hemorrhage: A Systematic Review and Meta-Analysis. 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World Neurosurg. 2017 May; 101:677-685.e2.</PublicationReference><Title>Craniotomy Versus Decompressive Craniectomy for Acute Subdural Hematoma: Systematic Review and Meta-Analysis.</Title><Authors>Phan K, Moore JM, Griessenauer C, Dmytriw AA, Scherman DB, Sheik-Ali S, Adeeb N, Ogilvy CS, Thomas A, Rosenfeld JV. </Authors><Journal>World Neurosurg</Journal><Date>2017 May</Date><IssueInfo>101:677-685.e2</IssueInfo></Publication><Publication Source="PubMed" PMID="28279774"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28279774</URL><PublicationReference>Conscious Sedation Versus General Anesthesia for the Treatment of Cerebral Aneurysms with Flow Diversion: A Matched Cohort Study. World Neurosurg. 2017 06; 102:1-5.</PublicationReference><Title>Conscious Sedation Versus General Anesthesia for the Treatment of Cerebral Aneurysms with Flow Diversion: A Matched Cohort Study.</Title><Authors>Griessenauer CJ, Shallwani H, Adeeb N, Gupta R, Rangel-Castilla L, Siddiqui AH, Levy EI, Boone MD, Thomas AJ, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2017 06</Date><IssueInfo>102:1-5</IssueInfo></Publication><Publication Source="PubMed" PMID="28246277"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28246277</URL><PublicationReference>Ischemic Stroke After Treatment of Intraprocedural Thrombosis During Stent-Assisted Coiling and Flow Diversion. Stroke. 2017 04; 48(4):1098-1100.</PublicationReference><Title>Ischemic Stroke After Treatment of Intraprocedural Thrombosis During Stent-Assisted Coiling and Flow Diversion.</Title><Authors>Adeeb N, Griessenauer CJ, Moore JM, Foreman PM, Shallwani H, Motiei-Langroudi R, Gupta R, Baccin CE, Alturki A, Harrigan MR, Siddiqui AH, Levy EI, Ogilvy CS, Thomas AJ. </Authors><Journal>Stroke</Journal><Date>2017 04</Date><IssueInfo>48(4):1098-1100</IssueInfo></Publication><Publication Source="PubMed" PMID="28186446"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28186446</URL><PublicationReference>De novo AVM formation following venous sinus thrombosis and prior AVM resection in adults: report of 2 cases. 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Neurosurgery. 2016 Aug; 63 Suppl 1:145-6.</PublicationReference><Title>107 Evaluating the Costs of Follow-up Imaging Protocol for Endovascularly Treated Unruptured Intracranial Aneurysms: A Multicenter Study.</Title><Authors>Gupta R, Griessenauer CJ, Adeeb N, Moore JM, Patel AS, Juan Chua MH, Thomas AJ, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2016 Aug</Date><IssueInfo>63 Suppl 1:145-6</IssueInfo></Publication><Publication Source="PubMed" PMID="27399394"><URL>http://www.ncbi.nlm.nih.gov/pubmed/27399394</URL><PublicationReference>114 Treatment of Bifurcation Aneurysms Using Single Stent-Coiling With Relation to Aneurysm Configuration: A Cohort Study of Two Academic Institutions in the United States. Neurosurgery. 2016 Aug; 63 Suppl 1:148.</PublicationReference><Title>114 Treatment of Bifurcation Aneurysms Using Single Stent-Coiling With Relation to Aneurysm Configuration: A Cohort Study of Two Academic Institutions in the United States.</Title><Authors>Adeeb N, Patel AS, Griessenauer CJ, Moore JM, Foreman PM, Gupta R, Harrigan MR, Ogilvy CS, Thomas AJ. </Authors><Journal>Neurosurgery</Journal><Date>2016 Aug</Date><IssueInfo>63 Suppl 1:148</IssueInfo></Publication><Publication Source="PubMed" PMID="27399436"><URL>http://www.ncbi.nlm.nih.gov/pubmed/27399436</URL><PublicationReference>157 Open and Endovascular Treatment of Spinal Dural Arteriovenous Fistulae: A 10-Year Experience. Neurosurgery. 2016 Aug; 63 Suppl 1:163.</PublicationReference><Title>157 Open and Endovascular Treatment of Spinal Dural Arteriovenous Fistulae: A 10-Year Experience.</Title><Authors>Koch M, Stapleton CJ, Agarwalla PK, Torok CM, Shin JH, Coumans JV, Borges LF, Ogilvy CS, Rabinov JD, Patel AB. </Authors><Journal>Neurosurgery</Journal><Date>2016 Aug</Date><IssueInfo>63 Suppl 1:163</IssueInfo></Publication><Publication Source="PubMed" PMID="27469135" PMCID="PMC5564349"><URL>http://www.ncbi.nlm.nih.gov/pubmed/27469135</URL><PublicationReference>Ex-vivo release of Pipeline Embolization Device polytetrafluoroethylene (PTFE) sleeves for improved distal landing zone accuracy in-vivo: A technical note. 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World Neurosurg. 2016 Oct; 94:157-166.</PublicationReference><Title>Impact of Coil Packing Density and Coiling Technique on Occlusion Rates for Aneurysms Treated with Stent-Assisted Coil Embolization.</Title><Authors>Griessenauer CJ, Adeeb N, Foreman PM, Gupta R, Patel AS, Moore J, Abud TG, Thomas AJ, Ogilvy CS, Baccin CE. </Authors><Journal>World Neurosurg</Journal><Date>2016 Oct</Date><IssueInfo>94:157-166</IssueInfo></Publication><Publication Source="PubMed" PMID="26579967"><URL>http://www.ncbi.nlm.nih.gov/pubmed/26579967</URL><PublicationReference>Treatment of Distal Anterior Circulation Aneurysms With the Pipeline Embolization Device: A US Multicenter Experience. 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AJNR Am J Neuroradiol. 2009 Jan; 30(1):160-4.</PublicationReference><Title>Intra-arterial nicardipine infusion improves CT perfusion-measured cerebral blood flow in patients with subarachnoid hemorrhage-induced vasospasm.</Title><Authors>Nogueira RG, Lev MH, Roccatagliata L, Hirsch JA, Gonzalez RG, Ogilvy CS, Halpern EF, Rordorf GA, Rabinov JD, Pryor JC. </Authors><Journal>AJNR Am J Neuroradiol</Journal><Date>2009 Jan</Date><IssueInfo>30(1):160-4</IssueInfo></Publication><Publication Source="PubMed" PMID="18759581"><URL>http://www.ncbi.nlm.nih.gov/pubmed/18759581</URL><PublicationReference>A recurrent cerebral arteriovenous malformation in an adult. J Neurosurg. 2008 Sep; 109(3):486-91.</PublicationReference><Title>A recurrent cerebral arteriovenous malformation in an adult.</Title><Authors>Codd PJ, Mitha AP, Ogilvy CS. </Authors><Journal>J Neurosurg</Journal><Date>2008 Sep</Date><IssueInfo>109(3):486-91</IssueInfo></Publication><Publication Source="PubMed" PMID="18812940"><URL>http://www.ncbi.nlm.nih.gov/pubmed/18812940</URL><PublicationReference>Rupture of a pseudoaneurysm of the posterior meningeal artery at its anomalous origin from the posteroinferior cerebellar artery: case report. 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J Emerg Med. 2008 Apr; 34(3):237-51.</PublicationReference><Title>Aneurysmal subarachnoid hemorrhage: update for emergency physicians.</Title><Authors>Edlow JA, Malek AM, Ogilvy CS. </Authors><Journal>J Emerg Med</Journal><Date>2008 Apr</Date><IssueInfo>34(3):237-51</IssueInfo></Publication><Publication Source="PubMed" PMID="17974618" PMCID="PMC8119122"><URL>http://www.ncbi.nlm.nih.gov/pubmed/17974618</URL><PublicationReference>Preliminary experience with onyx embolization for the treatment of intracranial dural arteriovenous fistulas. 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Neurocrit Care. 2007; 7(3):194-202.</PublicationReference><Title>High-dose bosentan in the prevention and treatment of subarachnoid hemorrhage-induced cerebral vasospasm: an open-label feasibility study.</Title><Authors>Nogueira RG, Bodock MJ, Koroshetz WJ, Topcuoglu MA, Carter BS, Ogilvy CS, Pryor JC, Buonanno FS. </Authors><Journal>Neurocrit Care</Journal><Date>2007</Date><IssueInfo>7(3):194-202</IssueInfo></Publication><Publication Source="PubMed" PMID="17120896"><URL>http://www.ncbi.nlm.nih.gov/pubmed/17120896</URL><PublicationReference>Type A intradural spinal arteriovenous fistula. Case report. J Neurosurg Spine. 2006 Nov; 5(5):447-50.</PublicationReference><Title>Type A intradural spinal arteriovenous fistula. 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Neurosurgery. 2006 Nov; 59(5):1037-42; discussion 1043.</PublicationReference><Title>Outcomes for surgical and endovascular management of intracranial aneurysms using a comprehensive grading system.</Title><Authors>Ogilvy CS, Cheung AC, Mitha AP, Hoh BL, Carter BS. </Authors><Journal>Neurosurgery</Journal><Date>2006 Nov</Date><IssueInfo>59(5):1037-42; discussion 1043</IssueInfo></Publication><Publication Source="PubMed" PMID="16575323"><URL>http://www.ncbi.nlm.nih.gov/pubmed/16575323</URL><PublicationReference>Complications of cerebral arteriovenous malformation embolization: multivariate analysis of predictive factors. Neurosurgery. 2006 Apr; 58(4):602-11; discussion 602-11.</PublicationReference><Title>Complications of cerebral arteriovenous malformation embolization: multivariate analysis of predictive factors.</Title><Authors>Ledezma CJ, Hoh BL, Carter BS, Pryor JC, Putman CM, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2006 Apr</Date><IssueInfo>58(4):602-11; discussion 602-11</IssueInfo></Publication><Publication Source="PubMed" PMID="28180540"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28180540</URL><PublicationReference>Complications of Cerebral Arteriovenous Malformation Embolization. Neurosurgery. 2006 Apr 01; 58(4):602-611.</PublicationReference><Title>Complications of Cerebral Arteriovenous Malformation Embolization.</Title><Authors>Ledezma CJ, Hoh BL, Carter BS, Pryor JC, Putman CM, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2006 Apr 01</Date><IssueInfo>58(4):602-611</IssueInfo></Publication><Publication Source="PubMed" PMID="16428981"><URL>http://www.ncbi.nlm.nih.gov/pubmed/16428981</URL><PublicationReference>Vulnerable plaque detection by 3.0 tesla magnetic resonance imaging. Invest Radiol. 2006 Feb; 41(2):112-5.</PublicationReference><Title>Vulnerable plaque detection by 3.0 tesla magnetic resonance imaging.</Title><Authors>Cury RC, Houser SL, Furie KL, Stone JR, Ogilvy CS, Sherwood JB, Muller JE, Brady TJ, Hinton DP. </Authors><Journal>Invest Radiol</Journal><Date>2006 Feb</Date><IssueInfo>41(2):112-5</IssueInfo></Publication><Publication Source="PubMed" PMID="16462474"><URL>http://www.ncbi.nlm.nih.gov/pubmed/16462474</URL><PublicationReference>Epidemiology of the size distribution of intracranial bifurcation aneurysms: smaller size of distal aneurysms and increasing size of unruptured aneurysms with age. Neurosurgery. 2006 Feb; 58(2):217-23; discussion 217-23.</PublicationReference><Title>Epidemiology of the size distribution of intracranial bifurcation aneurysms: smaller size of distal aneurysms and increasing size of unruptured aneurysms with age.</Title><Authors>Carter BS, Sheth S, Chang E, Sethl M, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2006 Feb</Date><IssueInfo>58(2):217-23; discussion 217-23</IssueInfo></Publication><Publication Source="PubMed" PMID="16297834"><URL>http://www.ncbi.nlm.nih.gov/pubmed/16297834</URL><PublicationReference>ISAT: coiling or clipping for ruptured intracranial aneurysms? Lancet Neurol. 2005 Dec; 4(12):791-2.</PublicationReference><Title>ISAT: coiling or clipping for ruptured intracranial aneurysms?</Title><Authors>Mitha AP, Ogilvy CS. </Authors><Journal>Lancet Neurol</Journal><Date>2005 Dec</Date><IssueInfo>4(12):791-2</IssueInfo></Publication><Publication Source="PubMed" PMID="16304982"><URL>http://www.ncbi.nlm.nih.gov/pubmed/16304982</URL><PublicationReference>Extracranial-intracranial bypass in the treatment of occlusive cerebrovascular disease and intracranial aneurysms in the United States between 1992 and 2001: a population-based study. 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Neurosurgery. 2005 Nov; 57(5):845-9; discussion 845-9.</PublicationReference><Title>Safety of heparinization for cerebral aneurysm coiling soon after external ventriculostomy drain placement.</Title><Authors>Hoh BL, Nogueira RG, Ledezma CJ, Pryor JC, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2005 Nov</Date><IssueInfo>57(5):845-9; discussion 845-9</IssueInfo></Publication><Publication Source="PubMed" PMID="16145510"><URL>http://www.ncbi.nlm.nih.gov/pubmed/16145510</URL><PublicationReference>Paraplegia after tethered cord surgery: an uncommon combined anomaly of spinal arteriovenous fistula and sacral lipoma--case report. Neurosurgery. 2005 Sep; 57(3):E598; discussion E598.</PublicationReference><Title>Paraplegia after tethered cord surgery: an uncommon combined anomaly of spinal arteriovenous fistula and sacral lipoma--case report.</Title><Authors>Cheung AC, Kalkanis SN, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2005 Sep</Date><IssueInfo>57(3):E598; discussion E598</IssueInfo></Publication><Publication Source="PubMed" PMID="16094152"><URL>http://www.ncbi.nlm.nih.gov/pubmed/16094152</URL><PublicationReference>Heparin-induced thrombocytopenia Type II in subarachnoid hemorrhage patients: incidence and complications. Neurosurgery. 2005 Aug; 57(2):243-8; discussion 243-8.</PublicationReference><Title>Heparin-induced thrombocytopenia Type II in subarachnoid hemorrhage patients: incidence and complications.</Title><Authors>Hoh BL, Aghi M, Pryor JC, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2005 Aug</Date><IssueInfo>57(2):243-8; discussion 243-8</IssueInfo></Publication><Publication Source="PubMed" PMID="15990041"><URL>http://www.ncbi.nlm.nih.gov/pubmed/15990041</URL><PublicationReference>Endovascular treatment of cerebral vasospasm: transluminal balloon angioplasty, intra-arterial papaverine, and intra-arterial nicardipine. Neurosurg Clin N Am. 2005 Jul; 16(3):501-16, vi.</PublicationReference><Title>Endovascular treatment of cerebral vasospasm: transluminal balloon angioplasty, intra-arterial papaverine, and intra-arterial nicardipine.</Title><Authors>Hoh BL, Ogilvy CS. </Authors><Journal>Neurosurg Clin N Am</Journal><Date>2005 Jul</Date><IssueInfo>16(3):501-16, vi</IssueInfo></Publication><Publication Source="PubMed" PMID="16003069"><URL>http://www.ncbi.nlm.nih.gov/pubmed/16003069</URL><PublicationReference>Relationship between hyperglycemia and symptomatic vasospasm after subarachnoid hemorrhage. Crit Care Med. 2005 Jul; 33(7):1603-9; quiz 1623.</PublicationReference><Title>Relationship between hyperglycemia and symptomatic vasospasm after subarachnoid hemorrhage.</Title><Authors>Badjatia N, Topcuoglu MA, Buonanno FS, Smith EE, Nogueira RG, Rordorf GA, Carter BS, Ogilvy CS, Singhal AB. </Authors><Journal>Crit Care Med</Journal><Date>2005 Jul</Date><IssueInfo>33(7):1603-9; quiz 1623</IssueInfo></Publication><Publication Source="PubMed" PMID="15792506"><URL>http://www.ncbi.nlm.nih.gov/pubmed/15792506</URL><PublicationReference>Factors associated with outcome after hemicraniectomy for large middle cerebral artery territory infarction. Neurosurgery. 2005 Apr; 56(4):681-92; discussion 681-92.</PublicationReference><Title>Factors associated with outcome after hemicraniectomy for large middle cerebral artery territory infarction.</Title><Authors>Curry WT, Sethi MK, Ogilvy CS, Carter BS. </Authors><Journal>Neurosurgery</Journal><Date>2005 Apr</Date><IssueInfo>56(4):681-92; discussion 681-92</IssueInfo></Publication><Publication Source="PubMed" PMID="15781818"><URL>http://www.ncbi.nlm.nih.gov/pubmed/15781818</URL><PublicationReference>SSRI and statin use increases the risk for vasospasm after subarachnoid hemorrhage. Neurology. 2005 Mar 22; 64(6):1008-13.</PublicationReference><Title>SSRI and statin use increases the risk for vasospasm after subarachnoid hemorrhage.</Title><Authors>Singhal AB, Topcuoglu MA, Dorer DJ, Ogilvy CS, Carter BS, Koroshetz WJ. </Authors><Journal>Neurology</Journal><Date>2005 Mar 22</Date><IssueInfo>64(6):1008-13</IssueInfo></Publication><Publication Source="PubMed" PMID="15617605"><URL>http://www.ncbi.nlm.nih.gov/pubmed/15617605</URL><PublicationReference>Aneurysmal expansion presenting as facial weakness: case report and review of the literature. Neurosurgery. 2005; 56(1):190.</PublicationReference><Title>Aneurysmal expansion presenting as facial weakness: case report and review of the literature.</Title><Authors>Neimat JS, Hoh BL, McKenna MJ, Rabinov JD, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2005</Date><IssueInfo>56(1):190</IssueInfo></Publication><Publication Source="PubMed" PMID="28184849"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28184849</URL><PublicationReference>Aneurysmal Expansion Presenting as Facial Weakness: Case Report and Review of the Literature. Neurosurgery. 2005 Jan 01; 56(1):E202-E205.</PublicationReference><Title>Aneurysmal Expansion Presenting as Facial Weakness: Case Report and Review of the Literature.</Title><Authors>Neimat JS, Hoh BL, McKenna MJ, Rabinov JD, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2005 Jan 01</Date><IssueInfo>56(1):E202-E205</IssueInfo></Publication><Publication Source="PubMed" PMID="15458586"><URL>http://www.ncbi.nlm.nih.gov/pubmed/15458586</URL><PublicationReference>Effect of clipping, craniotomy, or intravascular coiling on cerebral vasospasm and patient outcome after aneurysmal subarachnoid hemorrhage. Neurosurgery. 2004 Oct; 55(4):779-86; discussion 786-9.</PublicationReference><Title>Effect of clipping, craniotomy, or intravascular coiling on cerebral vasospasm and patient outcome after aneurysmal subarachnoid hemorrhage.</Title><Authors>Hoh BL, Topcuoglu MA, Singhal AB, Pryor JC, Rabinov JD, Rordorf GA, Carter BS, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2004 Oct</Date><IssueInfo>55(4):779-86; discussion 786-9</IssueInfo></Publication><Publication Source="PubMed" PMID="15349755"><URL>http://www.ncbi.nlm.nih.gov/pubmed/15349755</URL><PublicationReference>Computed tomographic demonstrated infarcts after surgical and endovascular treatment of aneurysmal subarachnoid hemorrhage. Acta Neurochir (Wien). 2004 Nov; 146(11):1177-83.</PublicationReference><Title>Computed tomographic demonstrated infarcts after surgical and endovascular treatment of aneurysmal subarachnoid hemorrhage.</Title><Authors>Hoh BL, Curry WT, Carter BS, Ogilvy CS. </Authors><Journal>Acta Neurochir (Wien)</Journal><Date>2004 Nov</Date><IssueInfo>146(11):1177-83</IssueInfo></Publication><Publication Source="PubMed" PMID="15271236"><URL>http://www.ncbi.nlm.nih.gov/pubmed/15271236</URL><PublicationReference>Comparison of endovascular and surface cooling during unruptured cerebral aneurysm repair. Neurosurgery. 2004 Aug; 55(2):307-14; discussion 314-5.</PublicationReference><Title>Comparison of endovascular and surface cooling during unruptured cerebral aneurysm repair.</Title><Authors>Steinberg GK, Ogilvy CS, Shuer LM, Connolly ES, Solomon RA, Lam A, Kassell NF, Baker CJ, Giannotta SL, Cockroft KM, Bell-Stephens TE, Allgren RL. </Authors><Journal>Neurosurgery</Journal><Date>2004 Aug</Date><IssueInfo>55(2):307-14; discussion 314-5</IssueInfo></Publication><Publication Source="PubMed" PMID="15313708" PMCID="PMC7976553"><URL>http://www.ncbi.nlm.nih.gov/pubmed/15313708</URL><PublicationReference>Persistent nonfused segments of the basilar artery: longitudinal versus axial nonfusion. AJNR Am J Neuroradiol. 2004 Aug; 25(7):1194-6.</PublicationReference><Title>Persistent nonfused segments of the basilar artery: longitudinal versus axial nonfusion.</Title><Authors>Hoh BL, Rabinov JD, Pryor JC, Hirsch JA, Dooling EC, Ogilvy CS. </Authors><Journal>AJNR Am J Neuroradiol</Journal><Date>2004 Aug</Date><IssueInfo>25(7):1194-6</IssueInfo></Publication><Publication Source="PubMed" PMID="15214994"><URL>http://www.ncbi.nlm.nih.gov/pubmed/15214994</URL><PublicationReference>The relationship between occlusive hyperemia and complications associated with the radiosurgical treatment of arteriovenous malformations: report of two cases. Neurosurgery. 2004 Jul; 55(1):228-33; discussion 233-4.</PublicationReference><Title>The relationship between occlusive hyperemia and complications associated with the radiosurgical treatment of arteriovenous malformations: report of two cases.</Title><Authors>Chapman PH, Ogilvy CS, Loeffler JS. </Authors><Journal>Neurosurgery</Journal><Date>2004 Jul</Date><IssueInfo>55(1):228-33; discussion 233-4</IssueInfo></Publication><Publication Source="PubMed" PMID="15157289"><URL>http://www.ncbi.nlm.nih.gov/pubmed/15157289</URL><PublicationReference>Results of a prospective protocol of computed tomographic angiography in place of catheter angiography as the only diagnostic and pretreatment planning study for cerebral aneurysms by a combined neurovascular team. Neurosurgery. 2004 Jun; 54(6):1329-40; discussion 1340-2.</PublicationReference><Title>Results of a prospective protocol of computed tomographic angiography in place of catheter angiography as the only diagnostic and pretreatment planning study for cerebral aneurysms by a combined neurovascular team.</Title><Authors>Hoh BL, Cheung AC, Rabinov JD, Pryor JC, Carter BS, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2004 Jun</Date><IssueInfo>54(6):1329-40; discussion 1340-2</IssueInfo></Publication><Publication Source="PubMed" PMID="15197614"><URL>http://www.ncbi.nlm.nih.gov/pubmed/15197614</URL><PublicationReference>A modified technique for using elastase to create saccular aneurysms in animals that histologically and hemodynamically resemble aneurysms in human. Acta Neurochir (Wien). 2004 Jul; 146(7):705-11.</PublicationReference><Title>A modified technique for using elastase to create saccular aneurysms in animals that histologically and hemodynamically resemble aneurysms in human.</Title><Authors>Hoh BL, Rabinov JD, Pryor JC, Ogilvy CS. </Authors><Journal>Acta Neurochir (Wien)</Journal><Date>2004 Jul</Date><IssueInfo>146(7):705-11</IssueInfo></Publication><Publication Source="PubMed" PMID="15140728" PMCID="PMC7974508"><URL>http://www.ncbi.nlm.nih.gov/pubmed/15140728</URL><PublicationReference>Preliminary experience with intra-arterial nicardipine as a treatment for cerebral vasospasm. AJNR Am J Neuroradiol. 2004 May; 25(5):819-26.</PublicationReference><Title>Preliminary experience with intra-arterial nicardipine as a treatment for cerebral vasospasm.</Title><Authors>Badjatia N, Topcuoglu MA, Pryor JC, Rabinov JD, Ogilvy CS, Carter BS, Rordorf GA. </Authors><Journal>AJNR Am J Neuroradiol</Journal><Date>2004 May</Date><IssueInfo>25(5):819-26</IssueInfo></Publication><Publication Source="PubMed" PMID="14744278"><URL>http://www.ncbi.nlm.nih.gov/pubmed/14744278</URL><PublicationReference>Does intracisternal thrombolysis prevent vasospasm after aneurysmal subarachnoid hemorrhage? A meta-analysis. Neurosurgery. 2004 Feb; 54(2):326-34; discussion 334-5.</PublicationReference><Title>Does intracisternal thrombolysis prevent vasospasm after aneurysmal subarachnoid hemorrhage? 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Neurosurgery. 2004 Jan; 54(1):18-28; discussion 28-30.</PublicationReference><Title>Age-dependent differences in short-term outcome after surgical or endovascular treatment of unruptured intracranial aneurysms in the United States, 1996-2000.</Title><Authors>Barker FG, Amin-Hanjani S, Butler WE, Hoh BL, Rabinov JD, Pryor JC, Ogilvy CS, Carter BS. </Authors><Journal>Neurosurgery</Journal><Date>2004 Jan</Date><IssueInfo>54(1):18-28; discussion 28-30</IssueInfo></Publication><Publication Source="PubMed" PMID="16174910"><URL>http://www.ncbi.nlm.nih.gov/pubmed/16174910</URL><PublicationReference>Achieving normothermia in patients with febrile subarachnoid hemorrhage: feasibility and safety of a novel intravascular cooling catheter. Neurocrit Care. 2004; 1(2):145-56.</PublicationReference><Title>Achieving normothermia in patients with febrile subarachnoid hemorrhage: feasibility and safety of a novel intravascular cooling catheter.</Title><Authors>Badjatia N, O'Donnell J, Baker JR, Huang D, Ayata C, Greer DM, Carter BS, Ogilvy CS, McDonald CT. </Authors><Journal>Neurocrit Care</Journal><Date>2004</Date><IssueInfo>1(2):145-56</IssueInfo></Publication><Publication Source="PubMed" PMID="14740259"><URL>http://www.ncbi.nlm.nih.gov/pubmed/14740259</URL><PublicationReference>Incidence of residual intracranial AVMs after surgical resection and efficacy of immediate surgical re-exploration. Acta Neurochir (Wien). 2004 Jan; 146(1):1-7; discussion 7.</PublicationReference><Title>Incidence of residual intracranial AVMs after surgical resection and efficacy of immediate surgical re-exploration.</Title><Authors>Hoh BL, Carter BS, Ogilvy CS. </Authors><Journal>Acta Neurochir (Wien)</Journal><Date>2004 Jan</Date><IssueInfo>146(1):1-7; discussion 7</IssueInfo></Publication><Publication Source="PubMed" PMID="14617585"><URL>http://www.ncbi.nlm.nih.gov/pubmed/14617585</URL><PublicationReference>Transfusion-related acute lung injury or acute chest syndrome of sickle cell disease? - A case report. Can J Anaesth. 2003 Nov; 50(9):895-9.</PublicationReference><Title>Transfusion-related acute lung injury or acute chest syndrome of sickle cell disease? - A case report.</Title><Authors>Firth PG, Tsuruta Y, Kamath Y, Dzik WH, Ogilvy CS, Peterfreund RA. </Authors><Journal>Can J Anaesth</Journal><Date>2003 Nov</Date><IssueInfo>50(9):895-9</IssueInfo></Publication><Publication Source="PubMed" PMID="15344897"><URL>http://www.ncbi.nlm.nih.gov/pubmed/15344897</URL><PublicationReference>Intracerebral hematoma from aneurysm rupture. Neurosurg Focus. 2003 Oct 15; 15(4):E4.</PublicationReference><Title>Intracerebral hematoma from aneurysm rupture.</Title><Authors>Abbed KM, Ogilvy CS. </Authors><Journal>Neurosurg Focus</Journal><Date>2003 Oct 15</Date><IssueInfo>15(4):E4</IssueInfo></Publication><Publication Source="PubMed" PMID="14500927"><URL>http://www.ncbi.nlm.nih.gov/pubmed/14500927</URL><PublicationReference>Neurosurgical clipping versus endovascular coiling of patients with ruptured intracranial aneurysms. Stroke. 2003 Oct; 34(10):2540-2.</PublicationReference><Title>Neurosurgical clipping versus endovascular coiling of patients with ruptured intracranial aneurysms.</Title><Authors>Ogilvy CS. </Authors><Journal>Stroke</Journal><Date>2003 Oct</Date><IssueInfo>34(10):2540-2</IssueInfo></Publication><Publication Source="PubMed" PMID="12943597"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12943597</URL><PublicationReference>An easy-to-use intraoperative digital videography, still photography, and X-ray-capture system. Neurosurgery. 2003 Sep; 53(3):781-3; discussion 783-4.</PublicationReference><Title>An easy-to-use intraoperative digital videography, still photography, and X-ray-capture system.</Title><Authors>Ogilvy CS, Ogilvy BW, Sztramski P. </Authors><Journal>Neurosurgery</Journal><Date>2003 Sep</Date><IssueInfo>53(3):781-3; discussion 783-4</IssueInfo></Publication><Publication Source="PubMed" PMID="12917140" PMCID="PMC7973671"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12917140</URL><PublicationReference>Endovascular management of vertebrobasilar dissecting aneurysms. AJNR Am J Neuroradiol. 2003 Aug; 24(7):1421-8.</PublicationReference><Title>Endovascular management of vertebrobasilar dissecting aneurysms.</Title><Authors>Rabinov JD, Hellinger FR, Morris PP, Ogilvy CS, Putman CM. </Authors><Journal>AJNR Am J Neuroradiol</Journal><Date>2003 Aug</Date><IssueInfo>24(7):1421-8</IssueInfo></Publication><Publication Source="PubMed" PMID="12924697"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12924697</URL><PublicationReference>Dose-volume prediction of radiation-related complications after proton beam radiosurgery for cerebral arteriovenous malformations. J Neurosurg. 2003 Aug; 99(2):254-63.</PublicationReference><Title>Dose-volume prediction of radiation-related complications after proton beam radiosurgery for cerebral arteriovenous malformations.</Title><Authors>Barker FG, Butler WE, Lyons S, Cascio E, Ogilvy CS, Loeffler JS, Chapman PH. </Authors><Journal>J Neurosurg</Journal><Date>2003 Aug</Date><IssueInfo>99(2):254-63</IssueInfo></Publication><Publication Source="PubMed" PMID="12854741"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12854741</URL><PublicationReference>Mutational analysis of 206 families with cavernous malformations. J Neurosurg. 2003 Jul; 99(1):38-43.</PublicationReference><Title>Mutational analysis of 206 families with cavernous malformations.</Title><Authors>Laurans MS, DiLuna ML, Shin D, Niazi F, Voorhees JR, Nelson-Williams C, Johnson EW, Siegel AM, Steinberg GK, Berg MJ, Scott RM, Tedeschi G, Enevoldson TP, Anson J, Rouleau GA, Ogilvy C, Awad IA, Lifton RP, Gunel M. </Authors><Journal>J Neurosurg</Journal><Date>2003 Jul</Date><IssueInfo>99(1):38-43</IssueInfo></Publication><Publication Source="PubMed" PMID="12816270"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12816270</URL><PublicationReference>Subarachnoid hemorrhage without evident cause on initial angiography studies: diagnostic yield of subsequent angiography and other neuroimaging tests. J Neurosurg. 2003 Jun; 98(6):1235-40.</PublicationReference><Title>Subarachnoid hemorrhage without evident cause on initial angiography studies: diagnostic yield of subsequent angiography and other neuroimaging tests.</Title><Authors>Topcuoglu MA, Ogilvy CS, Carter BS, Buonanno FS, Koroshetz WJ, Singhal AB. </Authors><Journal>J Neurosurg</Journal><Date>2003 Jun</Date><IssueInfo>98(6):1235-40</IssueInfo></Publication><Publication Source="PubMed" PMID="12699540"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12699540</URL><PublicationReference>In-hospital mortality and morbidity after surgical treatment of unruptured intracranial aneurysms in the United States, 1996-2000: the effect of hospital and surgeon volume. Neurosurgery. 2003 May; 52(5):995-1007; discussion 1007-9.</PublicationReference><Title>In-hospital mortality and morbidity after surgical treatment of unruptured intracranial aneurysms in the United States, 1996-2000: the effect of hospital and surgeon volume.</Title><Authors>Barker FG, Amin-Hanjani S, Butler WE, Ogilvy CS, Carter BS. </Authors><Journal>Neurosurgery</Journal><Date>2003 May</Date><IssueInfo>52(5):995-1007; discussion 1007-9</IssueInfo></Publication><Publication Source="PubMed" PMID="12699563"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12699563</URL><PublicationReference>Metabolic effects of hypothermia and its neuroprotective effects on the recovery of metabolic and electrophysiological function in the ischemic retina in vitro. Neurosurgery. 2003 May; 52(5):1178-86; discussion 1186-7.</PublicationReference><Title>Metabolic effects of hypothermia and its neuroprotective effects on the recovery of metabolic and electrophysiological function in the ischemic retina in vitro.</Title><Authors>Quiñones-Hinojosa A, Malek JY, Ames A, Ogilvy CS, Maynard KI. </Authors><Journal>Neurosurgery</Journal><Date>2003 May</Date><IssueInfo>52(5):1178-86; discussion 1186-7</IssueInfo></Publication><Publication Source="PubMed" PMID="12657168"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12657168</URL><PublicationReference>Important factors for a combined neurovascular team to consider in selecting a treatment modality for patients with previously clipped residual and recurrent intracranial aneurysms. Neurosurgery. 2003 Apr; 52(4):732-8; discussion 738-9.</PublicationReference><Title>Important factors for a combined neurovascular team to consider in selecting a treatment modality for patients with previously clipped residual and recurrent intracranial aneurysms.</Title><Authors>Hoh BL, Carter BS, Putman CM, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2003 Apr</Date><IssueInfo>52(4):732-8; discussion 738-9</IssueInfo></Publication><Publication Source="PubMed" PMID="12535365"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12535365</URL><PublicationReference>Far posterior subtemporal approach to the dorsolateral brainstem and tentorial ring: technique and clinical experience. Neurosurgery. 2003 Feb; 52(2):364-8; discussion 368-9.</PublicationReference><Title>Far posterior subtemporal approach to the dorsolateral brainstem and tentorial ring: technique and clinical experience.</Title><Authors>Smith ER, Chapman PH, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2003 Feb</Date><IssueInfo>52(2):364-8; discussion 368-9</IssueInfo></Publication><Publication Source="PubMed" PMID="12493104"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12493104</URL><PublicationReference>Stratification of outcome for surgically treated unruptured intracranial aneurysms. Neurosurgery. 2003 Jan; 52(1):82-7; discussion 87-8.</PublicationReference><Title>Stratification of outcome for surgically treated unruptured intracranial aneurysms.</Title><Authors>Ogilvy CS, Carter BS. </Authors><Journal>Neurosurgery</Journal><Date>2003 Jan</Date><IssueInfo>52(1):82-7; discussion 87-8</IssueInfo></Publication><Publication Source="PubMed" PMID="12194810"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12194810</URL><PublicationReference>Cerebral Vasospasm Following Subarachnoid Hemorrhage. Curr Treat Options Cardiovasc Med. 2002 Oct; 4(5):373-384.</PublicationReference><Title>Cerebral Vasospasm Following Subarachnoid Hemorrhage.</Title><Authors>Topcuoglu MA, Pryor JC, Ogilvy CS, Kistler JP. </Authors><Journal>Curr Treat Options Cardiovasc Med</Journal><Date>2002 Oct</Date><IssueInfo>4(5):373-384</IssueInfo></Publication><Publication Source="PubMed" PMID="12182768"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12182768</URL><PublicationReference>Results of multimodality treatment for 141 patients with brain arteriovenous malformations and seizures: factors associated with seizure incidence and seizure outcomes. Neurosurgery. 2002 Aug; 51(2):303-9; discussion 309-11.</PublicationReference><Title>Results of multimodality treatment for 141 patients with brain arteriovenous malformations and seizures: factors associated with seizure incidence and seizure outcomes.</Title><Authors>Hoh BL, Chapman PH, Loeffler JS, Carter BS, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2002 Aug</Date><IssueInfo>51(2):303-9; discussion 309-11</IssueInfo></Publication><Publication Source="PubMed" PMID="12082061" PMCID="PMC1757325"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12082061</URL><PublicationReference>Acute hyperperfusion syndrome complicating EC-IC bypass. J Neurol Neurosurg Psychiatry. 2002 Jul; 73(1):88-9.</PublicationReference><Title>Acute hyperperfusion syndrome complicating EC-IC bypass.</Title><Authors>Stiver SI, Ogilvy CS. </Authors><Journal>J Neurol Neurosurg Psychiatry</Journal><Date>2002 Jul</Date><IssueInfo>73(1):88-9</IssueInfo></Publication><Publication Source="PubMed" PMID="12182408"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12182408</URL><PublicationReference>Proposed use of prophylactic decompressive craniectomy in poor-grade aneurysmal subarachnoid hemorrhage patients presenting with associated large sylvian hematomas. Neurosurgery. 2002 Jul; 51(1):117-24; discussion 124.</PublicationReference><Title>Proposed use of prophylactic decompressive craniectomy in poor-grade aneurysmal subarachnoid hemorrhage patients presenting with associated large sylvian hematomas.</Title><Authors>Smith ER, Carter BS, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2002 Jul</Date><IssueInfo>51(1):117-24; discussion 124</IssueInfo></Publication><Publication Source="PubMed" PMID="12182412"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12182412</URL><PublicationReference>Clinical and radiographic outcome in the management of posterior circulation aneurysms by use of direct surgical or endovascular techniques. Neurosurgery. 2002 Jul; 51(1):14-21; discussion 21-2.</PublicationReference><Title>Clinical and radiographic outcome in the management of posterior circulation aneurysms by use of direct surgical or endovascular techniques.</Title><Authors>Ogilvy CS, Hoh BL, Singer RJ, Putman CM. </Authors><Journal>Neurosurgery</Journal><Date>2002 Jul</Date><IssueInfo>51(1):14-21; discussion 21-2</IssueInfo></Publication><Publication Source="PubMed" PMID="12015837"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12015837</URL><PublicationReference>Risk of hemorrhage from unsecured, unruptured aneurysms during and after hypertensive hypervolemic therapy. 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Curr Opin Neurol. 2002 Apr; 15(2):165-71.</PublicationReference><Title>Surgical approaches to vascular anomalies of the child's brain.</Title><Authors>Smith ER, Butler WE, Ogilvy CS. </Authors><Journal>Curr Opin Neurol</Journal><Date>2002 Apr</Date><IssueInfo>15(2):165-71</IssueInfo></Publication><Publication Source="PubMed" PMID="11897090"><URL>http://www.ncbi.nlm.nih.gov/pubmed/11897090</URL><PublicationReference>Delayed treatment with nicotinamide (vitamin B3) reduces the infarct volume following focal cerebral ischemia in spontaneously hypertensive rats, diabetic and non-diabetic Fischer 344 rats. 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J Neurosurg. 2002 Mar; 96(2 Suppl):162-7.</PublicationReference><Title>Spinal dural arteriovenous fistulas: experience with endovascular and surgical therapy.</Title><Authors>Eskandar EN, Borges LF, Budzik RF, Putman CM, Ogilvy CS. </Authors><Journal>J Neurosurg</Journal><Date>2002 Mar</Date><IssueInfo>96(2 Suppl):162-7</IssueInfo></Publication><Publication Source="PubMed" PMID="12518997"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12518997</URL><PublicationReference>Small aneurysms as a cause of thromboembolic stroke. Bratisl Lek Listy. 2002; 103(7-8):250-3.</PublicationReference><Title>Small aneurysms as a cause of thromboembolic stroke.</Title><Authors>Smrcka M, Ogilvy ChS, Koroshetz W. </Authors><Journal>Bratisl Lek Listy</Journal><Date>2002</Date><IssueInfo>103(7-8):250-3</IssueInfo></Publication><Publication Source="PubMed" PMID="11846934"><URL>http://www.ncbi.nlm.nih.gov/pubmed/11846934</URL><PublicationReference>Surgical and endovascular flow disconnection of intracranial pial single-channel arteriovenous fistulae. Neurosurgery. 2001 Dec; 49(6):1351-63; discussion 1363-4.</PublicationReference><Title>Surgical and endovascular flow disconnection of intracranial pial single-channel arteriovenous fistulae.</Title><Authors>Hoh BL, Putman CM, Budzik RF, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2001 Dec</Date><IssueInfo>49(6):1351-63; discussion 1363-4</IssueInfo></Publication><Publication Source="PubMed" PMID="11780672"><URL>http://www.ncbi.nlm.nih.gov/pubmed/11780672</URL><PublicationReference>Delayed diagnosis of intracranial aneurysms. South Med J. 2001 Nov; 94(11):1052.</PublicationReference><Title>Delayed diagnosis of intracranial aneurysms.</Title><Authors>Ogilvy CS. </Authors><Journal>South Med J</Journal><Date>2001 Nov</Date><IssueInfo>94(11):1052</IssueInfo></Publication><Publication Source="PubMed" PMID="11527524"><URL>http://www.ncbi.nlm.nih.gov/pubmed/11527524</URL><PublicationReference>Subarachnoid Hemorrhage. Curr Treat Options Cardiovasc Med. 2001 Oct; 3(5):429-439.</PublicationReference><Title>Subarachnoid Hemorrhage.</Title><Authors>McDonald CT, Carter BS, Putman C, Ogilvy CS. </Authors><Journal>Curr Treat Options Cardiovasc Med</Journal><Date>2001 Oct</Date><IssueInfo>3(5):429-439</IssueInfo></Publication><Publication Source="PubMed" PMID="11440436"><URL>http://www.ncbi.nlm.nih.gov/pubmed/11440436</URL><PublicationReference>Temporal clustering of hemorrhages from untreated cavernous malformations of the central nervous system. 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Neurosurgery. 2001 Jul; 49(1):208-11.</PublicationReference><Title>Posterior fossa decompression and clot evacuation for fourth ventricle hemorrhage after aneurysmal rupture: case report.</Title><Authors>Lagares A, Putman CM, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2001 Jul</Date><IssueInfo>49(1):208-11</IssueInfo></Publication><Publication Source="PubMed" PMID="11453395"><URL>http://www.ncbi.nlm.nih.gov/pubmed/11453395</URL><PublicationReference>Combined surgical and endovascular techniques of flow alteration to treat fusiform and complex wide-necked intracranial aneurysms that are unsuitable for clipping or coil embolization. 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Circulation. 2001 May 29; 103(21):2644-57.</PublicationReference><Title>Recommendations for the management of intracranial arteriovenous malformations: a statement for healthcare professionals from a special writing group of the Stroke Council, American Stroke Association.</Title><Authors>Ogilvy CS, Stieg PE, Awad I, Brown RD, Kondziolka D, Rosenwasser R, Young WL, Hademenos G. </Authors><Journal>Circulation</Journal><Date>2001 May 29</Date><IssueInfo>103(21):2644-57</IssueInfo></Publication><Publication Source="PubMed" PMID="11376177"><URL>http://www.ncbi.nlm.nih.gov/pubmed/11376177</URL><PublicationReference>Fever in subarachnoid hemorrhage: relationship to vasospasm and outcome. Neurology. 2001 May 22; 56(10):1299-304.</PublicationReference><Title>Fever in subarachnoid hemorrhage: relationship to vasospasm and outcome.</Title><Authors>Oliveira-Filho J, Ezzeddine MA, Segal AZ, Buonanno FS, Chang Y, Ogilvy CS, Rordorf G, Schwamm LH, Koroshetz WJ, McDonald CT. </Authors><Journal>Neurology</Journal><Date>2001 May 22</Date><IssueInfo>56(10):1299-304</IssueInfo></Publication><Publication Source="PubMed" PMID="11322459"><URL>http://www.ncbi.nlm.nih.gov/pubmed/11322459</URL><PublicationReference>Aneurysms of the lateral spinal artery: report of two cases. Neurosurgery. 2001 Apr; 48(4):949-53; discussion 953-4.</PublicationReference><Title>Aneurysms of the lateral spinal artery: report of two cases.</Title><Authors>Chen CC, Bellon RJ, Ogilvy CS, Putman CM. </Authors><Journal>Neurosurgery</Journal><Date>2001 Apr</Date><IssueInfo>48(4):949-53; discussion 953-4</IssueInfo></Publication><Publication Source="PubMed" PMID="11237986" PMCID="PMC7976839"><URL>http://www.ncbi.nlm.nih.gov/pubmed/11237986</URL><PublicationReference>Fluoroscopy-guided lumbar puncture: decreased frequency of traumatic tap and implications for the assessment of CT-negative acute subarachnoid hemorrhage. 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Neurosurgery. 2000 Oct; 47(4):827-32; discussion 832-3.</PublicationReference><Title>Management outcomes for ruptured and unruptured aneurysms in the elderly.</Title><Authors>Chung RY, Carter BS, Norbash A, Budzik R, Putnam C, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2000 Oct</Date><IssueInfo>47(4):827-32; discussion 832-3</IssueInfo></Publication><Publication Source="PubMed" PMID="10936822"><URL>http://www.ncbi.nlm.nih.gov/pubmed/10936822</URL><PublicationReference>Regional patterns of left ventricular systolic dysfunction after subarachnoid hemorrhage: evidence for neurally mediated cardiac injury. J Am Soc Echocardiogr. 2000 Aug; 13(8):774-9.</PublicationReference><Title>Regional patterns of left ventricular systolic dysfunction after subarachnoid hemorrhage: evidence for neurally mediated cardiac injury.</Title><Authors>Zaroff JG, Rordorf GA, Ogilvy CS, Picard MH. </Authors><Journal>J Am Soc Echocardiogr</Journal><Date>2000 Aug</Date><IssueInfo>13(8):774-9</IssueInfo></Publication><Publication Source="PubMed" PMID="10942007"><URL>http://www.ncbi.nlm.nih.gov/pubmed/10942007</URL><PublicationReference>Multimodality treatment of nongalenic arteriovenous malformations in pediatric patients. Neurosurgery. 2000 Aug; 47(2):346-57; discussion 357-8.</PublicationReference><Title>Multimodality treatment of nongalenic arteriovenous malformations in pediatric patients.</Title><Authors>Hoh BL, Ogilvy CS, Butler WE, Loeffler JS, Putman CM, Chapman PH. </Authors><Journal>Neurosurgery</Journal><Date>2000 Aug</Date><IssueInfo>47(2):346-57; discussion 357-8</IssueInfo></Publication><Publication Source="PubMed" PMID="28204609"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28204609</URL><PublicationReference>701 Combined Surgical and Endovascular Outcome in the Treatment of Paraclinoid Aneurysms. Neurosurgery. 2000 Aug 01; 47(2):499.</PublicationReference><Title>701 Combined Surgical and Endovascular Outcome in the Treatment of Paraclinoid Aneurysms.</Title><Authors>Hoh BL, Ogilvy CS, Carter BS, Choi IS, Budzik RF, Putman CM. </Authors><Journal>Neurosurgery</Journal><Date>2000 Aug 01</Date><IssueInfo>47(2):499</IssueInfo></Publication><Publication Source="PubMed" PMID="28204624"><URL>http://www.ncbi.nlm.nih.gov/pubmed/28204624</URL><PublicationReference>811 Multimodality Treatment Approach in 424 Arteriovenous Malformations (AVMs): Improved Outcome in High Risk Lesions. Neurosurgery. 2000 Aug 01; 47(2):531-532.</PublicationReference><Title>811 Multimodality Treatment Approach in 424 Arteriovenous Malformations (AVMs): Improved Outcome in High Risk Lesions.</Title><Authors>Hoh BL, Chapman PH, Loeffler JS, Putman CM, Budzik RF, Choi IS, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2000 Aug 01</Date><IssueInfo>47(2):531-532</IssueInfo></Publication><Publication Source="PubMed" PMID="10884473"><URL>http://www.ncbi.nlm.nih.gov/pubmed/10884473</URL><PublicationReference>Delayed treatment with nicotinamide (Vitamin B(3)) improves neurological outcome and reduces infarct volume after transient focal cerebral ischemia in Wistar rats. Stroke. 2000 Jul; 31(7):1679-85.</PublicationReference><Title>Delayed treatment with nicotinamide (Vitamin B(3)) improves neurological outcome and reduces infarct volume after transient focal cerebral ischemia in Wistar rats.</Title><Authors>Mokudai T, Ayoub IA, Sakakibara Y, Lee EJ, Ogilvy CS, Maynard KI. </Authors><Journal>Stroke</Journal><Date>2000 Jul</Date><IssueInfo>31(7):1679-85</IssueInfo></Publication><Publication Source="PubMed" PMID="10834638"><URL>http://www.ncbi.nlm.nih.gov/pubmed/10834638</URL><PublicationReference>Factors associated with reintegration to normal living after subarachnoid hemorrhage. Neurosurgery. 2000 Jun; 46(6):1326-33; discussion 1333-4.</PublicationReference><Title>Factors associated with reintegration to normal living after subarachnoid hemorrhage.</Title><Authors>Carter BS, Buckley D, Ferraro R, Rordorf G, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2000 Jun</Date><IssueInfo>46(6):1326-33; discussion 1333-4</IssueInfo></Publication><Publication Source="PubMed" PMID="10764253"><URL>http://www.ncbi.nlm.nih.gov/pubmed/10764253</URL><PublicationReference>Micro-arteriovenous malformations: significant hemorrhage from small arteriovenous shunts. Neurosurgery. 2000 Apr; 46(4):811-8; discussion 818-9.</PublicationReference><Title>Micro-arteriovenous malformations: significant hemorrhage from small arteriovenous shunts.</Title><Authors>Stiver SI, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2000 Apr</Date><IssueInfo>46(4):811-8; discussion 818-9</IssueInfo></Publication><Publication Source="PubMed" PMID="10704755"><URL>http://www.ncbi.nlm.nih.gov/pubmed/10704755</URL><PublicationReference>Post-treatment with nicotinamide (vitamin B(3)) reduces the infarct volume following permanent focal cerebral ischemia in female Sprague-Dawley and Wistar rats. Neurosci Lett. 2000 Mar 10; 281(2-3):111-4.</PublicationReference><Title>Post-treatment with nicotinamide (vitamin B(3)) reduces the infarct volume following permanent focal cerebral ischemia in female Sprague-Dawley and Wistar rats.</Title><Authors>Sakakibara Y, Mitha AP, Ogilvy CS, Maynard KI. </Authors><Journal>Neurosci Lett</Journal><Date>2000 Mar 10</Date><IssueInfo>281(2-3):111-4</IssueInfo></Publication><Publication Source="PubMed" PMID="10944689"><URL>http://www.ncbi.nlm.nih.gov/pubmed/10944689</URL><PublicationReference>Selective use of extracranial-intracranial bypass as an adjunct to therapeutic internal carotid artery occlusion. 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AJNR Am J Neuroradiol. 1999 Apr; 20(4):694-6.</PublicationReference><Title>Reduction of aneurysm clip artifacts on CT angiograms: a technical note.</Title><Authors>Brown JH, Lustrin ES, Lev MH, Ogilvy CS, Taveras JM. </Authors><Journal>AJNR Am J Neuroradiol</Journal><Date>1999 Apr</Date><IssueInfo>20(4):694-6</IssueInfo></Publication><Publication Source="PubMed" PMID="10066858"><URL>http://www.ncbi.nlm.nih.gov/pubmed/10066858</URL><PublicationReference>Diffusion- and perfusion-weighted imaging in vasospasm after subarachnoid hemorrhage. Stroke. 1999 Mar; 30(3):599-605.</PublicationReference><Title>Diffusion- and perfusion-weighted imaging in vasospasm after subarachnoid hemorrhage.</Title><Authors>Rordorf G, Koroshetz WJ, Copen WA, Gonzalez G, Yamada K, Schaefer PW, Schwamm LH, Ogilvy CS, Sorensen AG. </Authors><Journal>Stroke</Journal><Date>1999 Mar</Date><IssueInfo>30(3):599-605</IssueInfo></Publication><Publication Source="PubMed" PMID="10027546"><URL>http://www.ncbi.nlm.nih.gov/pubmed/10027546</URL><PublicationReference>Nicotinamide reduces infarction up to two hours after the onset of permanent focal cerebral ischemia in Wistar rats. Neurosci Lett. 1999 Jan 04; 259(1):21-4.</PublicationReference><Title>Nicotinamide reduces infarction up to two hours after the onset of permanent focal cerebral ischemia in Wistar rats.</Title><Authors>Ayoub IA, Lee EJ, Ogilvy CS, Beal MF, Maynard KI. </Authors><Journal>Neurosci Lett</Journal><Date>1999 Jan 04</Date><IssueInfo>259(1):21-4</IssueInfo></Publication><Publication Source="PubMed" PMID="9855652"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9855652</URL><PublicationReference>Intramedullary cavernous malformations of the spinal cord. Neurosurg Clin N Am. 1999 Jan; 10(1):101-11.</PublicationReference><Title>Intramedullary cavernous malformations of the spinal cord.</Title><Authors>Ghogawala Z, Ogilvy CS. </Authors><Journal>Neurosurg Clin N Am</Journal><Date>1999 Jan</Date><IssueInfo>10(1):101-11</IssueInfo></Publication><Publication Source="PubMed" PMID="9894961"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9894961</URL><PublicationReference>Cardiac outcome in patients with subarachnoid hemorrhage and electrocardiographic abnormalities. Neurosurgery. 1999 Jan; 44(1):34-9; discussion 39-40.</PublicationReference><Title>Cardiac outcome in patients with subarachnoid hemorrhage and electrocardiographic abnormalities.</Title><Authors>Zaroff JG, Rordorf GA, Newell JB, Ogilvy CS, Levinson JR. </Authors><Journal>Neurosurgery</Journal><Date>1999 Jan</Date><IssueInfo>44(1):34-9; discussion 39-40</IssueInfo></Publication><Publication Source="PubMed" PMID="10461514"><URL>http://www.ncbi.nlm.nih.gov/pubmed/10461514</URL><PublicationReference>Cerebral vasospasm: current clinical management and results. Clin Neurosurg. 1999; 45:167-76.</PublicationReference><Title>Cerebral vasospasm: current clinical management and results.</Title><Authors>Zervas NT, Ogilvy CS. </Authors><Journal>Clin Neurosurg</Journal><Date>1999</Date><IssueInfo>45:167-76</IssueInfo></Publication><Publication Source="PubMed" PMID="9926863"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9926863</URL><PublicationReference>Magnesium plus mexiletine inhibit energy usage and protect retinas against ischemia. Neuroreport. 1998 Dec 21; 9(18):4141-4.</PublicationReference><Title>Magnesium plus mexiletine inhibit energy usage and protect retinas against ischemia.</Title><Authors>Maynard KI, Quiñones-Hinojosa A, Ogilvy CS. </Authors><Journal>Neuroreport</Journal><Date>1998 Dec 21</Date><IssueInfo>9(18):4141-4</IssueInfo></Publication><Publication Source="PubMed" PMID="9811928"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9811928</URL><PublicationReference>Multilocus linkage identifies two new loci for a mendelian form of stroke, cerebral cavernous malformation, at 7p15-13 and 3q25.2-27. Hum Mol Genet. 1998 Nov; 7(12):1851-8.</PublicationReference><Title>Multilocus linkage identifies two new loci for a mendelian form of stroke, cerebral cavernous malformation, at 7p15-13 and 3q25.2-27.</Title><Authors>Craig HD, Günel M, Cepeda O, Johnson EW, Ptacek L, Steinberg GK, Ogilvy CS, Berg MJ, Crawford SC, Scott RM, Steichen-Gersdorf E, Sabroe R, Kennedy CT, Mettler G, Beis MJ, Fryer A, Awad IA, Lifton RP. </Authors><Journal>Hum Mol Genet</Journal><Date>1998 Nov</Date><IssueInfo>7(12):1851-8</IssueInfo></Publication><Publication Source="PubMed" PMID="9738111"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9738111</URL><PublicationReference>Surgical treatment of vertebral and posterior inferior cerebellar artery aneurysms. Neurosurg Clin N Am. 1998 Oct; 9(4):851-60.</PublicationReference><Title>Surgical treatment of vertebral and posterior inferior cerebellar artery aneurysms.</Title><Authors>Ogilvy CS, Quinones-Hinojosa A. </Authors><Journal>Neurosurg Clin N Am</Journal><Date>1998 Oct</Date><IssueInfo>9(4):851-60</IssueInfo></Publication><Publication Source="PubMed" PMID="17895103"><URL>http://www.ncbi.nlm.nih.gov/pubmed/17895103</URL><PublicationReference>Avoiding stroke during cerebral arterial occlusion by temporarily blocking neuronal functions in the rabbit. J Stroke Cerebrovasc Dis. 1998 Sep-Oct; 7(5):287-95.</PublicationReference><Title>Avoiding stroke during cerebral arterial occlusion by temporarily blocking neuronal functions in the rabbit.</Title><Authors>Maynard KI, Kawamata T, Ogilvy CS, Perez F, Arango P, Ames A. </Authors><Journal>J Stroke Cerebrovasc Dis</Journal><Date>1998 Sep-Oct</Date><IssueInfo>7(5):287-95</IssueInfo></Publication><Publication Source="PubMed" PMID="9682841"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9682841</URL><PublicationReference>Acetylsalicylate administered during simulated ischemia reduces the recovery of neuronal function in the in vitro rabbit retina. Neurosci Lett. 1998 Jun 19; 249(2-3):159-62.</PublicationReference><Title>Acetylsalicylate administered during simulated ischemia reduces the recovery of neuronal function in the in vitro rabbit retina.</Title><Authors>Maynard KI, Arango PM, Chen D, Ogilvy CS. </Authors><Journal>Neurosci Lett</Journal><Date>1998 Jun 19</Date><IssueInfo>249(2-3):159-62</IssueInfo></Publication><Publication Source="PubMed" PMID="9632179"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9632179</URL><PublicationReference>Risks of surgical management for cavernous malformations of the nervous system. Neurosurgery. 1998 Jun; 42(6):1220-7; discussion 1227-8.</PublicationReference><Title>Risks of surgical management for cavernous malformations of the nervous system.</Title><Authors>Amin-Hanjani S, Ogilvy CS, Ojemann RG, Crowell RM. </Authors><Journal>Neurosurgery</Journal><Date>1998 Jun</Date><IssueInfo>42(6):1220-7; discussion 1227-8</IssueInfo></Publication><Publication Source="PubMed" PMID="9632180"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9632180</URL><PublicationReference>Stereotactic radiosurgery for cavernous malformations: Kjellberg's experience with proton beam therapy in 98 cases at the Harvard Cyclotron. Neurosurgery. 1998 Jun; 42(6):1229-36; discussion 1236-8.</PublicationReference><Title>Stereotactic radiosurgery for cavernous malformations: Kjellberg's experience with proton beam therapy in 98 cases at the Harvard Cyclotron.</Title><Authors>Amin-Hanjani S, Ogilvy CS, Candia GJ, Lyons S, Chapman PH. </Authors><Journal>Neurosurgery</Journal><Date>1998 Jun</Date><IssueInfo>42(6):1229-36; discussion 1236-8</IssueInfo></Publication><Publication Source="PubMed" PMID="9588539"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9588539</URL><PublicationReference>A proposed comprehensive grading system to predict outcome for surgical management of intracranial aneurysms. Neurosurgery. 1998 May; 42(5):959-68; discussion 968-70.</PublicationReference><Title>A proposed comprehensive grading system to predict outcome for surgical management of intracranial aneurysms.</Title><Authors>Ogilvy CS, Carter BS. </Authors><Journal>Neurosurgery</Journal><Date>1998 May</Date><IssueInfo>42(5):959-68; discussion 968-70</IssueInfo></Publication><Publication Source="PubMed" PMID="9526996"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9526996</URL><PublicationReference>Induced hypertension improves regional blood flow and protects against infarction during focal ischemia: time course of changes in blood flow measured by laser Doppler imaging. Neurosurgery. 1998 Mar; 42(3):617-24; discussion 624-5.</PublicationReference><Title>Induced hypertension improves regional blood flow and protects against infarction during focal ischemia: time course of changes in blood flow measured by laser Doppler imaging.</Title><Authors>Smrcka M, Ogilvy CS, Crow RJ, Maynard KI, Kawamata T, Ames A. </Authors><Journal>Neurosurgery</Journal><Date>1998 Mar</Date><IssueInfo>42(3):617-24; discussion 624-5</IssueInfo></Publication><Publication Source="PubMed" PMID="9472884"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9472884</URL><PublicationReference>Effects of induced hypertension on transcranial Doppler ultrasound velocities in patients after subarachnoid hemorrhage. Stroke. 1998 Feb; 29(2):422-8.</PublicationReference><Title>Effects of induced hypertension on transcranial Doppler ultrasound velocities in patients after subarachnoid hemorrhage.</Title><Authors>Manno EM, Gress DR, Schwamm LH, Diringer MN, Ogilvy CS. </Authors><Journal>Stroke</Journal><Date>1998 Feb</Date><IssueInfo>29(2):422-8</IssueInfo></Publication><Publication Source="PubMed" PMID="9432154" PMCID="PMC8337333"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9432154</URL><PublicationReference>Assessment of cerebral perfusion and arterial anatomy in hyperacute stroke with three-dimensional functional CT: early clinical results. AJNR Am J Neuroradiol. 1998 Jan; 19(1):29-37.</PublicationReference><Title>Assessment of cerebral perfusion and arterial anatomy in hyperacute stroke with three-dimensional functional CT: early clinical results.</Title><Authors>Hunter GJ, Hamberg LM, Ponzo JA, Huang-Hellinger FR, Morris PP, Rabinov J, Farkas J, Lev MH, Schaefer PW, Ogilvy CS, Schwamm L, Buonanno FS, Koroshetz WJ, Wolf GL, González RG. </Authors><Journal>AJNR Am J Neuroradiol</Journal><Date>1998 Jan</Date><IssueInfo>19(1):29-37</IssueInfo></Publication><Publication Source="PubMed" PMID="9341705"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9341705</URL><PublicationReference>Transcranial Doppler ultrasound criteria for hemodynamically significant internal carotid artery stenosis based on residual lumen diameter calculated from en bloc endarterectomy specimens. Stroke. 1997 Oct; 28(10):1966-71.</PublicationReference><Title>Transcranial Doppler ultrasound criteria for hemodynamically significant internal carotid artery stenosis based on residual lumen diameter calculated from en bloc endarterectomy specimens.</Title><Authors>Can U, Furie KL, Suwanwela N, Southern JF, Macdonald NR, Ogilvy CS, Buonanno FS, Koroshetz WJ, Kistler JP. </Authors><Journal>Stroke</Journal><Date>1997 Oct</Date><IssueInfo>28(10):1966-71</IssueInfo></Publication><Publication Source="PubMed" PMID="9275917"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9275917</URL><PublicationReference>Characterization of intracranial aneurysms using CT angiography. AJR Am J Roentgenol. 1997 Sep; 169(3):889-93.</PublicationReference><Title>Characterization of intracranial aneurysms using CT angiography.</Title><Authors>Brown JH, Lustrin ES, Lev MH, Ogilvy CS, Taveras JM. </Authors><Journal>AJR Am J Roentgenol</Journal><Date>1997 Sep</Date><IssueInfo>169(3):889-93</IssueInfo></Publication><Publication Source="PubMed" PMID="9303242"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9303242</URL><PublicationReference>Isovolemic hemodilution with purified and polymerized bovine hemoglobin in a rabbit model of focal cerebral ischemia. Chin J Physiol. 1997 Jun 30; 40(2):63-9.</PublicationReference><Title>Isovolemic hemodilution with purified and polymerized bovine hemoglobin in a rabbit model of focal cerebral ischemia.</Title><Authors>Chu D, Ogilvy CS. </Authors><Journal>Chin J Physiol</Journal><Date>1997 Jun 30</Date><IssueInfo>40(2):63-9</IssueInfo></Publication><Publication Source="PubMed" PMID="9179889"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9179889</URL><PublicationReference>One-year outcome after decompressive surgery for massive nondominant hemispheric infarction. Neurosurgery. 1997 Jun; 40(6):1168-75; discussion 1175-6.</PublicationReference><Title>One-year outcome after decompressive surgery for massive nondominant hemispheric infarction.</Title><Authors>Carter BS, Ogilvy CS, Candia GJ, Rosas HD, Buonanno F. </Authors><Journal>Neurosurgery</Journal><Date>1997 Jun</Date><IssueInfo>40(6):1168-75; discussion 1175-6</IssueInfo></Publication><Publication Source="PubMed" PMID="9179909"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9179909</URL><PublicationReference>Repair of an arterial perforation of the internal carotid artery using Hemashield wrapping with aneurysm clip reinforcement: technical note. Neurosurgery. 1997 Jun; 40(6):1312-4.</PublicationReference><Title>Repair of an arterial perforation of the internal carotid artery using Hemashield wrapping with aneurysm clip reinforcement: technical note.</Title><Authors>Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>1997 Jun</Date><IssueInfo>40(6):1312-4</IssueInfo></Publication><Publication Source="PubMed" PMID="9007860"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9007860</URL><PublicationReference>The safety and efficacy of cyclosporine A in the prevention of vasospasm in patients with Fisher grade 3 subarachnoid hemorrhages: a pilot study. Neurosurgery. 1997 Feb; 40(2):289-93.</PublicationReference><Title>The safety and efficacy of cyclosporine A in the prevention of vasospasm in patients with Fisher grade 3 subarachnoid hemorrhages: a pilot study.</Title><Authors>Manno EM, Gress DR, Ogilvy CS, Stone CM, Zervas NT. </Authors><Journal>Neurosurgery</Journal><Date>1997 Feb</Date><IssueInfo>40(2):289-93</IssueInfo></Publication><Publication Source="PubMed" PMID="9296453"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9296453</URL><PublicationReference>Increased levels of plasma cholesteryl ester hydroperoxides in patients with subarachnoid hemorrhage. Free Radic Biol Med. 1997; 23(5):762-7.</PublicationReference><Title>Increased levels of plasma cholesteryl ester hydroperoxides in patients with subarachnoid hemorrhage.</Title><Authors>Polidori MC, Frei B, Rordorf G, Ogilvy CS, Koroshetz WJ, Beal MF. </Authors><Journal>Free Radic Biol Med</Journal><Date>1997</Date><IssueInfo>23(5):762-7</IssueInfo></Publication><Publication Source="PubMed" PMID="9059711"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9059711</URL><PublicationReference>Treatment of dissecting basilar artery aneurysm by flow reversal. Acta Neurochir (Wien). 1997; 139(1):44-51.</PublicationReference><Title>Treatment of dissecting basilar artery aneurysm by flow reversal.</Title><Authors>Amin-Hanjani S, Ogilvy CS, Buonanno FS, Choi IS, Metz LN. </Authors><Journal>Acta Neurochir (Wien)</Journal><Date>1997</Date><IssueInfo>139(1):44-51</IssueInfo></Publication><Publication Source="PubMed" PMID="9479420"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9479420</URL><PublicationReference>Patients in poor neurological condition after subarachnoid hemorrhage: early management and long-term outcome. Acta Neurochir (Wien). 1997; 139(12):1143-51.</PublicationReference><Title>Patients in poor neurological condition after subarachnoid hemorrhage: early management and long-term outcome.</Title><Authors>Rordorf G, Ogilvy CS, Gress DR, Crowell RM, Choi IS. </Authors><Journal>Acta Neurochir (Wien)</Journal><Date>1997</Date><IssueInfo>139(12):1143-51</IssueInfo></Publication><Publication Source="PubMed" PMID="9051757"><URL>http://www.ncbi.nlm.nih.gov/pubmed/9051757</URL><PublicationReference>Nitric oxide produced during ischemia improves functional recovery in the rabbit retina. Neuroreport. 1996 Dec 20; 8(1):81-5.</PublicationReference><Title>Nitric oxide produced during ischemia improves functional recovery in the rabbit retina.</Title><Authors>Maynard KI, Chen D, Arango PM, Ogilvy CS. </Authors><Journal>Neuroreport</Journal><Date>1996 Dec 20</Date><IssueInfo>8(1):81-5</IssueInfo></Publication><Publication Source="PubMed" PMID="8956885"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8956885</URL><PublicationReference>Indications for carotid endarterectomy. Surg Neurol. 1996 Dec; 46(6):540-4.</PublicationReference><Title>Indications for carotid endarterectomy.</Title><Authors>Quest DO, Kindt GW, Holland MC, Spetzler RF, Sousa AA, Awad IA, Meyer FB, Ogilvy CS, Ojemann RG, Field EM. </Authors><Journal>Surg Neurol</Journal><Date>1996 Dec</Date><IssueInfo>46(6):540-4</IssueInfo></Publication><Publication Source="PubMed" PMID="8898799"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8898799</URL><PublicationReference>Carotid Doppler ultrasound criteria for internal carotid artery stenosis based on residual lumen diameter calculated from en bloc carotid endarterectomy specimens. Stroke. 1996 Nov; 27(11):1965-9.</PublicationReference><Title>Carotid Doppler ultrasound criteria for internal carotid artery stenosis based on residual lumen diameter calculated from en bloc carotid endarterectomy specimens.</Title><Authors>Suwanwela N, Can U, Furie KL, Southern JF, Macdonald NR, Ogilvy CS, Hansen CJ, Buonanno FS, Abbott WM, Koroshetz WJ, Kistler JP. </Authors><Journal>Stroke</Journal><Date>1996 Nov</Date><IssueInfo>27(11):1965-9</IssueInfo></Publication><Publication Source="PubMed" PMID="8880766"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8880766</URL><PublicationReference>Transfacial transclival approach for midline posterior circulation aneurysms. Neurosurgery. 1996 Oct; 39(4):736-41; discussion 742.</PublicationReference><Title>Transfacial transclival approach for midline posterior circulation aneurysms.</Title><Authors>Ogilvy CS, Barker FG, Joseph MP, Cheney ML, Swearingen B, Crowell RM. </Authors><Journal>Neurosurgery</Journal><Date>1996 Oct</Date><IssueInfo>39(4):736-41; discussion 742</IssueInfo></Publication><Publication Source="PubMed" PMID="8832680"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8832680</URL><PublicationReference>Distal basilar perforator artery aneurysm: case report. Neurosurgery. 1996 Aug; 39(2):393-6.</PublicationReference><Title>Distal basilar perforator artery aneurysm: case report.</Title><Authors>Ghogawala Z, Shumacher JM, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>1996 Aug</Date><IssueInfo>39(2):393-6</IssueInfo></Publication><Publication Source="PubMed" PMID="8727152"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8727152</URL><PublicationReference>Mild hypothermia, hypertension, and mannitol are protective against infarction during experimental intracranial temporary vessel occlusion. Neurosurgery. 1996 Jun; 38(6):1202-9; discussion 1209-10.</PublicationReference><Title>Mild hypothermia, hypertension, and mannitol are protective against infarction during experimental intracranial temporary vessel occlusion.</Title><Authors>Ogilvy CS, Chu D, Kaplan S. </Authors><Journal>Neurosurgery</Journal><Date>1996 Jun</Date><IssueInfo>38(6):1202-9; discussion 1209-10</IssueInfo></Publication><Publication Source="PubMed" PMID="8797165"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8797165</URL><PublicationReference>Recurrent chiasmal apoplexy due to cavernous malformation. J Neuroophthalmol. 1996 Jun; 16(2):99-106.</PublicationReference><Title>Recurrent chiasmal apoplexy due to cavernous malformation.</Title><Authors>Warner JE, Rizzo JF, Brown EW, Ogilvy CS. </Authors><Journal>J Neuroophthalmol</Journal><Date>1996 Jun</Date><IssueInfo>16(2):99-106</IssueInfo></Publication><Publication Source="PubMed" PMID="8622152"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8622152</URL><PublicationReference>Temporary vessel occlusion for aneurysm surgery: risk factors for stroke in patients protected by induced hypothermia and hypertension and intravenous mannitol administration. J Neurosurg. 1996 May; 84(5):785-91.</PublicationReference><Title>Temporary vessel occlusion for aneurysm surgery: risk factors for stroke in patients protected by induced hypothermia and hypertension and intravenous mannitol administration.</Title><Authors>Ogilvy CS, Carter BS, Kaplan S, Rich C, Crowell RM. </Authors><Journal>J Neurosurg</Journal><Date>1996 May</Date><IssueInfo>84(5):785-91</IssueInfo></Publication><Publication Source="PubMed" PMID="8609551"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8609551</URL><PublicationReference>Efficacy of prophylactic nimodipine for delayed ischemic deficit after subarachnoid hemorrhage: a metaanalysis. J Neurosurg. 1996 Mar; 84(3):405-14.</PublicationReference><Title>Efficacy of prophylactic nimodipine for delayed ischemic deficit after subarachnoid hemorrhage: a metaanalysis.</Title><Authors>Barker FG, Ogilvy CS. </Authors><Journal>J Neurosurg</Journal><Date>1996 Mar</Date><IssueInfo>84(3):405-14</IssueInfo></Publication><Publication Source="PubMed" PMID="8592240"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8592240</URL><PublicationReference>Guglielmi coils. J Neurosurg. 1996 Feb; 84(2):302-3.</PublicationReference><Title>Guglielmi coils.</Title><Authors>Ogilvy C, Choi IS. </Authors><Journal>J Neurosurg</Journal><Date>1996 Feb</Date><IssueInfo>84(2):302-3</IssueInfo></Publication><Publication Source="PubMed" PMID="7472568"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7472568</URL><PublicationReference>Mandibular subluxation as an adjunct to exposure of the distal internal carotid artery in endarterectomy surgery. Technical note. J Neurosurg. 1995 Nov; 83(5):926-8.</PublicationReference><Title>Mandibular subluxation as an adjunct to exposure of the distal internal carotid artery in endarterectomy surgery. Technical note.</Title><Authors>Frim DM, Padwa B, Buckley D, Crowell RM, Ogilvy CS. </Authors><Journal>J Neurosurg</Journal><Date>1995 Nov</Date><IssueInfo>83(5):926-8</IssueInfo></Publication><Publication Source="PubMed" PMID="8587690"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8587690</URL><PublicationReference>Aneurysmal and microaneurysmal "angiogram-negative" subarachnoid hemorrhage. Neurosurgery. 1995 Jul; 37(1):48-55.</PublicationReference><Title>Aneurysmal and microaneurysmal "angiogram-negative" subarachnoid hemorrhage.</Title><Authors>Tatter SB, Crowell RM, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>1995 Jul</Date><IssueInfo>37(1):48-55</IssueInfo></Publication><Publication Source="PubMed" PMID="7760188"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7760188</URL><PublicationReference>Radiosurgery of large AVMs. J Neurosurg. 1995 Jun; 82(6):1095-7.</PublicationReference><Title>Radiosurgery of large AVMs.</Title><Authors>Chapman PH, Thornton A, Ogilvy CS, Serago CF. </Authors><Journal>J Neurosurg</Journal><Date>1995 Jun</Date><IssueInfo>82(6):1095-7</IssueInfo></Publication><Publication Source="PubMed" PMID="7714609"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7714609</URL><PublicationReference>Patterns of peptide-containing perivascular nerves in the circle of Willis: their absence in intracranial arteriovenous malformations. J Neurosurg. 1995 May; 82(5):829-33.</PublicationReference><Title>Patterns of peptide-containing perivascular nerves in the circle of Willis: their absence in intracranial arteriovenous malformations.</Title><Authors>Maynard KI, Ogilvy CS. </Authors><Journal>J Neurosurg</Journal><Date>1995 May</Date><IssueInfo>82(5):829-33</IssueInfo></Publication><Publication Source="PubMed" PMID="7740585"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7740585</URL><PublicationReference>Acute lacunar stroke in association with angiogram-negative subarachnoid hemorrhage. Mechanistic implications of two cases. Stroke. 1995 May; 26(5):891-5.</PublicationReference><Title>Acute lacunar stroke in association with angiogram-negative subarachnoid hemorrhage. Mechanistic implications of two cases.</Title><Authors>Tatter SB, Buonanno FS, Ogilvy CS. </Authors><Journal>Stroke</Journal><Date>1995 May</Date><IssueInfo>26(5):891-5</IssueInfo></Publication><Publication Source="PubMed" PMID="7612868"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7612868</URL><PublicationReference>Nitric oxide modulates light-evoked compound action potentials in the intact rabbit retina. Neuroreport. 1995 Apr 19; 6(6):850-2.</PublicationReference><Title>Nitric oxide modulates light-evoked compound action potentials in the intact rabbit retina.</Title><Authors>Maynard KI, Yanez P, Ogilvy CS. </Authors><Journal>Neuroreport</Journal><Date>1995 Apr 19</Date><IssueInfo>6(6):850-2</IssueInfo></Publication><Publication Source="PubMed" PMID="7596521"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7596521</URL><PublicationReference>Mutism and cerebellar dysarthria after brain stem surgery: case report. Neurosurgery. 1995 Apr; 36(4):854-7.</PublicationReference><Title>Mutism and cerebellar dysarthria after brain stem surgery: case report.</Title><Authors>Frim DM, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>1995 Apr</Date><IssueInfo>36(4):854-7</IssueInfo></Publication><Publication Source="PubMed" PMID="7852261"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7852261</URL><PublicationReference>Recurrent manic episode 10 years after arteriovenous malformation resection. J Clin Psychiatry. 1995 Feb; 56(2):83.</PublicationReference><Title>Recurrent manic episode 10 years after arteriovenous malformation resection.</Title><Authors>Tatter SB, Ogilvy CS. </Authors><Journal>J Clin Psychiatry</Journal><Date>1995 Feb</Date><IssueInfo>56(2):83</IssueInfo></Publication><Publication Source="PubMed" PMID="7701417"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7701417</URL><PublicationReference>Surgical management of middle cerebral artery aneurysms: experience with transsylvian and superior temporal gyrus approaches. Surg Neurol. 1995 Jan; 43(1):15-22; discussion 22-4.</PublicationReference><Title>Surgical management of middle cerebral artery aneurysms: experience with transsylvian and superior temporal gyrus approaches.</Title><Authors>Ogilvy CS, Crowell RM, Heros RC. </Authors><Journal>Surg Neurol</Journal><Date>1995 Jan</Date><IssueInfo>43(1):15-22; discussion 22-4</IssueInfo></Publication><Publication Source="PubMed" PMID="7547453"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7547453</URL><PublicationReference>Reduction cranioplasty. Pediatr Neurosurg. 1995; 22(5):228-34.</PublicationReference><Title>Reduction cranioplasty.</Title><Authors>Winston KR, Ogilvy CS, McGrail K. </Authors><Journal>Pediatr Neurosurg</Journal><Date>1995</Date><IssueInfo>22(5):228-34</IssueInfo></Publication><Publication Source="PubMed" PMID="7965123"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7965123</URL><PublicationReference>Transethmoidal transsphenoidal approach for embolization of a carotid-cavernous fistula. Case report. J Neurosurg. 1994 Dec; 81(6):921-3.</PublicationReference><Title>Transethmoidal transsphenoidal approach for embolization of a carotid-cavernous fistula. Case report.</Title><Authors>Barker FG, Ogilvy CS, Chin JK, Joseph MP, Pile-Spellman J, Crowell RM. </Authors><Journal>J Neurosurg</Journal><Date>1994 Dec</Date><IssueInfo>81(6):921-3</IssueInfo></Publication><Publication Source="PubMed" PMID="7931596"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7931596</URL><PublicationReference>Third ventricular xanthogranulomas clinically and radiologically mimicking colloid cysts. Report of two cases. J Neurosurg. 1994 Oct; 81(4):605-9.</PublicationReference><Title>Third ventricular xanthogranulomas clinically and radiologically mimicking colloid cysts. Report of two cases.</Title><Authors>Tatter SB, Ogilvy CS, Golden JA, Ojemann RG, Louis DN. </Authors><Journal>J Neurosurg</Journal><Date>1994 Oct</Date><IssueInfo>81(4):605-9</IssueInfo></Publication><Publication Source="PubMed" PMID="7718176"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7718176</URL><PublicationReference>Incidentally discovered arteriovenous malformation of the anterior fossa dura. Br J Neurosurg. 1994; 8(6):755-9.</PublicationReference><Title>Incidentally discovered arteriovenous malformation of the anterior fossa dura.</Title><Authors>Kaplan SS, Ogilvy CS, Crowell RM. </Authors><Journal>Br J Neurosurg</Journal><Date>1994</Date><IssueInfo>8(6):755-9</IssueInfo></Publication><Publication Source="PubMed" PMID="8410229"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8410229</URL><PublicationReference>Intracranial vertebral arteriovenous fistula. Case report. J Neurosurg. 1993 Oct; 79(4):589-91.</PublicationReference><Title>Intracranial vertebral arteriovenous fistula. Case report.</Title><Authors>Halliday AL, Ogilvy CS, Crowell RM. </Authors><Journal>J Neurosurg</Journal><Date>1993 Oct</Date><IssueInfo>79(4):589-91</IssueInfo></Publication><Publication Source="PubMed" PMID="27768432"><URL>http://www.ncbi.nlm.nih.gov/pubmed/27768432</URL><PublicationReference>Cerebral Blood Flow and Ventral Aortic Blood Pressure Response During Elevation of Intracranial Pressure in Bluefish (Pomatomus saltatrix). Biol Bull. 1993 Oct; 185(2):323-324.</PublicationReference><Title>Cerebral Blood Flow and Ventral Aortic Blood Pressure Response During Elevation of Intracranial Pressure in Bluefish (Pomatomus saltatrix).</Title><Authors>Beiner JM, Ogilvy CS, DuBois AB. </Authors><Journal>Biol Bull</Journal><Date>1993 Oct</Date><IssueInfo>185(2):323-324</IssueInfo></Publication><Publication Source="PubMed" PMID="8362438"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8362438</URL><PublicationReference>Extracranial vertebral artery pseudoaneurysm presenting as subarachnoid hemorrhage. Stroke. 1993 Sep; 24(9):1397-9.</PublicationReference><Title>Extracranial vertebral artery pseudoaneurysm presenting as subarachnoid hemorrhage.</Title><Authors>Kaplan SS, Ogilvy CS, Gonzalez R, Gress D, Pile-Spellman J. </Authors><Journal>Stroke</Journal><Date>1993 Sep</Date><IssueInfo>24(9):1397-9</IssueInfo></Publication><Publication Source="PubMed" PMID="8367053"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8367053</URL><PublicationReference>Appearance of a cavernous hemangioma in the cerebral cortex after a biopsy of a deeper lesion. Neurosurgery. 1993 Aug; 33(2):307-9; discussion 309.</PublicationReference><Title>Appearance of a cavernous hemangioma in the cerebral cortex after a biopsy of a deeper lesion.</Title><Authors>Ogilvy CS, Moayeri N, Golden JA. </Authors><Journal>Neurosurgery</Journal><Date>1993 Aug</Date><IssueInfo>33(2):307-9; discussion 309</IssueInfo></Publication><Publication Source="PubMed" PMID="8322177"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8322177</URL><PublicationReference>Oculomotor nerve cavernous angioma in a patient with Roberts syndrome. Surg Neurol. 1993 Jul; 40(1):39-42.</PublicationReference><Title>Oculomotor nerve cavernous angioma in a patient with Roberts syndrome.</Title><Authors>Ogilvy CS, Pakzaban P, Lee JM. </Authors><Journal>Surg Neurol</Journal><Date>1993 Jul</Date><IssueInfo>40(1):39-42</IssueInfo></Publication><Publication Source="PubMed" PMID="8433159"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8433159</URL><PublicationReference>Posterior fossa craniotomy for lesions of the cerebellopontine angle. Technical note. J Neurosurg. 1993 Mar; 78(3):508-9.</PublicationReference><Title>Posterior fossa craniotomy for lesions of the cerebellopontine angle. Technical note.</Title><Authors>Ogilvy CS, Ojemann RG. </Authors><Journal>J Neurosurg</Journal><Date>1993 Mar</Date><IssueInfo>78(3):508-9</IssueInfo></Publication><Publication Source="PubMed" PMID="8112002"><URL>http://www.ncbi.nlm.nih.gov/pubmed/8112002</URL><PublicationReference>Management of cranial and spinal cavernous angiomas (honored guest lecture). Clin Neurosurg. 1993; 40:98-123.</PublicationReference><Title>Management of cranial and spinal cavernous angiomas (honored guest lecture).</Title><Authors>Ojemann RG, Crowell RM, Ogilvy CS. </Authors><Journal>Clin Neurosurg</Journal><Date>1993</Date><IssueInfo>40:98-123</IssueInfo></Publication><Publication Source="PubMed" PMID="1513428"><URL>http://www.ncbi.nlm.nih.gov/pubmed/1513428</URL><PublicationReference>Intramedullary cavernous angiomas of the spinal cord: clinical presentation, pathological features, and surgical management. Neurosurgery. 1992 Aug; 31(2):219-29; discussion 229-30.</PublicationReference><Title>Intramedullary cavernous angiomas of the spinal cord: clinical presentation, pathological features, and surgical management.</Title><Authors>Ogilvy CS, Louis DN, Ojemann RG. </Authors><Journal>Neurosurgery</Journal><Date>1992 Aug</Date><IssueInfo>31(2):219-29; discussion 229-30</IssueInfo></Publication><Publication Source="PubMed" PMID="1347665"><URL>http://www.ncbi.nlm.nih.gov/pubmed/1347665</URL><PublicationReference>Subdural empyema complicating bacterial meningitis in a child: enhancement of membranes with gadolinium on magnetic resonance imaging in a patient without enhancement on computed tomography. Surg Neurol. 1992 Feb; 37(2):138-41.</PublicationReference><Title>Subdural empyema complicating bacterial meningitis in a child: enhancement of membranes with gadolinium on magnetic resonance imaging in a patient without enhancement on computed tomography.</Title><Authors>Ogilvy CS, Chapman PH, McGrail K. </Authors><Journal>Surg Neurol</Journal><Date>1992 Feb</Date><IssueInfo>37(2):138-41</IssueInfo></Publication><Publication Source="PubMed" PMID="1472431"><URL>http://www.ncbi.nlm.nih.gov/pubmed/1472431</URL><PublicationReference>Is intracerebral schwannoma a developmental tumor of children and young adults? Case report and review. Pediatr Neurosurg. 1992; 18(4):190-4.</PublicationReference><Title>Is intracerebral schwannoma a developmental tumor of children and young adults? Case report and review.</Title><Authors>Frim DM, Ogilvy CS, Vonsattal JP, Chapman PH. </Authors><Journal>Pediatr Neurosurg</Journal><Date>1992</Date><IssueInfo>18(4):190-4</IssueInfo></Publication><Publication Source="PubMed" PMID="1595434" PMCID="PMC8331780"><URL>http://www.ncbi.nlm.nih.gov/pubmed/1595434</URL><PublicationReference>Spinal cord infarction and fibrocartilagenous emboli. AJNR Am J Neuroradiol. 1992 Jan-Feb; 13(1):155-60.</PublicationReference><Title>Spinal cord infarction and fibrocartilagenous emboli.</Title><Authors>Mikulis DJ, Ogilvy CS, McKee A, Davis KR, Ojeman RG. </Authors><Journal>AJNR Am J Neuroradiol</Journal><Date>1992 Jan-Feb</Date><IssueInfo>13(1):155-60</IssueInfo></Publication><Publication Source="PubMed" PMID="2072170"><URL>http://www.ncbi.nlm.nih.gov/pubmed/2072170</URL><PublicationReference>Clipping of an aneurysm 20 years after encasement with methyl methacrylate. Case report. J Neurosurg. 1991 Aug; 75(2):305-7.</PublicationReference><Title>Clipping of an aneurysm 20 years after encasement with methyl methacrylate. Case report.</Title><Authors>Ogilvy CS, Poletti CE. </Authors><Journal>J Neurosurg</Journal><Date>1991 Aug</Date><IssueInfo>75(2):305-7</IssueInfo></Publication><Publication Source="PubMed" PMID="2072420"><URL>http://www.ncbi.nlm.nih.gov/pubmed/2072420</URL><PublicationReference>An unusual sign of recovery after cerebral injury in male patients. J Trauma. 1991 Jul; 31(7):1017.</PublicationReference><Title>An unusual sign of recovery after cerebral injury in male patients.</Title><Authors>Ogilvy CS. </Authors><Journal>J Trauma</Journal><Date>1991 Jul</Date><IssueInfo>31(7):1017</IssueInfo></Publication><Publication Source="PubMed" PMID="1987092"><URL>http://www.ncbi.nlm.nih.gov/pubmed/1987092</URL><PublicationReference>Sprouting of corneal sensory fibers in rats treated at birth with capsaicin. Invest Ophthalmol Vis Sci. 1991 Jan; 32(1):112-21.</PublicationReference><Title>Sprouting of corneal sensory fibers in rats treated at birth with capsaicin.</Title><Authors>Ogilvy CS, Silverberg KR, Borges LF. </Authors><Journal>Invest Ophthalmol Vis Sci</Journal><Date>1991 Jan</Date><IssueInfo>32(1):112-21</IssueInfo></Publication><Publication Source="PubMed" PMID="1697903"><URL>http://www.ncbi.nlm.nih.gov/pubmed/1697903</URL><PublicationReference>Comparison of crystalloids and colloids for hemodilution in a model of focal cerebral ischemia. J Neurosurg. 1990 Oct; 73(4):576-84.</PublicationReference><Title>Comparison of crystalloids and colloids for hemodilution in a model of focal cerebral ischemia.</Title><Authors>Korosue K, Heros RC, Ogilvy CS, Hyodo A, Tu YK, Graichen R. </Authors><Journal>J Neurosurg</Journal><Date>1990 Oct</Date><IssueInfo>73(4):576-84</IssueInfo></Publication><Publication Source="PubMed" PMID="2211026"><URL>http://www.ncbi.nlm.nih.gov/pubmed/2211026</URL><PublicationReference>Changes in corneal innervation during postnatal development in normal rats and in rats treated at birth with capsaicin. Invest Ophthalmol Vis Sci. 1990 Sep; 31(9):1810-5.</PublicationReference><Title>Changes in corneal innervation during postnatal development in normal rats and in rats treated at birth with capsaicin.</Title><Authors>Ogilvy CS, Borges LF. </Authors><Journal>Invest Ophthalmol Vis Sci</Journal><Date>1990 Sep</Date><IssueInfo>31(9):1810-5</IssueInfo></Publication><Publication Source="PubMed" PMID="2191236"><URL>http://www.ncbi.nlm.nih.gov/pubmed/2191236</URL><PublicationReference>Radiation therapy for arteriovenous malformations: a review. Neurosurgery. 1990 May; 26(5):725-35.</PublicationReference><Title>Radiation therapy for arteriovenous malformations: a review.</Title><Authors>Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>1990 May</Date><IssueInfo>26(5):725-35</IssueInfo></Publication><Publication Source="PubMed" PMID="2589525"><URL>http://www.ncbi.nlm.nih.gov/pubmed/2589525</URL><PublicationReference>Postocclusive cerebral hyperemia is markedly attenuated by chronic trigeminal ganglionectomy. Am J Physiol. 1989 Nov; 257(5 Pt 2):H1736-9.</PublicationReference><Title>Postocclusive cerebral hyperemia is markedly attenuated by chronic trigeminal ganglionectomy.</Title><Authors>Moskowitz MA, Sakas DE, Wei EP, Kano M, Buzzi MG, Ogilvy C, Kontos HA. </Authors><Journal>Am J Physiol</Journal><Date>1989 Nov</Date><IssueInfo>257(5 Pt 2):H1736-9</IssueInfo></Publication><Publication Source="PubMed" PMID="2467410"><URL>http://www.ncbi.nlm.nih.gov/pubmed/2467410</URL><PublicationReference>Acute effects of isovolemic hemodilution with crystalloids in a canine model of focal cerebral ischemia. Stroke. 1989 Apr; 20(4):534-40.</PublicationReference><Title>Acute effects of isovolemic hemodilution with crystalloids in a canine model of focal cerebral ischemia.</Title><Authors>Hyodo A, Heros RC, Tu YK, Ogilvy C, Graichen R, Lagree K, Korosue K. </Authors><Journal>Stroke</Journal><Date>1989 Apr</Date><IssueInfo>20(4):534-40</IssueInfo></Publication><Publication Source="PubMed" PMID="2464677"><URL>http://www.ncbi.nlm.nih.gov/pubmed/2464677</URL><PublicationReference>Meningioangiomatosis in a patient without von Recklinghausen's disease. Case report. J Neurosurg. 1989 Mar; 70(3):483-5.</PublicationReference><Title>Meningioangiomatosis in a patient without von Recklinghausen's disease. Case report.</Title><Authors>Ogilvy CS, Chapman PH, Gray M, de la Monte SM. </Authors><Journal>J Neurosurg</Journal><Date>1989 Mar</Date><IssueInfo>70(3):483-5</IssueInfo></Publication><Publication Source="PubMed" PMID="2642943"><URL>http://www.ncbi.nlm.nih.gov/pubmed/2642943</URL><PublicationReference>A modified gold chloride technique for optimal impregnation of nerves within corneal whole mounts and dura of the albino rat. J Histochem Cytochem. 1989 Feb; 37(2):269-71.</PublicationReference><Title>A modified gold chloride technique for optimal impregnation of nerves within corneal whole mounts and dura of the albino rat.</Title><Authors>Silverberg KR, Ogilvy CS, Borges LF. </Authors><Journal>J Histochem Cytochem</Journal><Date>1989 Feb</Date><IssueInfo>37(2):269-71</IssueInfo></Publication><Publication Source="PubMed" PMID="2919186" PMCID="PMC286699"><URL>http://www.ncbi.nlm.nih.gov/pubmed/2919186</URL><PublicationReference>Trigeminovascular fibers increase blood flow in cortical gray matter by axon reflex-like mechanisms during acute severe hypertension or seizures. Proc Natl Acad Sci U S A. 1989 Feb; 86(4):1401-5.</PublicationReference><Title>Trigeminovascular fibers increase blood flow in cortical gray matter by axon reflex-like mechanisms during acute severe hypertension or seizures.</Title><Authors>Sakas DE, Moskowitz MA, Wei EP, Kontos HA, Kano M, Ogilvy CS. </Authors><Journal>Proc Natl Acad Sci U S A</Journal><Date>1989 Feb</Date><IssueInfo>86(4):1401-5</IssueInfo></Publication><Publication Source="PubMed" PMID="2463856"><URL>http://www.ncbi.nlm.nih.gov/pubmed/2463856</URL><PublicationReference>A quantitative analysis of the retrograde axonal transport of 4 different fluorescent dyes in peripheral sensory and motor neurons and lack of anterograde transport in the corticospinal system. Brain Res. 1988 Dec 20; 475(2):244-53.</PublicationReference><Title>A quantitative analysis of the retrograde axonal transport of 4 different fluorescent dyes in peripheral sensory and motor neurons and lack of anterograde transport in the corticospinal system.</Title><Authors>Ogilvy CS, Borges LF. </Authors><Journal>Brain Res</Journal><Date>1988 Dec 20</Date><IssueInfo>475(2):244-53</IssueInfo></Publication><Publication Source="PubMed" PMID="3193203"><URL>http://www.ncbi.nlm.nih.gov/pubmed/3193203</URL><PublicationReference>Angiographically occult intracranial vascular malformations. J Neurosurg. 1988 Dec; 69(6):960-2.</PublicationReference><Title>Angiographically occult intracranial vascular malformations.</Title><Authors>Ogilvy CS, Heros RC. </Authors><Journal>J Neurosurg</Journal><Date>1988 Dec</Date><IssueInfo>69(6):960-2</IssueInfo></Publication><Publication Source="PubMed" PMID="3059214"><URL>http://www.ncbi.nlm.nih.gov/pubmed/3059214</URL><PublicationReference>Embolism of cerebral tissue to lungs: report of two cases and review of the literature. Neurosurgery. 1988 Oct; 23(4):511-6.</PublicationReference><Title>Embolism of cerebral tissue to lungs: report of two cases and review of the literature.</Title><Authors>Ogilvy CS, McKee AC, Newman NJ, Donnelly SM, Kiwak KJ. </Authors><Journal>Neurosurgery</Journal><Date>1988 Oct</Date><IssueInfo>23(4):511-6</IssueInfo></Publication><Publication Source="PubMed" PMID="3404231"><URL>http://www.ncbi.nlm.nih.gov/pubmed/3404231</URL><PublicationReference>Angiographically occult arteriovenous malformations. J Neurosurg. 1988 Sep; 69(3):350-5.</PublicationReference><Title>Angiographically occult arteriovenous malformations.</Title><Authors>Ogilvy CS, Heros RC, Ojemann RG, New PF. </Authors><Journal>J Neurosurg</Journal><Date>1988 Sep</Date><IssueInfo>69(3):350-5</IssueInfo></Publication><Publication Source="PubMed" PMID="3374787"><URL>http://www.ncbi.nlm.nih.gov/pubmed/3374787</URL><PublicationReference>Treatment of symptomatic syringomyelia with a ventriculoperitoneal shunt: a case report with magnetic resonance scan correlation. Neurosurgery. 1988 Apr; 22(4):748-50.</PublicationReference><Title>Treatment of symptomatic syringomyelia with a ventriculoperitoneal shunt: a case report with magnetic resonance scan correlation.</Title><Authors>Ogilvy CS, Borges LF. </Authors><Journal>Neurosurgery</Journal><Date>1988 Apr</Date><IssueInfo>22(4):748-50</IssueInfo></Publication><Publication Source="PubMed" PMID="2907448"><URL>http://www.ncbi.nlm.nih.gov/pubmed/2907448</URL><PublicationReference>Pressor and hemodilution responses compensate for acute hemorrhage in bluefish. Comp Biochem Physiol A Comp Physiol. 1988; 91(4):807-13.</PublicationReference><Title>Pressor and hemodilution responses compensate for acute hemorrhage in bluefish.</Title><Authors>Ogilvy CS, Tremml PG, DuBois AB. </Authors><Journal>Comp Biochem Physiol A Comp Physiol</Journal><Date>1988</Date><IssueInfo>91(4):807-13</IssueInfo></Publication><Publication Source="PubMed" PMID="3435736"><URL>http://www.ncbi.nlm.nih.gov/pubmed/3435736</URL><PublicationReference>Effect of increased intracranial pressure on blood pressure, heart rate, respiration and catecholamine levels in neonatal and adult rabbits. Biol Neonate. 1987; 52(6):327-36.</PublicationReference><Title>Effect of increased intracranial pressure on blood pressure, heart rate, respiration and catecholamine levels in neonatal and adult rabbits.</Title><Authors>Ogilvy CS, DuBois AB. </Authors><Journal>Biol Neonate</Journal><Date>1987</Date><IssueInfo>52(6):327-36</IssueInfo></Publication><Publication Source="PubMed" PMID="2878791"><URL>http://www.ncbi.nlm.nih.gov/pubmed/2878791</URL><PublicationReference>Colloid osmotic pressure changes in human whole blood and separated plasma in vitro with changes in CO2 content and pH. Comp Biochem Physiol A Comp Physiol. 1986; 85(3):587-91.</PublicationReference><Title>Colloid osmotic pressure changes in human whole blood and separated plasma in vitro with changes in CO2 content and pH.</Title><Authors>Ogilvy CS, Wenger CB, Tremml PG, DuBois AB. </Authors><Journal>Comp Biochem Physiol A Comp Physiol</Journal><Date>1986</Date><IssueInfo>85(3):587-91</IssueInfo></Publication><Publication Source="PubMed" PMID="7108430"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7108430</URL><PublicationReference>Tail thrust of bluefish Pomatomus saltatrix at different buoyancies, speeds, and swimming angles. J Exp Biol. 1982 Jun; 98:105-17.</PublicationReference><Title>Tail thrust of bluefish Pomatomus saltatrix at different buoyancies, speeds, and swimming angles.</Title><Authors>Ogilvy CS, DuBois AB. </Authors><Journal>J Exp Biol</Journal><Date>1982 Jun</Date><IssueInfo>98:105-17</IssueInfo></Publication><Publication Source="PubMed" PMID="7058932"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7058932</URL><PublicationReference>Effect of tilting on blood pressure and interstitial fluid pressures of bluefish and smooth dogfish. Am J Physiol. 1982 Jan; 242(1):R70-6.</PublicationReference><Title>Effect of tilting on blood pressure and interstitial fluid pressures of bluefish and smooth dogfish.</Title><Authors>Ogilvy CS, DuBois AB. </Authors><Journal>Am J Physiol</Journal><Date>1982 Jan</Date><IssueInfo>242(1):R70-6</IssueInfo></Publication><Publication Source="PubMed" PMID="7229225"><URL>http://www.ncbi.nlm.nih.gov/pubmed/7229225</URL><PublicationReference>Effects of ascorbic acid and indomethacin on the airways of healthy male subjects with and without induced bronchoconstriction. J Allergy Clin Immunol. 1981 May; 67(5):363-9.</PublicationReference><Title>Effects of ascorbic acid and indomethacin on the airways of healthy male subjects with and without induced bronchoconstriction.</Title><Authors>Ogilvy CS, DuBois AB, Douglas JS. </Authors><Journal>J Allergy Clin Immunol</Journal><Date>1981 May</Date><IssueInfo>67(5):363-9</IssueInfo></Publication><Publication Source="PubMed" PMID="752062"><URL>http://www.ncbi.nlm.nih.gov/pubmed/752062</URL><PublicationReference>Decreased locomotor and investigatory exploration after denervation of catecholamine terminal fields in the forebrain of rats. J Exp Biol. 1978 Dec; 77:225-41.</PublicationReference><Title>Decreased locomotor and investigatory exploration after denervation of catecholamine terminal fields in the forebrain of rats.</Title><Authors>Dubois AB, Ogilvy CS. </Authors><Journal>J Exp Biol</Journal><Date>1978 Dec</Date><IssueInfo>77:225-41</IssueInfo></Publication></PublicationList><ConceptList><Concept><MeshHeader>Intracranial Aneurysm</MeshHeader><NumPubs>197</NumPubs><Weight>3.355376588829697e+001</Weight><FirstPubDate>1991-08-01T00:00:00</FirstPubDate><LastPubDate>2026-01-13T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Embolization, Therapeutic</MeshHeader><NumPubs>161</NumPubs><Weight>2.209057736428309e+001</Weight><FirstPubDate>1994-12-01T00:00:00</FirstPubDate><LastPubDate>2026-02-16T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Intracranial Arteriovenous Malformations</MeshHeader><NumPubs>55</NumPubs><Weight>1.031690334746554e+001</Weight><FirstPubDate>1988-09-01T00:00:00</FirstPubDate><LastPubDate>2025-11-20T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Endovascular Procedures</MeshHeader><NumPubs>88</NumPubs><Weight>1.022672347973963e+001</Weight><FirstPubDate>2010-04-16T00:00:00</FirstPubDate><LastPubDate>2026-01-13T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Hematoma, Subdural, Chronic</MeshHeader><NumPubs>29</NumPubs><Weight>8.835622948942339e+000</Weight><FirstPubDate>2017-12-15T00:00:00</FirstPubDate><LastPubDate>2025-10-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Aneurysm, Ruptured</MeshHeader><NumPubs>45</NumPubs><Weight>8.712335385375351e+000</Weight><FirstPubDate>1996-08-01T00:00:00</FirstPubDate><LastPubDate>2025-12-30T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Subarachnoid Hemorrhage</MeshHeader><NumPubs>90</NumPubs><Weight>8.660300913216922e+000</Weight><FirstPubDate>1991-08-01T00:00:00</FirstPubDate><LastPubDate>2025-11-15T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Cerebral Revascularization</MeshHeader><NumPubs>28</NumPubs><Weight>7.890243354004605e+000</Weight><FirstPubDate>2000-01-01T00:00:00</FirstPubDate><LastPubDate>2026-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Moyamoya Disease</MeshHeader><NumPubs>21</NumPubs><Weight>7.174900212382721e+000</Weight><FirstPubDate>2002-04-01T00:00:00</FirstPubDate><LastPubDate>2026-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Meningeal Arteries</MeshHeader><NumPubs>29</NumPubs><Weight>7.077824630578140e+000</Weight><FirstPubDate>1994-12-01T00:00:00</FirstPubDate><LastPubDate>2025-10-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Cerebral Angiography</MeshHeader><NumPubs>94</NumPubs><Weight>6.748136859786134e+000</Weight><FirstPubDate>1988-09-01T00:00:00</FirstPubDate><LastPubDate>2025-12-30T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Neurosurgical Procedures</MeshHeader><NumPubs>44</NumPubs><Weight>4.954414273436084e+000</Weight><FirstPubDate>2001-01-01T00:00:00</FirstPubDate><LastPubDate>2025-11-10T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Stents</MeshHeader><NumPubs>51</NumPubs><Weight>4.780374199187522e+000</Weight><FirstPubDate>2010-03-01T00:00:00</FirstPubDate><LastPubDate>2026-01-13T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Central Nervous System Vascular 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Computer-Assisted</MeshHeader><NumPubs>1</NumPubs><Weight>3.151168317789671e-003</Weight><FirstPubDate>1996-11-01T00:00:00</FirstPubDate><LastPubDate>1996-11-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Infant, Newborn</MeshHeader><NumPubs>1</NumPubs><Weight>3.016202427799953e-003</Weight><FirstPubDate>2003-08-01T00:00:00</FirstPubDate><LastPubDate>2003-08-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Heart Failure</MeshHeader><NumPubs>1</NumPubs><Weight>1.686632619303724e-003</Weight><FirstPubDate>1999-01-01T00:00:00</FirstPubDate><LastPubDate>1999-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Biomarkers, Tumor</MeshHeader><NumPubs>1</NumPubs><Weight>1.311265676537574e-003</Weight><FirstPubDate>1992-01-01T00:00:00</FirstPubDate><LastPubDate>1992-01-01T00:00:00</LastPubDate></Concept></ConceptList></Person><Person PersonID="66561"><Name><FullName>Efstathios Papavassiliou, M.D.</FullName><FirstName>Efstathios</FirstName><LastName>Papavassiliou</LastName></Name><Address><Address1>Beth Israel Deaconess Med Ctr</Address1><Address2>Neurosurgery Ste 3B</Address2><Address3>110 Francis Street</Address3><Address4>Boston, MA 02215</Address4><Telephone>617/632-7246</Telephone><Fax /><Latitude>42.33700000000000</Latitude><Longitude>-71.11000000000000</Longitude></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName>Neurosurgery</DivisionName><JobTitle>Assistant Professor of Neurosurgery</JobTitle><FacultyType FacultyTypeSort="2">Assistant Professor</FacultyType></Affiliation></AffiliationList><PublicationList><Publication Source="PubMed" PMID="41280303" PMCID="PMC12639625"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41280303</URL><PublicationReference>Predicting rehabilitation discharge after lumbar decompression: Impact of age and preoperative assistive device use. N Am Spine Soc J. 2025 Dec; 24:100815.</PublicationReference><Title>Predicting rehabilitation discharge after lumbar decompression: Impact of age and preoperative assistive device use.</Title><Authors>Avery M, Terry F, Powers AY, Yazdanian F, Lee C, Pandya P, Stippler M, Papavassiliou E, Moses ZB. </Authors><Journal>N Am Spine Soc J</Journal><Date>2025 Dec</Date><IssueInfo>24:100815</IssueInfo></Publication><Publication Source="PubMed" PMID="40800687" PMCID="PMC12340601"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40800687</URL><PublicationReference>Editorial: Surgical management of spine and spinal cord metastasis. Front Neurol. 2025; 16:1639941.</PublicationReference><Title>Editorial: Surgical management of spine and spinal cord metastasis.</Title><Authors>Motiei-Langroudi R, Papavassiliou E, Grossbach A, Hofler RC. </Authors><Journal>Front Neurol</Journal><Date>2025</Date><IssueInfo>16:1639941</IssueInfo></Publication><Publication Source="PubMed" PMID="40387334"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40387334</URL><PublicationReference>Comparative Effectiveness of Conservative Management Versus Surgical Fixation in Acute Type II Odontoid Fractures. 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Deaconess Medical Center</Address1><Address2> </Address2><Address3>330 Brookline Ave</Address3><Address4>Boston, MA 02215</Address4><Telephone>617/632-9511</Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Clinical Fellow in Neurosurgery</JobTitle><FacultyType FacultyTypeSort="6">Fellow or Post Doc</FacultyType></Affiliation></AffiliationList><PublicationList><Publication Source="PubMed" PMID="41280303" PMCID="PMC12639625"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41280303</URL><PublicationReference>Predicting rehabilitation discharge after lumbar decompression: Impact of age and preoperative assistive device use. N Am Spine Soc J. 2025 Dec; 24:100815.</PublicationReference><Title>Predicting rehabilitation discharge after lumbar decompression: Impact of age and preoperative assistive device use.</Title><Authors>Avery M, Terry F, Powers AY, Yazdanian F, Lee C, Pandya P, Stippler M, Papavassiliou E, Moses ZB. </Authors><Journal>N Am Spine Soc J</Journal><Date>2025 Dec</Date><IssueInfo>24:100815</IssueInfo></Publication><Publication Source="PubMed" PMID="38770467" PMCID="PMC11104278"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38770467</URL><PublicationReference>Educational Limitations of ChatGPT in Neurosurgery Board Preparation. Cureus. 2024 Apr; 16(4):e58639.</PublicationReference><Title>Educational Limitations of ChatGPT in Neurosurgery Board Preparation.</Title><Authors>Powers AY, McCandless MG, Taussky P, Vega RA, Shutran MS, Moses ZB. </Authors><Journal>Cureus</Journal><Date>2024 Apr</Date><IssueInfo>16(4):e58639</IssueInfo></Publication><Publication Source="PubMed" PMID="38738035" PMCID="PMC11081786"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38738035</URL><PublicationReference>Left-Handed Palming of the Needle Driver: A Technical Report for Surgical Trainees. Cureus. 2024 Apr; 16(4):e57931.</PublicationReference><Title>Left-Handed Palming of the Needle Driver: A Technical Report for Surgical Trainees.</Title><Authors>Powers AY, Rosenthal AE, Mackel CE, Riordan CP, Moses ZB. </Authors><Journal>Cureus</Journal><Date>2024 Apr</Date><IssueInfo>16(4):e57931</IssueInfo></Publication><Publication Source="PubMed" PMID="38403013"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38403013</URL><PublicationReference>Trends in Demographic and Geographic Disparities in Stroke Mortality Among Older Adults in the United States. World Neurosurg. 2024 05; 185:e620-e630.</PublicationReference><Title>Trends in Demographic and Geographic Disparities in Stroke Mortality Among Older Adults in the United States.</Title><Authors>McCandless MG, Powers AY, Baker KE, Strickland AE. </Authors><Journal>World Neurosurg</Journal><Date>2024 05</Date><IssueInfo>185:e620-e630</IssueInfo></Publication><Publication Source="PubMed" PMID="37707420"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37707420</URL><PublicationReference>Anterior Cervical Discectomy and Fusion With Structural Allograft is Associated With Lower Postoperative Health Care Utilization and Reoperations Compared With Cage Implants. Oper Neurosurg. 2024 Jan 01; 26(1):16-21.</PublicationReference><Title>Anterior Cervical Discectomy and Fusion With Structural Allograft is Associated With Lower Postoperative Health Care Utilization and Reoperations Compared With Cage Implants.</Title><Authors>Powers AY, Nin DZ, Chen YW, Niu R, Kim DH, Chang DC, Hwang RW. </Authors><Journal>Oper Neurosurg</Journal><Date>2024 Jan 01</Date><IssueInfo>26(1):16-21</IssueInfo></Publication><Publication Source="PubMed" PMID="37707418"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37707418</URL><PublicationReference>Intraoperative Closed Reduction of Traumatic Lateraloptosis: Operative Nuances. Oper Neurosurg. 2024 Jan 01; 26(1):86-91.</PublicationReference><Title>Intraoperative Closed Reduction of Traumatic Lateraloptosis: Operative Nuances.</Title><Authors>Powers AY, Garcia A, Nwajei F, Binello E. </Authors><Journal>Oper Neurosurg</Journal><Date>2024 Jan 01</Date><IssueInfo>26(1):86-91</IssueInfo></Publication><Publication Source="PubMed" PMID="37660894"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37660894</URL><PublicationReference>Public health insurance, frailty, and lack of home support predict rehab discharge following elective anterior cervical discectomy and fusion. Spine J. 2023 12; 23(12):1830-1837.</PublicationReference><Title>Public health insurance, frailty, and lack of home support predict rehab discharge following elective anterior cervical discectomy and fusion.</Title><Authors>Powers AY, Chang DC, Stippler M, Papavassiliou E, Moses ZB. </Authors><Journal>Spine J</Journal><Date>2023 12</Date><IssueInfo>23(12):1830-1837</IssueInfo></Publication><Publication Source="PubMed" PMID="36701570"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36701570</URL><PublicationReference>Complications Related to Deep Brain Stimulation Lead Implantation: A Single-Surgeon Case Series. Oper Neurosurg. 2023 03 01; 24(3):276-282.</PublicationReference><Title>Complications Related to Deep Brain Stimulation Lead Implantation: A Single-Surgeon Case Series.</Title><Authors>Powers AY, Nguyen M, Phillips K, Mackel CE, Alterman RL. </Authors><Journal>Oper Neurosurg</Journal><Date>2023 03 01</Date><IssueInfo>24(3):276-282</IssueInfo></Publication><Publication Source="PubMed" PMID="30797192"><URL>http://www.ncbi.nlm.nih.gov/pubmed/30797192</URL><PublicationReference>Predicting mortality in traumatic intracranial hemorrhage. 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Status Disparities</MeshHeader><NumPubs>1</NumPubs><Weight>2.203868533914468e-002</Weight><FirstPubDate>2024-02-24T00:00:00</FirstPubDate><LastPubDate>2024-02-24T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Magnetic Resonance Imaging</MeshHeader><NumPubs>1</NumPubs><Weight>2.063301952051593e-002</Weight><FirstPubDate>2018-08-01T00:00:00</FirstPubDate><LastPubDate>2018-08-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Brain</MeshHeader><NumPubs>1</NumPubs><Weight>2.041402526514446e-002</Weight><FirstPubDate>2018-01-05T00:00:00</FirstPubDate><LastPubDate>2018-01-05T00:00:00</LastPubDate></Concept><Concept><MeshHeader>COVID-19</MeshHeader><NumPubs>1</NumPubs><Weight>6.371762234158778e-003</Weight><FirstPubDate>2024-02-24T00:00:00</FirstPubDate><LastPubDate>2024-02-24T00:00:00</LastPubDate></Concept></ConceptList></Person><Person PersonID="214848"><Name><FullName>Coleman Riordan, M.D.</FullName><FirstName>Coleman</FirstName><LastName>Riordan</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2> </Address2><Address3>330 Brookline Ave</Address3><Address4>Boston, MA 02215</Address4><Telephone> </Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Clinical Fellow in Neurosurgery</JobTitle><FacultyType FacultyTypeSort="6">Fellow or Post Doc</FacultyType></Affiliation></AffiliationList><PublicationList><Publication Source="PubMed" PMID="40889337" PMCID="PMC12401954"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40889337</URL><PublicationReference>Reversible edema after radiosurgery for arteriovenous malformations (AVMs): Inflow and outflow imbalance. J Cereb Blood Flow Metab. 2025 Dec; 45(12):2393-2403.</PublicationReference><Title>Reversible edema after radiosurgery for arteriovenous malformations (AVMs): Inflow and outflow imbalance.</Title><Authors>Sconzo D, Ramirez-Velandia F, Enriquez-Marulanda A, Riordan CP, Muram S, Aghdam N, Taussky P, Ogilvy CS. </Authors><Journal>J Cereb Blood Flow Metab</Journal><Date>2025 Dec</Date><IssueInfo>45(12):2393-2403</IssueInfo></Publication><Publication Source="PubMed" PMID="40578008"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40578008</URL><PublicationReference>Impact of smoking on occlusion rates following stereotactic radiosurgery for Spetzler Martin grade I-III brain arteriovenous malformations - A propensity score matched analysis of the MISTA consortium. J Clin Neurosci. 2025 Sep; 139:111411.</PublicationReference><Title>Impact of smoking on occlusion rates following stereotactic radiosurgery for Spetzler Martin grade I-III brain arteriovenous malformations - A propensity score matched analysis of the MISTA consortium.</Title><Authors>Sconzo D, Ramirez-Velandia F, Muram S, Enriquez-Marulanda A, Riordan CP, Adeeb N, Musmar B, Salim HA, Kandregula S, Dmywtriw AA, Abdelsalam A, Ataoglu C, Erginoglu U, Kondziolka D, Aslan A, Naamani KE, Sheehan J, Park MS, Zeineddine HA, Ironside N, Kumbhare D, Gummadi S, Essibayi MA, Tos SM, Keles A, Rezai A, Pöppe J, Sen RD, Baskaya MK, Griessenauer CJ, Jabbour P, Tjoumakaris SI, Atallah E, Riina H, Abushehab A, Burkhardt JK, Starke RM, Sekhar LN, Levitt MR, Altschul DJ, Haranhalli N, McAvoy M, Abla A, Stapleton C, Koch M, Srinivasan VM, Chen PR, Blackburn S, Kim LJ, Choudhri O, Pukenas B, Mantziaris G, O'Leary S, Kan P, Li YL, Simonato D, Bulsara K, Fuschi M, Alaraj A, Hanalioglu S, Patel A, Savardekar A, Cuellar H, Lawton M, Morcos J, Guthikonda B, Taussky P, Ogilvy CS. </Authors><Journal>J Clin Neurosci</Journal><Date>2025 Sep</Date><IssueInfo>139:111411</IssueInfo></Publication><Publication Source="PubMed" PMID="39608493"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39608493</URL><PublicationReference>Stroke-Related Outcomes in Moyamoya Disease Compared with Moyamoya Syndromes: A Propensity-Matched Analysis. World Neurosurg. 2025 02; 194:123521.</PublicationReference><Title>Stroke-Related Outcomes in Moyamoya Disease Compared with Moyamoya Syndromes: A Propensity-Matched Analysis.</Title><Authors>Wadhwa A, Han K, Ramirez-Velandia F, Alwakaa O, Riordan C, McNeil E, Granstein JH, Taussky P, Enriquez-Marulanda A, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2025 02</Date><IssueInfo>194:123521</IssueInfo></Publication><Publication Source="PubMed" PMID="38856202" PMCID="PMC11540431"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38856202</URL><PublicationReference>Self-Trephination in Cranial Excoriation Disorder. Neurosurgery. 2024 Dec 01; 95(6):e161-e166.</PublicationReference><Title>Self-Trephination in Cranial Excoriation Disorder.</Title><Authors>Riordan CP, Owusu-Adjei B, Daci R, Phelan A, Mietus CJ, Kosarchuk J, Lambert W, Qureshi HM, Lim JC, Mihalek O, Li D, Sorour O, Homsy C, Kryzanski J, Aulet R, Johnson MD. </Authors><Journal>Neurosurgery</Journal><Date>2024 Dec 01</Date><IssueInfo>95(6):e161-e166</IssueInfo></Publication><Publication Source="PubMed" PMID="38738035" PMCID="PMC11081786"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38738035</URL><PublicationReference>Left-Handed Palming of the Needle Driver: A Technical Report for Surgical Trainees. 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J Neurosurg Pediatr. 2018 09; 22(3):244-250.</PublicationReference><Title>Acute fatal hemorrhage from previously undiagnosed cerebral arteriovenous malformations in children: a single-center experience.</Title><Authors>Riordan CP, Orbach DB, Smith ER, Scott RM. </Authors><Journal>J Neurosurg Pediatr</Journal><Date>2018 09</Date><IssueInfo>22(3):244-250</IssueInfo></Publication></PublicationList><ConceptList><Concept><MeshHeader>Craniosynostoses</MeshHeader><NumPubs>3</NumPubs><Weight>1.113873720808923e+000</Weight><FirstPubDate>2019-11-01T00:00:00</FirstPubDate><LastPubDate>2022-04-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Trephining</MeshHeader><NumPubs>1</NumPubs><Weight>8.638142830872830e-001</Weight><FirstPubDate>2024-06-10T00:00:00</FirstPubDate><LastPubDate>2024-06-10T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Intracranial Arteriovenous 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States</MeshHeader><NumPubs>1</NumPubs><Weight>5.531715911464297e-003</Weight><FirstPubDate>2020-05-03T00:00:00</FirstPubDate><LastPubDate>2020-05-03T00:00:00</LastPubDate></Concept></ConceptList></Person><Person PersonID="224840"><Name><FullName>Hasitha Milan Samarage, M.B.,B.S.</FullName><FirstName>Hasitha</FirstName><LastName>Samarage</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2> </Address2><Address3>330 Brookline Ave</Address3><Address4>Boston, MA 02215</Address4><Telephone>617/632-7246</Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Clinical Fellow in Neurosurgery</JobTitle><FacultyType FacultyTypeSort="6">Fellow or Post Doc</FacultyType></Affiliation></AffiliationList><PublicationList><Publication Source="PubMed" PMID="39571893"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39571893</URL><PublicationReference>Anatomical Targeting of the Superior Cervical Ganglion on Computed Tomography Imaging for Guidance of Endovascular Transmural Intervention. World Neurosurg. 2025 02; 194:123461.</PublicationReference><Title>Anatomical Targeting of the Superior Cervical Ganglion on Computed Tomography Imaging for Guidance of Endovascular Transmural Intervention.</Title><Authors>Qi X, Kim WJ, Samarage HM, Goel K, Zarrin D, Nael K, Wang AC, Johnson J, Colby GP. </Authors><Journal>World Neurosurg</Journal><Date>2025 02</Date><IssueInfo>194:123461</IssueInfo></Publication><Publication Source="PubMed" PMID="37500479" PMCID="PMC10818000"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37500479</URL><PublicationReference>Novel endovascular transmural technique for pharmacological block of superior cervical ganglion prevents sympathetic-mediated cerebral vasospasm. J Neurointerv Surg. 2024 Jul 16; 16(8):770-774.</PublicationReference><Title>Novel endovascular transmural technique for pharmacological block of superior cervical ganglion prevents sympathetic-mediated cerebral vasospasm.</Title><Authors>Kim WJ, Samarage HM, Jafari M, Zarrin D, Goel K, Qi X, Wang AC, Johnson J, Colby GP. </Authors><Journal>J Neurointerv Surg</Journal><Date>2024 Jul 16</Date><IssueInfo>16(8):770-774</IssueInfo></Publication><Publication Source="PubMed" PMID="36576065"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36576065</URL><PublicationReference>Epidural empyema following nBCA embolization of the middle meningeal artery for the treatment of a chronic subdural hematoma. Br J Neurosurg. 2025 Apr; 39(2):228-231.</PublicationReference><Title>Epidural empyema following nBCA embolization of the middle meningeal artery for the treatment of a chronic subdural hematoma.</Title><Authors>Samarage HM, Harary M, Morales J, Kaneko N, Kim W. </Authors><Journal>Br J Neurosurg</Journal><Date>2025 Apr</Date><IssueInfo>39(2):228-231</IssueInfo></Publication><Publication Source="PubMed" PMID="36637306"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36637306</URL><PublicationReference>Endoscope-Assisted Pedicled Maxillary Artery to Middle Cerebral Artery Bypass: An Anatomic Feasibility Study. Oper Neurosurg. 2023 02 01; 24(2):209-220.</PublicationReference><Title>Endoscope-Assisted Pedicled Maxillary Artery to Middle Cerebral Artery Bypass: An Anatomic Feasibility Study.</Title><Authors>Samarage HM, Kim WJ, Zarrin DA, Goel K, Kim W, Bergsneider M, Wang MB, Suh JD, Lee JT, Colby GP, Johnson JN, Peacock WJ, Wang AC. </Authors><Journal>Oper Neurosurg</Journal><Date>2023 02 01</Date><IssueInfo>24(2):209-220</IssueInfo></Publication><Publication Source="PubMed" PMID="36319086" PMCID="PMC10149561"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36319086</URL><PublicationReference>Endovascular transmural access to carotid artery perivascular tissues: safety assessment of a novel technique. J Neurointerv Surg. 2023 Oct; 15(10):1007-1013.</PublicationReference><Title>Endovascular transmural access to carotid artery perivascular tissues: safety assessment of a novel technique.</Title><Authors>Kim WJ, Samarage HM, Zarrin D, Goel K, Wang AC, Johnson J, Nael K, Colby GP. </Authors><Journal>J Neurointerv Surg</Journal><Date>2023 Oct</Date><IssueInfo>15(10):1007-1013</IssueInfo></Publication><Publication Source="PubMed" PMID="36447624" PMCID="PMC9703949"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36447624</URL><PublicationReference>Superior cervical ganglion stimulation results in potent cerebral vasoconstriction in swine. J Vasc Interv Neurol. 2022 Jun; 13(1):35-41.</PublicationReference><Title>Superior cervical ganglion stimulation results in potent cerebral vasoconstriction in swine.</Title><Authors>Kim WJ, Samarage HM, Zarrin D, Goel K, Chan C, Qi X, Wang A, Shivkumar K, Ardell J, Colby GP. </Authors><Journal>J Vasc Interv Neurol</Journal><Date>2022 Jun</Date><IssueInfo>13(1):35-41</IssueInfo></Publication><Publication Source="PubMed" PMID="35551167"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35551167</URL><PublicationReference>The "Bright Falx" Sign-Midline Embolic Penetration Is Associated With Faster Resolution of Chronic Subdural Hematoma After Middle Meningeal Artery Embolization: A Case Series. Neurosurgery. 2022 09 01; 91(3):389-398.</PublicationReference><Title>The "Bright Falx" Sign-Midline Embolic Penetration Is Associated With Faster Resolution of Chronic Subdural Hematoma After Middle Meningeal Artery Embolization: A Case Series.</Title><Authors>Samarage HM, Kim WJ, Zarrin D, Goel K, Chin-Hsiu Wang A, Johnson J, Kaneko N, Nour M, Szeder V, Tateshima S, Jahan R, Duckwiler G, Colby GP. </Authors><Journal>Neurosurgery</Journal><Date>2022 09 01</Date><IssueInfo>91(3):389-398</IssueInfo></Publication><Publication Source="PubMed" PMID="27550527"><URL>http://www.ncbi.nlm.nih.gov/pubmed/27550527</URL><PublicationReference>Obesity and posterior spinal fat content: impact on complications in non-complex lumbar spine surgery. 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Kingdom</MeshHeader><NumPubs>1</NumPubs><Weight>1.911917277617323e-002</Weight><FirstPubDate>2016-08-23T00:00:00</FirstPubDate><LastPubDate>2016-08-23T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Male</MeshHeader><NumPubs>3</NumPubs><Weight>1.890130027256383e-002</Weight><FirstPubDate>2016-08-23T00:00:00</FirstPubDate><LastPubDate>2024-12-06T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Overweight</MeshHeader><NumPubs>1</NumPubs><Weight>1.397062159367344e-002</Weight><FirstPubDate>2016-08-23T00:00:00</FirstPubDate><LastPubDate>2016-08-23T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Length of Stay</MeshHeader><NumPubs>1</NumPubs><Weight>1.159596073315314e-002</Weight><FirstPubDate>2016-08-23T00:00:00</FirstPubDate><LastPubDate>2016-08-23T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Animals</MeshHeader><NumPubs>2</NumPubs><Weight>1.075340207001493e-002</Weight><FirstPubDate>2022-11-01T00:00:00</FirstPubDate><LastPubDate>2024-07-16T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Tomography, X-Ray Computed</MeshHeader><NumPubs>1</NumPubs><Weight>1.067872071272562e-002</Weight><FirstPubDate>2024-12-06T00:00:00</FirstPubDate><LastPubDate>2024-12-06T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Aged, 80 and over</MeshHeader><NumPubs>1</NumPubs><Weight>9.147056551935292e-003</Weight><FirstPubDate>2024-12-06T00:00:00</FirstPubDate><LastPubDate>2024-12-06T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Body Mass Index</MeshHeader><NumPubs>1</NumPubs><Weight>8.991294918613078e-003</Weight><FirstPubDate>2016-08-23T00:00:00</FirstPubDate><LastPubDate>2016-08-23T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Incidence</MeshHeader><NumPubs>1</NumPubs><Weight>8.422612558918732e-003</Weight><FirstPubDate>2016-08-23T00:00:00</FirstPubDate><LastPubDate>2016-08-23T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Postoperative Complications</MeshHeader><NumPubs>1</NumPubs><Weight>6.169784821134719e-003</Weight><FirstPubDate>2016-08-23T00:00:00</FirstPubDate><LastPubDate>2016-08-23T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Female</MeshHeader><NumPubs>2</NumPubs><Weight>5.526641961462197e-003</Weight><FirstPubDate>2016-08-23T00:00:00</FirstPubDate><LastPubDate>2024-12-06T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Adult</MeshHeader><NumPubs>1</NumPubs><Weight>4.802486689189877e-003</Weight><FirstPubDate>2024-12-06T00:00:00</FirstPubDate><LastPubDate>2024-12-06T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Magnetic Resonance Imaging</MeshHeader><NumPubs>1</NumPubs><Weight>4.509736766354980e-003</Weight><FirstPubDate>2016-08-23T00:00:00</FirstPubDate><LastPubDate>2016-08-23T00:00:00</LastPubDate></Concept></ConceptList></Person><Person PersonID="124687"><Name><FullName>Martina Stippler, M.D.</FullName><FirstName>Martina</FirstName><LastName>Stippler</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2>Neurosurgery - 3B</Address2><Address3>110 Francis Street</Address3><Address4>Boston, MA 02215</Address4><Telephone>617/632-7246</Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Associate Professor of Neurosurgery</JobTitle><FacultyType FacultyTypeSort="1">Associate Professor</FacultyType></Affiliation></AffiliationList><PublicationList><Publication Source="PubMed" PMID="41697053"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41697053</URL><PublicationReference>Brain Trauma Foundation Guidelines for the Management of Penetrating Traumatic Brain Injury, Second Edition. Neurosurgery. 2026 Mar 01; 98(3S):S6-S164.</PublicationReference><Title>Brain Trauma Foundation Guidelines for the Management of Penetrating Traumatic Brain Injury, Second Edition.</Title><Authors>Bell RS, Selph S, Ghajar J, Aarabi B, Lumba-Brown A, Mangat HS, Wright DW, Dengler B, Stein DM, Pannell D, Ecklund J, Shackelford S, Pappas M, Totten AM, Adelson PD, Armonda RA, Benjamin J, Boone D, Davis S, Grant G, Harris O, Hoffer A, Kitagawa R, Latham K, Neal CJ, Okonkwo DO, Puffer R, Rosenfeld JV, Rosenthal G, Rubiano AM, Stippler M, Talbot M, Valadka A, Wright J, Hawryluk GWJ. </Authors><Journal>Neurosurgery</Journal><Date>2026 Mar 01</Date><IssueInfo>98(3S):S6-S164</IssueInfo></Publication><Publication Source="PubMed" PMID="41697054"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41697054</URL><PublicationReference>Treatment Algorithms From the Brain Trauma Foundation Guidelines for the Management of Penetrating Traumatic Brain Injury, Second Edition. Neurosurgery. 2026 Mar 01; 98(3S):S165-S182.</PublicationReference><Title>Treatment Algorithms From the Brain Trauma Foundation Guidelines for the Management of Penetrating Traumatic Brain Injury, Second Edition.</Title><Authors>Bell RS, Lumba-Brown A, Wright DW, Stein DM, Mangat HS, Aarabi B, Adelson PD, Armonda RA, Benjamin J, Boone D, Davis S, Dengler B, Ecklund J, Ghajar J, Grant G, Harris O, Hoffer A, Kitagawa R, Latham K, Neal CJ, Okonkwo DO, Pannell D, Puffer R, Rosenfeld JV, Rosenthal G, Rubiano AM, Shackelford S, Stippler M, Talbot M, Valadka A, Hawryluk GWJ. </Authors><Journal>Neurosurgery</Journal><Date>2026 Mar 01</Date><IssueInfo>98(3S):S165-S182</IssueInfo></Publication><Publication Source="PubMed" PMID="41280303" PMCID="PMC12639625"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41280303</URL><PublicationReference>Predicting rehabilitation discharge after lumbar decompression: Impact of age and preoperative assistive device use. N Am Spine Soc J. 2025 Dec; 24:100815.</PublicationReference><Title>Predicting rehabilitation discharge after lumbar decompression: Impact of age and preoperative assistive device use.</Title><Authors>Avery M, Terry F, Powers AY, Yazdanian F, Lee C, Pandya P, Stippler M, Papavassiliou E, Moses ZB. </Authors><Journal>N Am Spine Soc J</Journal><Date>2025 Dec</Date><IssueInfo>24:100815</IssueInfo></Publication><Publication Source="PubMed" PMID="40815175"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40815175</URL><PublicationReference>Gender Differences in Publications, Authorship, and Match Patterns Among Neurosurgical Residency Applicants. Neurosurgery. 2026 Mar 01; 98(3):567-576.</PublicationReference><Title>Gender Differences in Publications, Authorship, and Match Patterns Among Neurosurgical Residency Applicants.</Title><Authors>Muzyka L, Wetzel EA, Wang AF, West TR, Nasser AM, Batsaikhan U, Runde A, Stippler M, Ben-Haim S, Williamson ?L, Nahed BV. </Authors><Journal>Neurosurgery</Journal><Date>2026 Mar 01</Date><IssueInfo>98(3):567-576</IssueInfo></Publication><Publication Source="PubMed" PMID="40387334"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40387334</URL><PublicationReference>Comparative Effectiveness of Conservative Management Versus Surgical Fixation in Acute Type II Odontoid Fractures. Neurosurgery. 2026 Jan 01; 98(1):61-72.</PublicationReference><Title>Comparative Effectiveness of Conservative Management Versus Surgical Fixation in Acute Type II Odontoid Fractures.</Title><Authors>Yazdanian F, Enriquez-Marulanda A, Ramirez-Velandia F, Alwakaa O, Sconzo D, Terry F, Pandya P, Papavassiliou E, Stippler M, Moses ZB. </Authors><Journal>Neurosurgery</Journal><Date>2026 Jan 01</Date><IssueInfo>98(1):61-72</IssueInfo></Publication><Publication Source="PubMed" PMID="39961379"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39961379</URL><PublicationReference>Understanding Risk Factors for Postoperative Seizure Following Surgical Treatment and Middle Meningeal Artery Embolization of Chronic Subdural Hematomas. World Neurosurg. 2025 05; 197:123796.</PublicationReference><Title>Understanding Risk Factors for Postoperative Seizure Following Surgical Treatment and Middle Meningeal Artery Embolization of Chronic Subdural Hematomas.</Title><Authors>Ranawaka KH, Ramirez-Velandia F, Fodor TB, Wadhwa A, Salih M, Lau TS, Pacheco-Barrios N, Khan IS, Enriquez-Marulanda A, Vega RA, Mensah E, Stippler M, Taussky P, Ogilvy CS, Hong J. </Authors><Journal>World Neurosurg</Journal><Date>2025 05</Date><IssueInfo>197:123796</IssueInfo></Publication><Publication Source="PubMed" PMID="39951908"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39951908</URL><PublicationReference>Meaningful work, organizational commitment and administrative burden among attending neurosurgeons. Neurochirurgie. 2025 Mar; 71(2):101645.</PublicationReference><Title>Meaningful work, organizational commitment and administrative burden among attending neurosurgeons.</Title><Authors>Mackel CE, Saway BF, Alterman RL, Spiotta AM, Sweet JA, Davis RB, Williamson T, Stippler M. </Authors><Journal>Neurochirurgie</Journal><Date>2025 Mar</Date><IssueInfo>71(2):101645</IssueInfo></Publication><Publication Source="PubMed" PMID="39503919"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39503919</URL><PublicationReference>Prognostic value of computed tomography and magnetic resonance imaging findings in acute traumatic brain injury in prediction of poor neurological outcome and mortality: a systematic review and meta-analysis. Neurosurg Rev. 2024 Nov 06; 47(1):837.</PublicationReference><Title>Prognostic value of computed tomography and magnetic resonance imaging findings in acute traumatic brain injury in prediction of poor neurological outcome and mortality: a systematic review and meta-analysis.</Title><Authors>Naeimi A, Aghajanian S, Jafarabady K, Aletaha R, Maroufi SF, Khorasanizadeh M, Stippler M. </Authors><Journal>Neurosurg Rev</Journal><Date>2024 Nov 06</Date><IssueInfo>47(1):837</IssueInfo></Publication><Publication Source="PubMed" PMID="39309034" PMCID="PMC11415955"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39309034</URL><PublicationReference>Validation of thoracolumbar injury classification and Severity Score in the management of acute and subacute Osteoporotic vertebral compression fractures - A pilot study and a suggested modification. Interv Pain Med. 2024 Sep; 3(3):100438.</PublicationReference><Title>Validation of thoracolumbar injury classification and Severity Score in the management of acute and subacute Osteoporotic vertebral compression fractures - A pilot study and a suggested modification.</Title><Authors>Gill JS, Stippler M, Ruan Q, Hussain N, White AP, Oruhurhu V, Malik O, Simopoulos T, Urits I, D'Souza RS, Narang S, Hirsch JA. </Authors><Journal>Interv Pain Med</Journal><Date>2024 Sep</Date><IssueInfo>3(3):100438</IssueInfo></Publication><Publication Source="PubMed" PMID="38996404"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38996404</URL><PublicationReference>An analysis of potentially avoidable neurosurgical transfers to a tertiary-care level I trauma center. J Neurosurg. 2024 Dec 01; 141(6):1723-1729.</PublicationReference><Title>An analysis of potentially avoidable neurosurgical transfers to a tertiary-care level I trauma center.</Title><Authors>Marks CM, Burke RC, Stippler M, Rosen CL. </Authors><Journal>J Neurosurg</Journal><Date>2024 Dec 01</Date><IssueInfo>141(6):1723-1729</IssueInfo></Publication><Publication Source="PubMed" PMID="38967423"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38967423</URL><PublicationReference>Comparison of Postoperative Seizures Between Burr-Hole Evacuation and Craniotomy in Patients With Nonacute Subdural Hematomas: A Bi-Institutional Propensity Score-Matched Analysis. Neurosurgery. 2025 Jan 01; 96(1):122-130.</PublicationReference><Title>Comparison of Postoperative Seizures Between Burr-Hole Evacuation and Craniotomy in Patients With Nonacute Subdural Hematomas: A Bi-Institutional Propensity Score-Matched Analysis.</Title><Authors>Ramirez-Velandia F, Ranawaka KH, Wadhwa A, Salih M, Fodor TB, Lau TS, Pacheco-Barrios N, Enriquez-Marulanda A, Khan IS, Vega RA, Stippler M, Taussky P, Hong J, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2025 Jan 01</Date><IssueInfo>96(1):122-130</IssueInfo></Publication><Publication Source="PubMed" PMID="38906476"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38906476</URL><PublicationReference>Factors Associated with Extended Hospitalization in Patients Who Had Adjuvant Middle Meningeal Artery Embolization After Conventional Surgery for Chronic Subdural Hematomas. World Neurosurg. 2024 09; 189:e168-e176.</PublicationReference><Title>Factors Associated with Extended Hospitalization in Patients Who Had Adjuvant Middle Meningeal Artery Embolization After Conventional Surgery for Chronic Subdural Hematomas.</Title><Authors>Filo J, Salih M, Alwakaa O, Ramirez-Velandia F, Shutran M, Vega RA, Stippler M, Papavassiliou E, Alterman RL, Thomas A, Taussky P, Moore J, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2024 09</Date><IssueInfo>189:e168-e176</IssueInfo></Publication><Publication Source="PubMed" PMID="38160110"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38160110</URL><PublicationReference>Active Teaching Techniques Using Virtual Didactics: Novel Experience From a National Neurosurgery Resident Course. J Surg Educ. 2024 02; 81(2):312-318.</PublicationReference><Title>Active Teaching Techniques Using Virtual Didactics: Novel Experience From a National Neurosurgery Resident Course.</Title><Authors>Stippler M, Blitz SE, Quinsey C, Limbrick D, Byrne R, Zipfel G, Selden NR. </Authors><Journal>J Surg Educ</Journal><Date>2024 02</Date><IssueInfo>81(2):312-318</IssueInfo></Publication><Publication Source="PubMed" PMID="38135149" PMCID="PMC11521361"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38135149</URL><PublicationReference>Differential Time-To-Promotion Trajectories Among Female and Male Neurosurgeons Contribute to Gender Disparities in Academic Rank Achievement. World Neurosurg. 2024 03; 183:157-163.</PublicationReference><Title>Differential Time-To-Promotion Trajectories Among Female and Male Neurosurgeons Contribute to Gender Disparities in Academic Rank Achievement.</Title><Authors>Blitz SE, Hoffman SE, Stippler M, Huntoon K. </Authors><Journal>World Neurosurg</Journal><Date>2024 03</Date><IssueInfo>183:157-163</IssueInfo></Publication><Publication Source="PubMed" PMID="37660894"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37660894</URL><PublicationReference>Public health insurance, frailty, and lack of home support predict rehab discharge following elective anterior cervical discectomy and fusion. Spine J. 2023 12; 23(12):1830-1837.</PublicationReference><Title>Public health insurance, frailty, and lack of home support predict rehab discharge following elective anterior cervical discectomy and fusion.</Title><Authors>Powers AY, Chang DC, Stippler M, Papavassiliou E, Moses ZB. </Authors><Journal>Spine J</Journal><Date>2023 12</Date><IssueInfo>23(12):1830-1837</IssueInfo></Publication><Publication Source="PubMed" PMID="37235974"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37235974</URL><PublicationReference>Prevalence and Predictors of Inappropriate Antithrombotic Prescription in Patients Presenting With Traumatic Brain Injury. Neurosurgery. 2023 11 01; 93(5):1019-1025.</PublicationReference><Title>Prevalence and Predictors of Inappropriate Antithrombotic Prescription in Patients Presenting With Traumatic Brain Injury.</Title><Authors>Blitz SE, Mashouf LA, Nieves A, Matos J, Yaffe M, Davis RB, Alterman RL, Stippler M. </Authors><Journal>Neurosurgery</Journal><Date>2023 11 01</Date><IssueInfo>93(5):1019-1025</IssueInfo></Publication><Publication Source="PubMed" PMID="36921243"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36921243</URL><PublicationReference>Outcome of Chronic Subdural Hematoma Intervention in Patients on Long-Term Antiplatelet Therapy-A Propensity Score Matched Analysis. Neurosurgery. 2023 09 01; 93(3):586-591.</PublicationReference><Title>Outcome of Chronic Subdural Hematoma Intervention in Patients on Long-Term Antiplatelet Therapy-A Propensity Score Matched Analysis.</Title><Authors>Salih M, Young M, Garcia A, Stippler M, Papavassiliou E, Alterman RL, Thomas AJ, Taussky P, Moore J, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2023 09 01</Date><IssueInfo>93(3):586-591</IssueInfo></Publication><Publication Source="PubMed" PMID="36681947"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36681947</URL><PublicationReference>Effect of long-term anticoagulant therapy on the outcome of chronic subdural hematoma: a propensity score-matched analysis. J Neurosurg. 2023 07 01; 139(1):194-200.</PublicationReference><Title>Effect of long-term anticoagulant therapy on the outcome of chronic subdural hematoma: a propensity score-matched analysis.</Title><Authors>Salih M, Young M, Shutran M, Stippler M, Papavassiliou E, Alterman RL, Thomas AJ, Taussky P, Moore J, Ogilvy CS. </Authors><Journal>J Neurosurg</Journal><Date>2023 07 01</Date><IssueInfo>139(1):194-200</IssueInfo></Publication><Publication Source="PubMed" PMID="36681950"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36681950</URL><PublicationReference>Reduced recurrence of chronic subdural hematomas treated with open surgery followed by middle meningeal artery embolization compared to open surgery alone: a propensity score-matched analysis. J Neurosurg. 2023 07 01; 139(1):124-130.</PublicationReference><Title>Reduced recurrence of chronic subdural hematomas treated with open surgery followed by middle meningeal artery embolization compared to open surgery alone: a propensity score-matched analysis.</Title><Authors>Salih M, Shutran M, Young M, Vega RA, Stippler M, Papavassiliou E, Alterman RL, Thomas A, Taussky P, Moore J, Ogilvy CS. </Authors><Journal>J Neurosurg</Journal><Date>2023 07 01</Date><IssueInfo>139(1):124-130</IssueInfo></Publication><Publication Source="PubMed" PMID="35735214" PMCID="PMC9677238"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35735214</URL><PublicationReference>Correction to: Tumor-Derived Cell Culture Model for the Investigation of Meningioma Biology. J Neuropathol Exp Neurol. 2022 Nov 16; 81(12):1041.</PublicationReference><Title>Correction to: Tumor-Derived Cell Culture Model for the Investigation of Meningioma Biology.</Title><Authors>Uhlmann EJ, Rabinovsky R, Varma H, El Fatimy R, Kasper EM, Moore JM, Vega RA, Thomas AJ, Alterman RL, Stippler M, Anderson MP, Uhlmann EN, Kipper FC, Krichevsky AM. </Authors><Journal>J Neuropathol Exp Neurol</Journal><Date>2022 Nov 16</Date><IssueInfo>81(12):1041</IssueInfo></Publication><Publication Source="PubMed" PMID="35916089"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35916089</URL><PublicationReference>Teaching through the screen: a toolbox for creating a virtual neurosurgical subinternship program. Neurosurg Focus. 2022 08; 53(2):E7.</PublicationReference><Title>Teaching through the screen: a toolbox for creating a virtual neurosurgical subinternship program.</Title><Authors>Hoffman SE, Vega RA, Stippler M. </Authors><Journal>Neurosurg Focus</Journal><Date>2022 08</Date><IssueInfo>53(2):E7</IssueInfo></Publication><Publication Source="PubMed" PMID="35868506"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35868506</URL><PublicationReference>Future Directions for Global Clinical Neurosurgical Training: Challenges and Opportunities. World Neurosurg. 2022 10; 166:e404-e418.</PublicationReference><Title>Future Directions for Global Clinical Neurosurgical Training: Challenges and Opportunities.</Title><Authors>Hoffman C, Härtl R, Shlobin NA, Tshimbombu TN, Elbabaa SK, Haglund MM, Rubiano AM, Dewan MC, Stippler M, Mahmud MR, Barthélemy EJ, Griswold DP, Wohns R, Shabani HK, Rocque B, Sandberg DI, Lafuente J, Dempsey R, Rosseau G. </Authors><Journal>World Neurosurg</Journal><Date>2022 10</Date><IssueInfo>166:e404-e418</IssueInfo></Publication><Publication Source="PubMed" PMID="35929119" PMCID="PMC9353166"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35929119</URL><PublicationReference>Cerebral Metastases in Appendiceal Cancer: Comprehensive Review and Report of Rare Medullary Carcinoma Histology. Brain Tumor Res Treat. 2022 Jul; 10(3):200-205.</PublicationReference><Title>Cerebral Metastases in Appendiceal Cancer: Comprehensive Review and Report of Rare Medullary Carcinoma Histology.</Title><Authors>Mackel C, Rosenberg H, Varma H, Vega R, Stippler M. </Authors><Journal>Brain Tumor Res Treat</Journal><Date>2022 Jul</Date><IssueInfo>10(3):200-205</IssueInfo></Publication><Publication Source="PubMed" PMID="35919507" PMCID="PMC9279118"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35919507</URL><PublicationReference>Rationale and Methods for Updated Guidelines for the Management of Penetrating Traumatic Brain Injury. Neurotrauma Rep. 2022; 3(1):240-247.</PublicationReference><Title>Rationale and Methods for Updated Guidelines for the Management of Penetrating Traumatic Brain Injury.</Title><Authors>Hawryluk GWJ, Selph S, Lumba-Brown A, Totten AM, Ghajar J, Aarabi B, Ecklund J, Shackelford S, Adams B, Adelson D, Armonda RA, Benjamin J, Boone D, Brody D, Dengler B, Figaji A, Grant G, Harris O, Hoffer A, Kitigawa R, Latham K, Neal C, Okonkwo DO, Pannell D, Rosenfeld JV, Rosenthal G, Rubiano A, Stein DM, Stippler M, Talbot M, Valadka A, Wright DW, Davis S, Bell R. </Authors><Journal>Neurotrauma Rep</Journal><Date>2022</Date><IssueInfo>3(1):240-247</IssueInfo></Publication><Publication Source="PubMed" PMID="35311744"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35311744</URL><PublicationReference>Gender Equality in Neurosurgery and Strategic Goals Toward a More Balanced Workforce. Neurosurgery. 2022 05 01; 90(5):642-647.</PublicationReference><Title>Gender Equality in Neurosurgery and Strategic Goals Toward a More Balanced Workforce.</Title><Authors>Plonsker JH, Benzil D, Air EL, Woodrow S, Stippler M, Ben-Haim S. </Authors><Journal>Neurosurgery</Journal><Date>2022 05 01</Date><IssueInfo>90(5):642-647</IssueInfo></Publication><Publication Source="PubMed" PMID="35319531" PMCID="PMC9514751"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35319531</URL><PublicationReference>Moral Distress and Moral Injury Among Attending Neurosurgeons: A National Survey. Neurosurgery. 2022 07 01; 91(1):59-65.</PublicationReference><Title>Moral Distress and Moral Injury Among Attending Neurosurgeons: A National Survey.</Title><Authors>Mackel CE, Alterman RL, Buss MK, Reynolds RM, Fox WC, Spiotta AM, Davis RB, Stippler M. </Authors><Journal>Neurosurgery</Journal><Date>2022 07 01</Date><IssueInfo>91(1):59-65</IssueInfo></Publication><Publication Source="PubMed" PMID="34850056" PMCID="PMC8716066"><URL>http://www.ncbi.nlm.nih.gov/pubmed/34850056</URL><PublicationReference>Tumor-Derived Cell Culture Model for the Investigation of Meningioma Biology. J Neuropathol Exp Neurol. 2021 12 29; 80(12):1117-1124.</PublicationReference><Title>Tumor-Derived Cell Culture Model for the Investigation of Meningioma Biology.</Title><Authors>Uhlmann EJ, Rabinovsky R, Varma H, El Fatimy R, Kasper EM, Moore JM, Vega RA, Thomas AJ, Alterman RL, Stippler M, Anderson MP, Uhlmann EN, Kipper FC, Krichevsky AM. </Authors><Journal>J Neuropathol Exp Neurol</Journal><Date>2021 12 29</Date><IssueInfo>80(12):1117-1124</IssueInfo></Publication><Publication Source="PubMed" PMID="34171921"><URL>http://www.ncbi.nlm.nih.gov/pubmed/34171921</URL><PublicationReference>Middle Meningeal Artery Embolization Versus Conventional Treatment of Chronic Subdural Hematomas. Neurosurgery. 2021 08 16; 89(3):486-495.</PublicationReference><Title>Middle Meningeal Artery Embolization Versus Conventional Treatment of Chronic Subdural Hematomas.</Title><Authors>Enriquez-Marulanda A, Gomez-Paz S, Salem MM, Mallick A, Motiei-Langroudi R, Arle JE, Stippler M, Papavassiliou E, Alterman RL, Ogilvy CS, Moore JM, Thomas AJ. </Authors><Journal>Neurosurgery</Journal><Date>2021 08 16</Date><IssueInfo>89(3):486-495</IssueInfo></Publication><Publication Source="PubMed" PMID="33471896"><URL>http://www.ncbi.nlm.nih.gov/pubmed/33471896</URL><PublicationReference>A Scoping Review of Burnout in Neurosurgery. 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Studies</MeshHeader><NumPubs>1</NumPubs><Weight>1.135594640160785e-002</Weight><FirstPubDate>2023-12-21T00:00:00</FirstPubDate><LastPubDate>2023-12-21T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Rats, Sprague-Dawley</MeshHeader><NumPubs>1</NumPubs><Weight>1.113147996769529e-002</Weight><FirstPubDate>2013-01-01T00:00:00</FirstPubDate><LastPubDate>2013-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Anti-Bacterial Agents</MeshHeader><NumPubs>1</NumPubs><Weight>1.029712686185967e-002</Weight><FirstPubDate>2019-12-18T00:00:00</FirstPubDate><LastPubDate>2019-12-18T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Rats</MeshHeader><NumPubs>1</NumPubs><Weight>7.836546554176239e-003</Weight><FirstPubDate>2013-01-01T00:00:00</FirstPubDate><LastPubDate>2013-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Disease Models, Animal</MeshHeader><NumPubs>1</NumPubs><Weight>6.125803813591945e-003</Weight><FirstPubDate>2013-01-01T00:00:00</FirstPubDate><LastPubDate>2013-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Electroencephalography</MeshHeader><NumPubs>1</NumPubs><Weight>5.949858103369980e-003</Weight><FirstPubDate>2008-10-01T00:00:00</FirstPubDate><LastPubDate>2008-10-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Animals</MeshHeader><NumPubs>1</NumPubs><Weight>2.559311396844655e-003</Weight><FirstPubDate>2013-01-01T00:00:00</FirstPubDate><LastPubDate>2013-01-01T00:00:00</LastPubDate></Concept></ConceptList></Person><Person PersonID="208226"><Name><FullName>Philipp Taussky, M.D.</FullName><FirstName>Philipp</FirstName><LastName>Taussky</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2>Suite 3B</Address2><Address3>110 Francis Street</Address3><Address4>Boston, MA 02215</Address4><Telephone>617/632-7246</Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Associate Professor of Neurosurgery</JobTitle><FacultyType FacultyTypeSort="1">Associate Professor</FacultyType></Affiliation></AffiliationList><PhotoUrl>https://connects.catalyst.harvard.edu/Profiles/profile/Modules/CustomViewPersonGeneralInfo/PhotoHandler.ashx?NodeID=199052796</PhotoUrl><EducationAndTraining><Education><TrainingAtOrganization>Kantonsspital Aarau</TrainingAtOrganization><TrainingLocation>Switzerland</TrainingLocation><CompletionDate>06/2009</CompletionDate><MajorField>Residency, Neurosurgery</MajorField></Education><Education><TrainingAtOrganization>University of Utah</TrainingAtOrganization><TrainingLocation>USA</TrainingLocation><CompletionDate>07/2010</CompletionDate><MajorField>Skull/Base Cerebrovascular Fellowship</MajorField></Education><Education><TrainingAtOrganization>Mayo Clinic</TrainingAtOrganization><TrainingLocation>Rochester/Jacksonville</TrainingLocation><CompletionDate>07/2012</CompletionDate><MajorField>Endovascular Fellowship</MajorField></Education><Education><TrainingAtOrganization>University of Basel</TrainingAtOrganization><TrainingLocation>Switzerland</TrainingLocation><DegreeEarned>MD</DegreeEarned><CompletionDate>11/2003</CompletionDate><MajorField>Medicine</MajorField></Education></EducationAndTraining><PublicationList><Publication Source="PubMed" PMID="41734937"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41734937</URL><PublicationReference>Safety of endovascular shunting for normal pressure hydrocephalus from a prospective, multicenter, single-arm study. J Neurointerv Surg. 2026 Feb 24.</PublicationReference><Title>Safety of endovascular shunting for normal pressure hydrocephalus from a prospective, multicenter, single-arm study.</Title><Authors>Lylyk P, Matouk CC, Hanel RA, Reavey-Cantwell JF, Riina HA, Altschul DJ, Siddiqui AH, Fraser JF, Ebersole KC, Bhalla T, Bender MT, Ogilvy CS, Taussky P, Baker A, Jayaraman MV, Lylyk I, Perez N, Bleise C, Scrivano E, Lylyk PN, Nowicki KW, Koo AB, Antonios J, Beneduce BM, Levy EI, Heilman CB, Malek AM. </Authors><Journal>J Neurointerv Surg</Journal><Date>2026 Feb 24</Date><IssueInfo /></Publication><Publication Source="PubMed" PMID="41672773"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41672773</URL><PublicationReference>Modernizing dual antiplatelet therapy in flow diversion: comparative outcomes after transition to universal prasugrel. J Neurointerv Surg. 2026 Feb 11.</PublicationReference><Title>Modernizing dual antiplatelet therapy in flow diversion: comparative outcomes after transition to universal prasugrel.</Title><Authors>Bhatt PB, McNeil E, Wadhwa A, Pellegrino A, Granstein JH, Taussky P, Ogilvy CS. </Authors><Journal>J Neurointerv Surg</Journal><Date>2026 Feb 11</Date><IssueInfo /></Publication><Publication Source="PubMed" PMID="41654326"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41654326</URL><PublicationReference>Presence of Collaterals from the Contralateral Hemisphere on Preoperative Angiogram Predicts Failure of Encephalo-Duro Arterio-Synangiosis (EDAS) in Adult Moyamoya Patients. AJNR Am J Neuroradiol. 2026 Feb 07.</PublicationReference><Title>Presence of Collaterals from the Contralateral Hemisphere on Preoperative Angiogram Predicts Failure of Encephalo-Duro Arterio-Synangiosis (EDAS) in Adult Moyamoya Patients.</Title><Authors>Alwakaa O, Purohit S, Lau TS, Filo J, Ramirez-Velandia F, Granstein JH, Taussky P, Ogilvy CS. </Authors><Journal>AJNR Am J Neuroradiol</Journal><Date>2026 Feb 07</Date><IssueInfo /></Publication><Publication Source="PubMed" PMID="41627067"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41627067</URL><PublicationReference>Moving Beyond Packing Density: A Modern Reappraisal of Recurrence and Retreatment in Coiled Aneurysms. Neurosurgery. 2026 Feb 02.</PublicationReference><Title>Moving Beyond Packing Density: A Modern Reappraisal of Recurrence and Retreatment in Coiled Aneurysms.</Title><Authors>Barhouse PS, Arunachalam Sakthiyendran N, Purohit S, Ramirez-Velandia F, Alwakaa O, Ogilvy CS, Taussky P. </Authors><Journal>Neurosurgery</Journal><Date>2026 Feb 02</Date><IssueInfo /></Publication><Publication Source="PubMed" PMID="41616313"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41616313</URL><PublicationReference>Cost-effectiveness analysis on treatment versus imaging surveillance for vertebrobasilar dolichoectatic aneurysms. J Neurosurg. 2026 Jan 30; 1-10.</PublicationReference><Title>Cost-effectiveness analysis on treatment versus imaging surveillance for vertebrobasilar dolichoectatic aneurysms.</Title><Authors>Salih M, Mensah E, Ramirez-Velandia F, Shutran MS, Taussky P, Ogilvy CS. </Authors><Journal>J Neurosurg</Journal><Date>2026 Jan 30</Date><IssueInfo>1-10</IssueInfo></Publication><Publication Source="PubMed" PMID="41537622"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41537622</URL><PublicationReference>Dual-Lumen Balloon-Assisted Onyx Embolization of Dural Arteriovenous Fistulas: A 2-Dimensional Operative Video. Oper Neurosurg. 2026 Jan 15.</PublicationReference><Title>Dual-Lumen Balloon-Assisted Onyx Embolization of Dural Arteriovenous Fistulas: A 2-Dimensional Operative Video.</Title><Authors>Jokhio A, Tomaselli L, McNeil E, Muram S, Bukhari SS, Granstein JH, Taussky P, Ogilvy CS. </Authors><Journal>Oper Neurosurg</Journal><Date>2026 Jan 15</Date><IssueInfo /></Publication><Publication Source="PubMed" PMID="41456531"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41456531</URL><PublicationReference>Occlusion of posterior communicating artery aneurysms with a 'fetal' type circulation treated with flow diversion. Clin Neurol Neurosurg. 2026 Mar; 262:109290.</PublicationReference><Title>Occlusion of posterior communicating artery aneurysms with a 'fetal' type circulation treated with flow diversion.</Title><Authors>Han K, Wadhwa A, Ramirez-Velandia F, Enriquez-Marulanda A, Granstein J, Taussky P, Ogilvy CS. </Authors><Journal>Clin Neurol Neurosurg</Journal><Date>2026 Mar</Date><IssueInfo>262:109290</IssueInfo></Publication><Publication Source="PubMed" PMID="41569937"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41569937</URL><PublicationReference>Epidemiological and demographic patterns of pediatric trigeminal neuralgia: nationwide trends in diagnosis and treatment over a decade. J Neurosurg Pediatr. 2025 Dec 12; 37(2):157-163.</PublicationReference><Title>Epidemiological and demographic patterns of pediatric trigeminal neuralgia: nationwide trends in diagnosis and treatment over a decade.</Title><Authors>Wadhwa A, Purohit S, Taussky P, Ogilvy CS. </Authors><Journal>J Neurosurg Pediatr</Journal><Date>2025 Dec 12</Date><IssueInfo>37(2):157-163</IssueInfo></Publication><Publication Source="PubMed" PMID="41260918"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41260918</URL><PublicationReference>Comaneci-assisted embolization of wide-necked aneurysms: results from the SUCCESS postmarket US study. J Neurointerv Surg. 2025 Nov 19.</PublicationReference><Title>Comaneci-assisted embolization of wide-necked aneurysms: results from the SUCCESS postmarket US study.</Title><Authors>Davies JM, Taqi MA, Coon AL, Lin LM, Bohnstedt B, Mascitelli J, Levy EI, Siddiqui A, Birnbaum L, Rodriguez P, Noufal M, Taussky P, Kilburg C, Gooch MR, Puri AS, Diaz O, Fifi JT, Majidi S, Yoo AJ, Soomro J, Bhuva P, Taylor RA, Oni-Orisan AO, Chen M, Sauvageau E, Cordina SM, Sugg RM, Singh J, Goren O, Liebeskind DS, Hanel RA. </Authors><Journal>J Neurointerv Surg</Journal><Date>2025 Nov 19</Date><IssueInfo /></Publication><Publication Source="PubMed" PMID="41219123"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41219123</URL><PublicationReference>Emerging approaches in the management of intracranial hemorrhage: ARISE II consensus recommendations. J Neurointerv Surg. 2025 Nov 11.</PublicationReference><Title>Emerging approaches in the management of intracranial hemorrhage: ARISE II consensus recommendations.</Title><Authors>Bain M, Kellner CP, Hanel RA, Burkhardt JK, Fiorella D, Frosen J, Jankowitz B, Lopes D, Pradilla G, Taussky P, Kashkoush A, Wakhloo AK, Arthur AS, Mocco J, Liebeskind DS, Samaniego EA, Toth G, Strbian D, Linfante I, Nogueira R, Fisher M. </Authors><Journal>J Neurointerv Surg</Journal><Date>2025 Nov 11</Date><IssueInfo /></Publication><Publication Source="PubMed" PMID="41031837"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41031837</URL><PublicationReference>Torcular Dural Arteriovenous Fistula: A Retrospective Observational Study of Patient, Angiographic, and Treatment Characteristics. Oper Neurosurg. 2025 Oct 01.</PublicationReference><Title>Torcular Dural Arteriovenous Fistula: A Retrospective Observational Study of Patient, Angiographic, and Treatment Characteristics.</Title><Authors>Pasarikovski CR, Hamrick FA, Rennert RC, Couldwell WT, Taussky P, Kilburg CJ, Grandhi R, Budohoski KP. </Authors><Journal>Oper Neurosurg</Journal><Date>2025 Oct 01</Date><IssueInfo /></Publication><Publication Source="PubMed" PMID="40985656"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40985656</URL><PublicationReference>Percutaneous Trigeminal Rhizotomy Using a Custom Electromagnetic Neuronavigation-Compatible Cannula: Technical Note and Comparative Study. Oper Neurosurg. 2025 Sep 23.</PublicationReference><Title>Percutaneous Trigeminal Rhizotomy Using a Custom Electromagnetic Neuronavigation-Compatible Cannula: Technical Note and Comparative Study.</Title><Authors>Shoraka O, Nadel JL, Bounajem M, Butler E, Taussky P, Lad S, Rahimpour S. </Authors><Journal>Oper Neurosurg</Journal><Date>2025 Sep 23</Date><IssueInfo /></Publication><Publication Source="PubMed" PMID="40335285"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40335285</URL><PublicationReference>Five-year results of the SCENT trial with Surpass flow diverters to treat large or giant wide-neck aneurysms. J Neurointerv Surg. 2025 Sep 12; 17(10):1078-1082.</PublicationReference><Title>Five-year results of the SCENT trial with Surpass flow diverters to treat large or giant wide-neck aneurysms.</Title><Authors>Meyers PM, Coon AL, Kan P, Dogan A, Bain M, Welch BG, Ebersole K, De Vries J, Wakhloo AK, Taussky P, Jenkins P, Hanel RA. </Authors><Journal>J Neurointerv Surg</Journal><Date>2025 Sep 12</Date><IssueInfo>17(10):1078-1082</IssueInfo></Publication><Publication Source="PubMed" PMID="40900221"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40900221</URL><PublicationReference>How Do Patient Outcomes in Mechanical Thrombectomy for Large-Core Stroke Vary Based on Neuroimaging Modalities Used for Patient Selection? A Multicenter Multinational Study. Transl Stroke Res. 2025 Dec; 16(6):2158-2172.</PublicationReference><Title>How Do Patient Outcomes in Mechanical Thrombectomy for Large-Core Stroke Vary Based on Neuroimaging Modalities Used for Patient Selection? A Multicenter Multinational Study.</Title><Authors>Alwakaa O, Abo Kasem R, Ramirez-Velandia F, Wadhwa A, Han K, Levitt MR, Alaraj A, Jabbour P, Kim JT, Howard B, Alawieh A, Wolfe SQ, Starke RM, Psychogios MN, Shaban A, Goyal N, Dye J, Ezzeldin M, Yoshimura S, Sconzo D, Filo J, Pettersson S, Fiorella D, Tanweer O, Romano DG, Navia P, Cuellar H, Fragata I, Polifka A, Mascitelli J, Osbun J, Siddiqui F, Moss M, Limaye K, Mokin M, Matouk C, Park MS, Brinjikji W, Daglioglu E, Williamson R, Altschul DJ, Maier I, Crosa R, Gory B, Grandhi R, Paul A, Kan P, Casagrande W, Chowdhry S, Stiefel MF, Rai A, Spiotta AM, Taussky P, Ogilvy CS, Granstein JH. </Authors><Journal>Transl Stroke Res</Journal><Date>2025 Dec</Date><IssueInfo>16(6):2158-2172</IssueInfo></Publication><Publication Source="PubMed" PMID="40889393"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40889393</URL><PublicationReference>A double burden: depression and early pain recurrence following surgical management of trigeminal neuralgia. Neurosurg Focus. 2025 09 01; 59(3):E11.</PublicationReference><Title>A double burden: depression and early pain recurrence following surgical management of trigeminal neuralgia.</Title><Authors>Shoraka O, Botros D, Taussky P, Jensen RL, Couldwell WT, Rolston JD, Rahimpour S. </Authors><Journal>Neurosurg Focus</Journal><Date>2025 09 01</Date><IssueInfo>59(3):E11</IssueInfo></Publication><Publication Source="PubMed" PMID="40889337" PMCID="PMC12401954"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40889337</URL><PublicationReference>Reversible edema after radiosurgery for arteriovenous malformations (AVMs): Inflow and outflow imbalance. J Cereb Blood Flow Metab. 2025 Dec; 45(12):2393-2403.</PublicationReference><Title>Reversible edema after radiosurgery for arteriovenous malformations (AVMs): Inflow and outflow imbalance.</Title><Authors>Sconzo D, Ramirez-Velandia F, Enriquez-Marulanda A, Riordan CP, Muram S, Aghdam N, Taussky P, Ogilvy CS. </Authors><Journal>J Cereb Blood Flow Metab</Journal><Date>2025 Dec</Date><IssueInfo>45(12):2393-2403</IssueInfo></Publication><Publication Source="PubMed" PMID="40749229"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40749229</URL><PublicationReference>Optimal imaging follow-up strategies for conservatively managed cerebral cavernous malformations: a cost-effectiveness analysis. J Neurosurg. 2025 Dec 01; 143(6):1555-1566.</PublicationReference><Title>Optimal imaging follow-up strategies for conservatively managed cerebral cavernous malformations: a cost-effectiveness analysis.</Title><Authors>Wadhwa A, Salih M, Ramirez-Velandia F, Pettersson SD, Muram S, Young M, Taussky P, Ogilvy CS. </Authors><Journal>J Neurosurg</Journal><Date>2025 Dec 01</Date><IssueInfo>143(6):1555-1566</IssueInfo></Publication><Publication Source="PubMed" PMID="40809534" PMCID="PMC12344948"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40809534</URL><PublicationReference>The evolution of personalized stroke thrombectomy. Front Surg. 2025; 12:1590146.</PublicationReference><Title>The evolution of personalized stroke thrombectomy.</Title><Authors>Mensah EO, Fong YW, Muram S, Ogilvy CS, Taussky P. </Authors><Journal>Front Surg</Journal><Date>2025</Date><IssueInfo>12:1590146</IssueInfo></Publication><Publication Source="PubMed" PMID="40649171" PMCID="PMC12250825"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40649171</URL><PublicationReference>Clinical Predictors of Inpatient Mortality and Poor Postoperative Course After aSAH Microsurgical Clipping: A 10-Year Experience from a Peruvian Tertiary Care Center. J Clin Med. 2025 Jul 07; 14(13).</PublicationReference><Title>Clinical Predictors of Inpatient Mortality and Poor Postoperative Course After aSAH Microsurgical Clipping: A 10-Year Experience from a Peruvian Tertiary Care Center.</Title><Authors>Terry F, Enríquez-Marulanda A, Chinchihualpa-Paredes N, Carbajal-Galarza M, Vidal-Cuellar CL, Mas-Ubillus G, Diaz-Llanes B, Quispe-Vicuña C, Pacheco-Barrios N, Arbulu-Zuazo R, Moses ZB, Sequeiros J, Luther E, Starke RM, Taussky P, Lopez-Calle J. </Authors><Journal>J Clin Med</Journal><Date>2025 Jul 07</Date><IssueInfo>14(13)</IssueInfo></Publication><Publication Source="PubMed" PMID="40578008"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40578008</URL><PublicationReference>Impact of smoking on occlusion rates following stereotactic radiosurgery for Spetzler Martin grade I-III brain arteriovenous malformations - A propensity score matched analysis of the MISTA consortium. J Clin Neurosci. 2025 Sep; 139:111411.</PublicationReference><Title>Impact of smoking on occlusion rates following stereotactic radiosurgery for Spetzler Martin grade I-III brain arteriovenous malformations - A propensity score matched analysis of the MISTA consortium.</Title><Authors>Sconzo D, Ramirez-Velandia F, Muram S, Enriquez-Marulanda A, Riordan CP, Adeeb N, Musmar B, Salim HA, Kandregula S, Dmywtriw AA, Abdelsalam A, Ataoglu C, Erginoglu U, Kondziolka D, Aslan A, Naamani KE, Sheehan J, Park MS, Zeineddine HA, Ironside N, Kumbhare D, Gummadi S, Essibayi MA, Tos SM, Keles A, Rezai A, Pöppe J, Sen RD, Baskaya MK, Griessenauer CJ, Jabbour P, Tjoumakaris SI, Atallah E, Riina H, Abushehab A, Burkhardt JK, Starke RM, Sekhar LN, Levitt MR, Altschul DJ, Haranhalli N, McAvoy M, Abla A, Stapleton C, Koch M, Srinivasan VM, Chen PR, Blackburn S, Kim LJ, Choudhri O, Pukenas B, Mantziaris G, O'Leary S, Kan P, Li YL, Simonato D, Bulsara K, Fuschi M, Alaraj A, Hanalioglu S, Patel A, Savardekar A, Cuellar H, Lawton M, Morcos J, Guthikonda B, Taussky P, Ogilvy CS. </Authors><Journal>J Clin Neurosci</Journal><Date>2025 Sep</Date><IssueInfo>139:111411</IssueInfo></Publication><Publication Source="PubMed" PMID="40526289"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40526289</URL><PublicationReference>The Orbital Grading system yields higher precision than the Matsushima grading system in assessing angiographic outcomes after EDAS for Moyamoya disease: an interrater reliability analysis. Neurosurg Rev. 2025 Jun 17; 48(1):513.</PublicationReference><Title>The Orbital Grading system yields higher precision than the Matsushima grading system in assessing angiographic outcomes after EDAS for Moyamoya disease: an interrater reliability analysis.</Title><Authors>Alwakaa O, Mensah E, Ramirez-Velandia F, Enriquez-Marulanda A, Muram S, Bukhari SS, Singh J, See AP, Granstein JH, Taussky P, Ogilvy CS. </Authors><Journal>Neurosurg Rev</Journal><Date>2025 Jun 17</Date><IssueInfo>48(1):513</IssueInfo></Publication><Publication Source="PubMed" PMID="40488539"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40488539</URL><PublicationReference>Addressing Limited Generalizability in Artificial Intelligence-Based Brain Aneurysm Detection for Computed Tomography Angiography: Development of an Externally Validated Artificial Intelligence Screening Platform. Neurosurgery. 2025 Dec 01; 97(6):1388-1396.</PublicationReference><Title>Addressing Limited Generalizability in Artificial Intelligence-Based Brain Aneurysm Detection for Computed Tomography Angiography: Development of an Externally Validated Artificial Intelligence Screening Platform.</Title><Authors>Pettersson SD, Filo J, Liaw P, Skrzypkowska P, Klepinowski T, Szmuda T, Fodor TB, Ramirez-Velandia F, Zielinski P, Chang YM, Taussky P, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2025 Dec 01</Date><IssueInfo>97(6):1388-1396</IssueInfo></Publication><Publication Source="PubMed" PMID="40175760"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40175760</URL><PublicationReference>Risk factors of postprocedure seizures following standalone middle meningeal artery embolization of chronic subdural hematomas: a bi-institutional retrospective analysis. Neurosurg Rev. 2025 Apr 03; 48(1):350.</PublicationReference><Title>Risk factors of postprocedure seizures following standalone middle meningeal artery embolization of chronic subdural hematomas: a bi-institutional retrospective analysis.</Title><Authors>Ramirez-Velandia F, Ranawaka KH, Wadhwa A, Fodor TB, Salih M, Mensah EO, Lau TS, Pacheco-Barrios N, Enriquez-Marulanda A, Khan IS, Taussky P, Hong J, Ogilvy CS. </Authors><Journal>Neurosurg Rev</Journal><Date>2025 Apr 03</Date><IssueInfo>48(1):350</IssueInfo></Publication><Publication Source="PubMed" PMID="39961379"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39961379</URL><PublicationReference>Understanding Risk Factors for Postoperative Seizure Following Surgical Treatment and Middle Meningeal Artery Embolization of Chronic Subdural Hematomas. World Neurosurg. 2025 05; 197:123796.</PublicationReference><Title>Understanding Risk Factors for Postoperative Seizure Following Surgical Treatment and Middle Meningeal Artery Embolization of Chronic Subdural Hematomas.</Title><Authors>Ranawaka KH, Ramirez-Velandia F, Fodor TB, Wadhwa A, Salih M, Lau TS, Pacheco-Barrios N, Khan IS, Enriquez-Marulanda A, Vega RA, Mensah E, Stippler M, Taussky P, Ogilvy CS, Hong J. </Authors><Journal>World Neurosurg</Journal><Date>2025 05</Date><IssueInfo>197:123796</IssueInfo></Publication><Publication Source="PubMed" PMID="39985590"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39985590</URL><PublicationReference>Seizure presentation and incidence-associated factors in treated cerebral arteriovenous malformations: a secondary analysis of the MISTA consortium. Neurosurg Rev. 2025 Feb 22; 48(1):263.</PublicationReference><Title>Seizure presentation and incidence-associated factors in treated cerebral arteriovenous malformations: a secondary analysis of the MISTA consortium.</Title><Authors>Sconzo D, Ramirez-Velandia F, Muram S, Enriquez-Marulanda A, Adeeb N, Kandregula S, Salim HA, Musmar B, Dmytriw AA, Kondziolka D, Naamani KE, Sheehan J, Ironside N, Tos S, Abdelsalam A, Kumbhare D, Ataoglu C, Essibayi MA, Keles A, Riina H, Rezai A, Pöppe J, Sen RD, Griessenauer CJ, Jabbour P, Tjoumakaris SI, Burkhardt JK, Starke RM, Erginoglu U, Baskaya MK, Sekhar LN, Levitt MR, Altschul DJ, McAvoy M, Aslan A, Abushehab A, Swaid C, Abla A, Stapleton C, Koch M, Srinivasan VM, Chen PR, Blackburn S, Dannenbaum MJ, Choudhri O, Pukenas B, Orbach D, Smith E, Möhlenbruch M, Alaraj A, Aziz-Sultan A, Patel AB, Cuellar HH, Lawton M, Morcos J, Guthikonda B, Taussky P, Ogilvy CS. </Authors><Journal>Neurosurg Rev</Journal><Date>2025 Feb 22</Date><IssueInfo>48(1):263</IssueInfo></Publication><Publication Source="PubMed" PMID="39837024"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39837024</URL><PublicationReference>Middle meningeal artery embolization for chronic subdural hematoma in the nonagenarian population. Clin Neurol Neurosurg. 2025 Feb; 249:108747.</PublicationReference><Title>Middle meningeal artery embolization for chronic subdural hematoma in the nonagenarian population.</Title><Authors>Granstein JH, Fodor TB, Young M, Muram S, Salih M, Garcia R, Kan P, Taussky P, Ogilvy CS. </Authors><Journal>Clin Neurol Neurosurg</Journal><Date>2025 Feb</Date><IssueInfo>249:108747</IssueInfo></Publication><Publication Source="PubMed" PMID="39776263"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39776263</URL><PublicationReference>Intracranial hemorrhagic events associated with flow diversion treatment: a retrospective analysis from a single academic institution. 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J Neurointerv Surg. 2016 Oct; 8(10):1041-7.</PublicationReference><Title>Pipeline embolization device for the treatment of vertebral artery aneurysms: the fate of covered branch vessels.</Title><Authors>Mazur MD, Kilburg C, Wang V, Taussky P. </Authors><Journal>J Neurointerv Surg</Journal><Date>2016 Oct</Date><IssueInfo>8(10):1041-7</IssueInfo></Publication><Publication Source="PubMed" PMID="26429702"><URL>http://www.ncbi.nlm.nih.gov/pubmed/26429702</URL><PublicationReference>Rescue microsurgery with bypass and stent removal following Pipeline treatment of a giant internal carotid artery terminus aneurysm. Acta Neurochir (Wien). 2015 Dec; 157(12):2071-5.</PublicationReference><Title>Rescue microsurgery with bypass and stent removal following Pipeline treatment of a giant internal carotid artery terminus aneurysm.</Title><Authors>Bowers CA, Taussky P, Park MS, Neil JA, Couldwell WT. </Authors><Journal>Acta Neurochir (Wien)</Journal><Date>2015 Dec</Date><IssueInfo>157(12):2071-5</IssueInfo></Publication><Publication Source="PubMed" PMID="26428327"><URL>http://www.ncbi.nlm.nih.gov/pubmed/26428327</URL><PublicationReference>Carotid Artery Stenosis in the Setting of Transcatheter Aortic Valve Replacement: Clinical and Technical Considerations of Carotid Stenting. World Neurosurg. 2016 Feb; 86:194-8.</PublicationReference><Title>Carotid Artery Stenosis in the Setting of Transcatheter Aortic Valve Replacement: Clinical and Technical Considerations of Carotid Stenting.</Title><Authors>Ravindra VM, Mazur MD, Kumpati GS, Park MS, Patel AN, Tandar A, Welt FG, Bull D, Couldwell WT, Taussky P. </Authors><Journal>World Neurosurg</Journal><Date>2016 Feb</Date><IssueInfo>86:194-8</IssueInfo></Publication><Publication Source="PubMed" PMID="26117086"><URL>http://www.ncbi.nlm.nih.gov/pubmed/26117086</URL><PublicationReference>A Neurosurgical Call to Arms: Lessons from ARUBA, Mr. Clean, and the Hydrocephalus Clinical Research Network. World Neurosurg. 2015 Aug; 84(2):202-4.</PublicationReference><Title>A Neurosurgical Call to Arms: Lessons from ARUBA, Mr. Clean, and the Hydrocephalus Clinical Research Network.</Title><Authors>Bowers C, Taussky P, Kestle JR, Park MS. </Authors><Journal>World Neurosurg</Journal><Date>2015 Aug</Date><IssueInfo>84(2):202-4</IssueInfo></Publication><Publication Source="PubMed" PMID="25944149"><URL>http://www.ncbi.nlm.nih.gov/pubmed/25944149</URL><PublicationReference>Post-Transplant Hepatic Artery Pseudoaneurysm Treated with the Pipeline Flow-Diverting Stent. Cardiovasc Intervent Radiol. 2015 Aug; 38(4):1043-6.</PublicationReference><Title>Post-Transplant Hepatic Artery Pseudoaneurysm Treated with the Pipeline Flow-Diverting Stent.</Title><Authors>Hardman RL, Taussky P, Kim R, O'Hara RG. </Authors><Journal>Cardiovasc Intervent Radiol</Journal><Date>2015 Aug</Date><IssueInfo>38(4):1043-6</IssueInfo></Publication><Publication Source="PubMed" PMID="25828500"><URL>http://www.ncbi.nlm.nih.gov/pubmed/25828500</URL><PublicationReference>Motion-related vascular abnormalities at the craniocervical junction: illustrative case series and literature review. Neurosurg Focus. 2015 Apr; 38(4):E6.</PublicationReference><Title>Motion-related vascular abnormalities at the craniocervical junction: illustrative case series and literature review.</Title><Authors>Ravindra VM, Neil JA, Mazur MD, Park MS, Couldwell WT, Taussky P. </Authors><Journal>Neurosurg Focus</Journal><Date>2015 Apr</Date><IssueInfo>38(4):E6</IssueInfo></Publication><Publication Source="PubMed" PMID="25324976" PMCID="PMC4199149"><URL>http://www.ncbi.nlm.nih.gov/pubmed/25324976</URL><PublicationReference>Intracranial hypotension as a complication of lumbar puncture prior to elective aneurysm clipping. Surg Neurol Int. 2014; 5(Suppl 9):S427-9.</PublicationReference><Title>Intracranial hypotension as a complication of lumbar puncture prior to elective aneurysm clipping.</Title><Authors>Guan J, Couldwell WT, Taussky P. </Authors><Journal>Surg Neurol Int</Journal><Date>2014</Date><IssueInfo>5(Suppl 9):S427-9</IssueInfo></Publication><Publication Source="PubMed" PMID="25027864"><URL>http://www.ncbi.nlm.nih.gov/pubmed/25027864</URL><PublicationReference>Pineal region masses--imaging findings and surgical approaches. Curr Probl Diagn Radiol. 2015 Jan-Feb; 44(1):76-87.</PublicationReference><Title>Pineal region masses--imaging findings and surgical approaches.</Title><Authors>Lensing FD, Abele TA, Sivakumar W, Taussky P, Shah LM, Salzman KL. </Authors><Journal>Curr Probl Diagn Radiol</Journal><Date>2015 Jan-Feb</Date><IssueInfo>44(1):76-87</IssueInfo></Publication><Publication Source="PubMed" PMID="24289134"><URL>http://www.ncbi.nlm.nih.gov/pubmed/24289134</URL><PublicationReference>Management of meningiomas involving the transverse or sigmoid sinus. Neurosurg Focus. 2013 Dec; 35(6):E9.</PublicationReference><Title>Management of meningiomas involving the transverse or sigmoid sinus.</Title><Authors>Mazur MD, Cutler A, Couldwell WT, Taussky P. </Authors><Journal>Neurosurg Focus</Journal><Date>2013 Dec</Date><IssueInfo>35(6):E9</IssueInfo></Publication><Publication Source="PubMed" PMID="24030171"><URL>http://www.ncbi.nlm.nih.gov/pubmed/24030171</URL><PublicationReference>Surgical outcomes and predictors of stroke in a North American white and African American moyamoya population. Neurosurgery. 2013 Dec; 73(6):984-91; discussion 981-2.</PublicationReference><Title>Surgical outcomes and predictors of stroke in a North American white and African American moyamoya population.</Title><Authors>Mallory GW, Bower RS, Nwojo ME, Taussky P, Wetjen NM, Varzoni TC, Hanel RA, Meyer FB. </Authors><Journal>Neurosurgery</Journal><Date>2013 Dec</Date><IssueInfo>73(6):984-91; discussion 981-2</IssueInfo></Publication><Publication Source="PubMed" PMID="24221055"><URL>http://www.ncbi.nlm.nih.gov/pubmed/24221055</URL><PublicationReference>Surgical treatment of craniofacial fibrous dysplasia in adults. Neurosurg Rev. 2014 Jan; 37(1):47-53.</PublicationReference><Title>Surgical treatment of craniofacial fibrous dysplasia in adults.</Title><Authors>Bowers CA, Taussky P, Couldwell WT. </Authors><Journal>Neurosurg Rev</Journal><Date>2014 Jan</Date><IssueInfo>37(1):47-53</IssueInfo></Publication><Publication Source="PubMed" PMID="23994071"><URL>http://www.ncbi.nlm.nih.gov/pubmed/23994071</URL><PublicationReference>Complete resection of the cavernous sinus-indications and technique. World Neurosurg. 2014 Dec; 82(6):1264-70.</PublicationReference><Title>Complete resection of the cavernous sinus-indications and technique.</Title><Authors>Couldwell WT, MacDonald JD, Taussky P. </Authors><Journal>World Neurosurg</Journal><Date>2014 Dec</Date><IssueInfo>82(6):1264-70</IssueInfo></Publication><Publication Source="PubMed" PMID="23771209"><URL>http://www.ncbi.nlm.nih.gov/pubmed/23771209</URL><PublicationReference>Safety and efficacy of ticagrelor for neuroendovascular procedures. A single center initial experience. J Neurointerv Surg. 2014 May; 6(4):320-2.</PublicationReference><Title>Safety and efficacy of ticagrelor for neuroendovascular procedures. A single center initial experience.</Title><Authors>Hanel RA, Taussky P, Dixon T, Miller DA, Sapin M, Nordeen JD, Tawk RG, Navarro R, Johns G, Freeman WD. </Authors><Journal>J Neurointerv Surg</Journal><Date>2014 May</Date><IssueInfo>6(4):320-2</IssueInfo></Publication><Publication Source="PubMed" PMID="23826440" PMCID="PMC3693999"><URL>http://www.ncbi.nlm.nih.gov/pubmed/23826440</URL><PublicationReference>Clopidogrel Resistance by P2Y12 Platelet Function Testing in Patients Undergoing Neuroendovascular Procedures: Incidence of Ischemic and Hemorrhagic Complications. J Vasc Interv Neurol. 2013 Jun; 6(1):26-34.</PublicationReference><Title>Clopidogrel Resistance by P2Y12 Platelet Function Testing in Patients Undergoing Neuroendovascular Procedures: Incidence of Ischemic and Hemorrhagic Complications.</Title><Authors>Nordeen JD, Patel AV, Darracott RM, Johns GS, Taussky P, Tawk RG, Miller DA, Freeman WD, Hanel RA. </Authors><Journal>J Vasc Interv Neurol</Journal><Date>2013 Jun</Date><IssueInfo>6(1):26-34</IssueInfo></Publication><Publication Source="PubMed" PMID="23896502"><URL>http://www.ncbi.nlm.nih.gov/pubmed/23896502</URL><PublicationReference>New therapies for unruptured intracranial aneurysms. Neurol Clin. 2013 Aug; 31(3):737-47.</PublicationReference><Title>New therapies for unruptured intracranial aneurysms.</Title><Authors>Taussky P, Tawk RG, Miller DA, Freeman WD, Hanel RA. </Authors><Journal>Neurol Clin</Journal><Date>2013 Aug</Date><IssueInfo>31(3):737-47</IssueInfo></Publication><Publication Source="PubMed" PMID="22890656"><URL>http://www.ncbi.nlm.nih.gov/pubmed/22890656</URL><PublicationReference>The concept of a hybrid operating room: applications in cerebrovascular surgery. Acta Neurochir Suppl. 2013; 115:113-7.</PublicationReference><Title>The concept of a hybrid operating room: applications in cerebrovascular surgery.</Title><Authors>Fandino J, Taussky P, Marbacher S, Muroi C, Diepers M, Fathi AR, Remonda L. </Authors><Journal>Acta Neurochir Suppl</Journal><Date>2013</Date><IssueInfo>115:113-7</IssueInfo></Publication><Publication Source="PubMed" PMID="22653391"><URL>http://www.ncbi.nlm.nih.gov/pubmed/22653391</URL><PublicationReference>Submandibular high-flow bypass in the treatment of skull base lesions: an analysis of long-term outcome. Neurosurgery. 2012 Sep; 71(3):645-50; discussion 650-1.</PublicationReference><Title>Submandibular high-flow bypass in the treatment of skull base lesions: an analysis of long-term outcome.</Title><Authors>Couldwell WT, Taussky P, Sivakumar W. </Authors><Journal>Neurosurgery</Journal><Date>2012 Sep</Date><IssueInfo>71(3):645-50; discussion 650-1</IssueInfo></Publication><Publication Source="PubMed" PMID="21104584"><URL>http://www.ncbi.nlm.nih.gov/pubmed/21104584</URL><PublicationReference>Delayed vasospasm after removal of a skull base meningioma. J Neurol Surg A Cent Eur Neurosurg. 2012 Aug; 73(4):249-52.</PublicationReference><Title>Delayed vasospasm after removal of a skull base meningioma.</Title><Authors>Taussky P, Kalra R, Couldwell WT. </Authors><Journal>J Neurol Surg A Cent Eur Neurosurg</Journal><Date>2012 Aug</Date><IssueInfo>73(4):249-52</IssueInfo></Publication><Publication Source="PubMed" PMID="22539547"><URL>http://www.ncbi.nlm.nih.gov/pubmed/22539547</URL><PublicationReference>Letter by Freeman and Taussky regarding article, "Near infrared spectroscopy for the detection of desaturations in vulnerable ischemic brain tissue: a pilot study at the stroke unit bedside". Stroke. 2012 Jul; 43(7):e61; author reply e62.</PublicationReference><Title>Letter by Freeman and Taussky regarding article, "Near infrared spectroscopy for the detection of desaturations in vulnerable ischemic brain tissue: a pilot study at the stroke unit bedside".</Title><Authors>Freeman WD, Taussky P. </Authors><Journal>Stroke</Journal><Date>2012 Jul</Date><IssueInfo>43(7):e61; author reply e62</IssueInfo></Publication><Publication Source="PubMed" PMID="22296679"><URL>http://www.ncbi.nlm.nih.gov/pubmed/22296679</URL><PublicationReference>Validation of frontal near-infrared spectroscopy as noninvasive bedside monitoring for regional cerebral blood flow in brain-injured patients. Neurosurg Focus. 2012 Feb; 32(2):E2.</PublicationReference><Title>Validation of frontal near-infrared spectroscopy as noninvasive bedside monitoring for regional cerebral blood flow in brain-injured patients.</Title><Authors>Taussky P, O'Neal B, Daugherty WP, Luke S, Thorpe D, Pooley RA, Evans C, Hanel RA, Freeman WD. </Authors><Journal>Neurosurg Focus</Journal><Date>2012 Feb</Date><IssueInfo>32(2):E2</IssueInfo></Publication><Publication Source="PubMed" PMID="22182278"><URL>http://www.ncbi.nlm.nih.gov/pubmed/22182278</URL><PublicationReference>Medical therapy for ischemic stroke: review of intravenous and intra-arterial treatment options. World Neurosurg. 2011 Dec; 76(6 Suppl):S9-15.</PublicationReference><Title>Medical therapy for ischemic stroke: review of intravenous and intra-arterial treatment options.</Title><Authors>Taussky P, Tawk RG, Daugherty WP, Hanel RA. </Authors><Journal>World Neurosurg</Journal><Date>2011 Dec</Date><IssueInfo>76(6 Suppl):S9-15</IssueInfo></Publication><Publication Source="PubMed" PMID="22182270"><URL>http://www.ncbi.nlm.nih.gov/pubmed/22182270</URL><PublicationReference>Carotid endarterectomy and treatment options for carotid occlusive disease. World Neurosurg. 2011 Dec; 76(6 Suppl):S35-9.</PublicationReference><Title>Carotid endarterectomy and treatment options for carotid occlusive disease.</Title><Authors>Taussky P, Sangala JR, Meyer FB. </Authors><Journal>World Neurosurg</Journal><Date>2011 Dec</Date><IssueInfo>76(6 Suppl):S35-9</IssueInfo></Publication><Publication Source="PubMed" PMID="22133180"><URL>http://www.ncbi.nlm.nih.gov/pubmed/22133180</URL><PublicationReference>Clinical considerations in the management of asymptomatic carotid artery stenosis. Neurosurg Focus. 2011 Dec; 31(6):E7.</PublicationReference><Title>Clinical considerations in the management of asymptomatic carotid artery stenosis.</Title><Authors>Taussky P, Hanel RA, Meyer FB. </Authors><Journal>Neurosurg Focus</Journal><Date>2011 Dec</Date><IssueInfo>31(6):E7</IssueInfo></Publication><Publication Source="PubMed" PMID="22120569"><URL>http://www.ncbi.nlm.nih.gov/pubmed/22120569</URL><PublicationReference>Age and salvageability: analysis of outcome of patients older than 65 years undergoing craniotomy for acute traumatic subdural hematoma. World Neurosurg. 2012 Sep-Oct; 78(3-4):306-11.</PublicationReference><Title>Age and salvageability: analysis of outcome of patients older than 65 years undergoing craniotomy for acute traumatic subdural hematoma.</Title><Authors>Taussky P, Hidalgo ET, Landolt H, Fandino J. </Authors><Journal>World Neurosurg</Journal><Date>2012 Sep-Oct</Date><IssueInfo>78(3-4):306-11</IssueInfo></Publication><Publication Source="PubMed" PMID="21854115"><URL>http://www.ncbi.nlm.nih.gov/pubmed/21854115</URL><PublicationReference>Brain wounds. J Neurosurg. 2011 Oct; 115(4):872-3; author reply 873.</PublicationReference><Title>Brain wounds.</Title><Authors>Taussky P, Fults DW. </Authors><Journal>J Neurosurg</Journal><Date>2011 Oct</Date><IssueInfo>115(4):872-3; author reply 873</IssueInfo></Publication><Publication Source="PubMed" PMID="21424871"><URL>http://www.ncbi.nlm.nih.gov/pubmed/21424871</URL><PublicationReference>The life of Rudolf Nissen: advancing surgery through science and principle. World J Surg. 2011 Jun; 35(6):1402-8.</PublicationReference><Title>The life of Rudolf Nissen: advancing surgery through science and principle.</Title><Authors>Fults DW, Taussky P. </Authors><Journal>World J Surg</Journal><Date>2011 Jun</Date><IssueInfo>35(6):1402-8</IssueInfo></Publication><Publication Source="PubMed" PMID="21513444"><URL>http://www.ncbi.nlm.nih.gov/pubmed/21513444</URL><PublicationReference>Malignant peripheral nerve sheath tumour of the trigeminal nerve: case report and literature review. Br J Neurosurg. 2011 Dec; 25(6):750-3.</PublicationReference><Title>Malignant peripheral nerve sheath tumour of the trigeminal nerve: case report and literature review.</Title><Authors>Bowers CA, Taussky P, Duhon BS, Chin SS, Couldwell WT. </Authors><Journal>Br J Neurosurg</Journal><Date>2011 Dec</Date><IssueInfo>25(6):750-3</IssueInfo></Publication><Publication Source="PubMed" PMID="21511867" PMCID="PMC7968795"><URL>http://www.ncbi.nlm.nih.gov/pubmed/21511867</URL><PublicationReference>Mathematic analysis of incremental packing density with detachable coils: does that last coil matter much? AJNR Am J Neuroradiol. 2012 May; 33(5):E74-5.</PublicationReference><Title>Mathematic analysis of incremental packing density with detachable coils: does that last coil matter much?</Title><Authors>Taussky P, Kallmes DF, Cloft H. </Authors><Journal>AJNR Am J Neuroradiol</Journal><Date>2012 May</Date><IssueInfo>33(5):E74-5</IssueInfo></Publication><Publication Source="PubMed" PMID="21395389"><URL>http://www.ncbi.nlm.nih.gov/pubmed/21395389</URL><PublicationReference>Endocrinological outcome after pituitary transposition (hypophysopexy) and adjuvant radiotherapy for tumors involving the cavernous sinus. J Neurosurg. 2011 Jul; 115(1):55-62.</PublicationReference><Title>Endocrinological outcome after pituitary transposition (hypophysopexy) and adjuvant radiotherapy for tumors involving the cavernous sinus.</Title><Authors>Taussky P, Kalra R, Coppens J, Mohebali J, Jensen R, Couldwell WT. </Authors><Journal>J Neurosurg</Journal><Date>2011 Jul</Date><IssueInfo>115(1):55-62</IssueInfo></Publication><Publication Source="PubMed" PMID="21344362"><URL>http://www.ncbi.nlm.nih.gov/pubmed/21344362</URL><PublicationReference>Surgical management of a ruptured and unruptured distal anterior inferior cerebellar artery aneurysm. Report of 2 cases and review of the literature. Cent Eur Neurosurg. 2011 May; 72(2):108-11.</PublicationReference><Title>Surgical management of a ruptured and unruptured distal anterior inferior cerebellar artery aneurysm. Report of 2 cases and review of the literature.</Title><Authors>Taussky P, Garber S, Schmidt RH. </Authors><Journal>Cent Eur Neurosurg</Journal><Date>2011 May</Date><IssueInfo>72(2):108-11</IssueInfo></Publication><Publication Source="PubMed" PMID="21270696"><URL>http://www.ncbi.nlm.nih.gov/pubmed/21270696</URL><PublicationReference>Multiple supra- and infratentorial intraparenchymal hemorrhages presenting with seizure after massive sacral cerebrospinal fluid drainage. Spine (Phila Pa 1976). 2011 Feb 15; 36(4):E288-91.</PublicationReference><Title>Multiple supra- and infratentorial intraparenchymal hemorrhages presenting with seizure after massive sacral cerebrospinal fluid drainage.</Title><Authors>Bowers CA, Taussky P, Duhon BS, Schmidt MH. </Authors><Journal>Spine (Phila Pa 1976)</Journal><Date>2011 Feb 15</Date><IssueInfo>36(4):E288-91</IssueInfo></Publication><Publication Source="PubMed" PMID="21194278"><URL>http://www.ncbi.nlm.nih.gov/pubmed/21194278</URL><PublicationReference>Editorial. Vein of Galen malformation. J Neurosurg Pediatr. 2011 Jan; 7(1):1; discussion 2.</PublicationReference><Title>Editorial. Vein of Galen malformation.</Title><Authors>Lanzino G, Taussky P. </Authors><Journal>J Neurosurg Pediatr</Journal><Date>2011 Jan</Date><IssueInfo>7(1):1; discussion 2</IssueInfo></Publication><Publication Source="PubMed" PMID="20950079"><URL>http://www.ncbi.nlm.nih.gov/pubmed/20950079</URL><PublicationReference>Cardiac standstill. J Neurosurg. 2011 Mar; 114(3):875-6; discussion 876.</PublicationReference><Title>Cardiac standstill.</Title><Authors>Lanzino G, Taussky P. </Authors><Journal>J Neurosurg</Journal><Date>2011 Mar</Date><IssueInfo>114(3):875-6; discussion 876</IssueInfo></Publication><Publication Source="PubMed" PMID="20562459"><URL>http://www.ncbi.nlm.nih.gov/pubmed/20562459</URL><PublicationReference>Decompressive craniectomy after intra-arterial thrombolysis: safety and outcome. J Neurol Neurosurg Psychiatry. 2011 Aug; 82(8):885-7.</PublicationReference><Title>Decompressive craniectomy after intra-arterial thrombolysis: safety and outcome.</Title><Authors>Fischer U, Taussky P, Gralla J, Arnold M, Brekenfeld C, Reinert M, Meier N, Mono ML, Schroth G, Mattle HP, Nedeltchev K. </Authors><Journal>J Neurol Neurosurg Psychiatry</Journal><Date>2011 Aug</Date><IssueInfo>82(8):885-7</IssueInfo></Publication><Publication Source="PubMed" PMID="20466797" PMCID="PMC7965453"><URL>http://www.ncbi.nlm.nih.gov/pubmed/20466797</URL><PublicationReference>A checklist in the event of aneurysm perforation during coiling. AJNR Am J Neuroradiol. 2010 Aug; 31(7):E59.</PublicationReference><Title>A checklist in the event of aneurysm perforation during coiling.</Title><Authors>Taussky P, Lanzino G, Cloft H, Kallmes D. </Authors><Journal>AJNR Am J Neuroradiol</Journal><Date>2010 Aug</Date><IssueInfo>31(7):E59</IssueInfo></Publication><Publication Source="PubMed" PMID="18491241"><URL>http://www.ncbi.nlm.nih.gov/pubmed/18491241</URL><PublicationReference>Outcome after acute traumatic subdural and epidural haematoma in Switzerland: a single-centre experience. Swiss Med Wkly. 2008 May 03; 138(19-20):281-5.</PublicationReference><Title>Outcome after acute traumatic subdural and epidural haematoma in Switzerland: a single-centre experience.</Title><Authors>Taussky P, Widmer HR, Takala J, Fandino J. </Authors><Journal>Swiss Med Wkly</Journal><Date>2008 May 03</Date><IssueInfo>138(19-20):281-5</IssueInfo></Publication><Publication Source="PubMed" PMID="18371497"><URL>http://www.ncbi.nlm.nih.gov/pubmed/18371497</URL><PublicationReference>Profiles in volunteerism. Experiences as a neurosurgical volunteer in Prijepolje, Serbia. Surg Neurol. 2008 Apr; 69(4):430-1.</PublicationReference><Title>Profiles in volunteerism. Experiences as a neurosurgical volunteer in Prijepolje, Serbia.</Title><Authors>Taussky P, Cheatham M. </Authors><Journal>Surg Neurol</Journal><Date>2008 Apr</Date><IssueInfo>69(4):430-1</IssueInfo></Publication><Publication Source="PubMed" PMID="18348026"><URL>http://www.ncbi.nlm.nih.gov/pubmed/18348026</URL><PublicationReference>Number of burr holes as independent predictor of postoperative recurrence in chronic subdural haematoma. Br J Neurosurg. 2008 Apr; 22(2):279-82.</PublicationReference><Title>Number of burr holes as independent predictor of postoperative recurrence in chronic subdural haematoma.</Title><Authors>Taussky P, Fandino J, Landolt H. </Authors><Journal>Br J Neurosurg</Journal><Date>2008 Apr</Date><IssueInfo>22(2):279-82</IssueInfo></Publication><Publication Source="PubMed" PMID="16060257"><URL>http://www.ncbi.nlm.nih.gov/pubmed/16060257</URL><PublicationReference>Cerebral revascularization model in a swine. Acta Neurochir Suppl. 2005; 94:153-7.</PublicationReference><Title>Cerebral revascularization model in a swine.</Title><Authors>Reinert M, Brekenfeld C, Taussky P, Andres R, Barth A, Seiler RW. </Authors><Journal>Acta Neurochir Suppl</Journal><Date>2005</Date><IssueInfo>94:153-7</IssueInfo></Publication><Publication Source="PubMed" PMID="14963741"><URL>http://www.ncbi.nlm.nih.gov/pubmed/14963741</URL><PublicationReference>Clinical outcome of standard extracranial-intracranial bypass surgery in patients with symptomatic atherosclerotic occlusion of the internal carotid artery. Acta Neurochir (Wien). 2004 Feb; 146(2):95-101.</PublicationReference><Title>Clinical outcome of standard extracranial-intracranial bypass surgery in patients with symptomatic atherosclerotic occlusion of the internal carotid artery.</Title><Authors>Mendelowitsch A, Taussky P, Rem JA, Gratzl O. </Authors><Journal>Acta Neurochir (Wien)</Journal><Date>2004 Feb</Date><IssueInfo>146(2):95-101</IssueInfo></Publication><Publication Source="PubMed" PMID="12173321"><URL>http://www.ncbi.nlm.nih.gov/pubmed/12173321</URL><PublicationReference>Clinical and screening implications of the I1307K adenomatous polyposis coli gene variant in Israeli Ashkenazi Jews with familial colorectal neoplasia. Evidence for a founder effect. Cancer. 2002 May 15; 94(10):2561-8.</PublicationReference><Title>Clinical and screening implications of the I1307K adenomatous polyposis coli gene variant in Israeli Ashkenazi Jews with familial colorectal neoplasia. Evidence for a founder effect.</Title><Authors>Rozen P, Naiman T, Strul H, Taussky P, Karminsky N, Shomrat R, Samuel Z, Yaron Y, Orr-Urtreger A. </Authors><Journal>Cancer</Journal><Date>2002 May 15</Date><IssueInfo>94(10):2561-8</IssueInfo></Publication></PublicationList><ConceptList><Concept><MeshHeader>Intracranial Aneurysm</MeshHeader><NumPubs>74</NumPubs><Weight>9.523585294009722e+000</Weight><FirstPubDate>2010-05-13T00:00:00</FirstPubDate><LastPubDate>2025-12-23T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Embolization, Therapeutic</MeshHeader><NumPubs>57</NumPubs><Weight>6.450430889110929e+000</Weight><FirstPubDate>2010-05-13T00:00:00</FirstPubDate><LastPubDate>2025-12-23T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Endovascular Procedures</MeshHeader><NumPubs>50</NumPubs><Weight>3.962323413141993e+000</Weight><FirstPubDate>2010-10-15T00:00:00</FirstPubDate><LastPubDate>2025-12-23T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Aneurysm, 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Single-Photon</MeshHeader><NumPubs>1</NumPubs><Weight>8.964000933942177e-003</Weight><FirstPubDate>2004-01-30T00:00:00</FirstPubDate><LastPubDate>2004-01-30T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Hemorrhage</MeshHeader><NumPubs>1</NumPubs><Weight>8.573213135662136e-003</Weight><FirstPubDate>2010-06-20T00:00:00</FirstPubDate><LastPubDate>2010-06-20T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Infant, Newborn</MeshHeader><NumPubs>1</NumPubs><Weight>8.277929001632784e-003</Weight><FirstPubDate>2018-02-23T00:00:00</FirstPubDate><LastPubDate>2018-02-23T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Black or African American</MeshHeader><NumPubs>1</NumPubs><Weight>8.162295791809125e-003</Weight><FirstPubDate>2013-12-01T00:00:00</FirstPubDate><LastPubDate>2013-12-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Swine</MeshHeader><NumPubs>1</NumPubs><Weight>7.138764715057953e-003</Weight><FirstPubDate>2005-01-01T00:00:00</FirstPubDate><LastPubDate>2005-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Radiography</MeshHeader><NumPubs>1</NumPubs><Weight>6.463326524769539e-003</Weight><FirstPubDate>2005-01-01T00:00:00</FirstPubDate><LastPubDate>2005-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Disease Progression</MeshHeader><NumPubs>1</NumPubs><Weight>6.411072765118826e-003</Weight><FirstPubDate>2011-04-22T00:00:00</FirstPubDate><LastPubDate>2011-04-22T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Feasibility Studies</MeshHeader><NumPubs>1</NumPubs><Weight>6.194172193921067e-003</Weight><FirstPubDate>2005-01-01T00:00:00</FirstPubDate><LastPubDate>2005-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Reoperation</MeshHeader><NumPubs>1</NumPubs><Weight>5.954484667733128e-003</Weight><FirstPubDate>2004-01-30T00:00:00</FirstPubDate><LastPubDate>2004-01-30T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Pregnancy</MeshHeader><NumPubs>1</NumPubs><Weight>5.542563935743546e-003</Weight><FirstPubDate>2013-11-13T00:00:00</FirstPubDate><LastPubDate>2013-11-13T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Hypertension</MeshHeader><NumPubs>1</NumPubs><Weight>4.863887813566848e-003</Weight><FirstPubDate>2010-06-20T00:00:00</FirstPubDate><LastPubDate>2010-06-20T00:00:00</LastPubDate></Concept></ConceptList></Person><Person PersonID="182383"><Name><FullName>Rafael A. Vega, M.D.</FullName><FirstName>Rafael</FirstName><LastName>Vega</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2>Suite 3B</Address2><Address3>110 Francis Street</Address3><Address4>Boston, MA 02215</Address4><Telephone>617/632-7246</Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Assistant Professor of Neurosurgery</JobTitle><FacultyType FacultyTypeSort="2">Assistant Professor</FacultyType></Affiliation><Affiliation Primary="false"><AffiliationID>2</AffiliationID><InstitutionAbbreviation>HMS</InstitutionAbbreviation><InstitutionName>Harvard Medical School</InstitutionName><DepartmentName>PME</DepartmentName><DivisionName /><JobTitle>PCE Core Faculty in the Surgery Core Clerkship</JobTitle><FacultyType FacultyTypeSort="5">Other Faculty</FacultyType></Affiliation></AffiliationList><PhotoUrl>https://connects.catalyst.harvard.edu/Profiles/profile/Modules/CustomViewPersonGeneralInfo/PhotoHandler.ashx?NodeID=127206335</PhotoUrl><PublicationList><Publication Source="PubMed" PMID="41247563"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41247563</URL><PublicationReference>Post-ablation volume threshold for brain metastasis control using LITT: a systematic review and critical appraisal. J Neurooncol. 2025 Nov 17; 176(1):85.</PublicationReference><Title>Post-ablation volume threshold for brain metastasis control using LITT: a systematic review and critical appraisal.</Title><Authors>Terry F, Brito A, Váscones-Román FF, Rivera V, Enríquez-Marulanda A, Wadhwa A, Alwakaa O, Morán C, Moses ZB, Komotar RJ, Vega RA, Merenzon M. </Authors><Journal>J Neurooncol</Journal><Date>2025 Nov 17</Date><IssueInfo>176(1):85</IssueInfo></Publication><Publication Source="PubMed" PMID="40163997" PMCID="PMC11959643"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40163997</URL><PublicationReference>Resection of sphenoid wing meningioma with blood pressure augmentation reverses acute symptomatic left middle cerebral artery syndrome: illustrative case. J Neurosurg Case Lessons. 2025 Mar 31; 9(13).</PublicationReference><Title>Resection of sphenoid wing meningioma with blood pressure augmentation reverses acute symptomatic left middle cerebral artery syndrome: illustrative case.</Title><Authors>Oshotse CO, McNeil E, Vega RA. </Authors><Journal>J Neurosurg Case Lessons</Journal><Date>2025 Mar 31</Date><IssueInfo>9(13)</IssueInfo></Publication><Publication Source="PubMed" PMID="39961379"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39961379</URL><PublicationReference>Understanding Risk Factors for Postoperative Seizure Following Surgical Treatment and Middle Meningeal Artery Embolization of Chronic Subdural Hematomas. World Neurosurg. 2025 05; 197:123796.</PublicationReference><Title>Understanding Risk Factors for Postoperative Seizure Following Surgical Treatment and Middle Meningeal Artery Embolization of Chronic Subdural Hematomas.</Title><Authors>Ranawaka KH, Ramirez-Velandia F, Fodor TB, Wadhwa A, Salih M, Lau TS, Pacheco-Barrios N, Khan IS, Enriquez-Marulanda A, Vega RA, Mensah E, Stippler M, Taussky P, Ogilvy CS, Hong J. </Authors><Journal>World Neurosurg</Journal><Date>2025 05</Date><IssueInfo>197:123796</IssueInfo></Publication><Publication Source="PubMed" PMID="40149281" PMCID="PMC11940119"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40149281</URL><PublicationReference>Temporal Dynamics and Clinical Predictors of Brain Metastasis in Breast Cancer: A Two-Decade Cohort Analysis Toward Tailored CNS Screening. Cancers (Basel). 2025 Mar 11; 17(6).</PublicationReference><Title>Temporal Dynamics and Clinical Predictors of Brain Metastasis in Breast Cancer: A Two-Decade Cohort Analysis Toward Tailored CNS Screening.</Title><Authors>Terry F, Orrego-Gonzalez E, Enríquez-Marulanda A, Pacheco-Barrios N, Merenzon M, Komotar RJ, Vega RA. </Authors><Journal>Cancers (Basel)</Journal><Date>2025 Mar 11</Date><IssueInfo>17(6)</IssueInfo></Publication><Publication Source="PubMed" PMID="40376683" PMCID="PMC12080538"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40376683</URL><PublicationReference>Effects of craniectomy defect on tumor-treating fields. Neurooncol Adv. 2025 Jan-Dec; 7(1):vdaf045.</PublicationReference><Title>Effects of craniectomy defect on tumor-treating fields.</Title><Authors>Lok E, Chang B, Vega R, Haack M, Wong ET. </Authors><Journal>Neurooncol Adv</Journal><Date>2025 Jan-Dec</Date><IssueInfo>7(1):vdaf045</IssueInfo></Publication><Publication Source="PubMed" PMID="39321468"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39321468</URL><PublicationReference>DNA methylation profiling in a case of papillary tumor of the pineal region. J Neuropathol Exp Neurol. 2025 Feb 01; 84(2):158-160.</PublicationReference><Title>DNA methylation profiling in a case of papillary tumor of the pineal region.</Title><Authors>Schwartz SN, Stamer DK, Jiles E, Varma H, Vega RA, White B. </Authors><Journal>J Neuropathol Exp Neurol</Journal><Date>2025 Feb 01</Date><IssueInfo>84(2):158-160</IssueInfo></Publication><Publication Source="PubMed" PMID="39680886" PMCID="PMC11665147"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39680886</URL><PublicationReference>Integrated management of concurrent traumatic penetrating brain injury and electrical injury: illustrative case. J Neurosurg Case Lessons. 2024 Dec 16; 8(25).</PublicationReference><Title>Integrated management of concurrent traumatic penetrating brain injury and electrical injury: illustrative case.</Title><Authors>Raelly-Muze LK, Vega RA, Hutchins LM. </Authors><Journal>J Neurosurg Case Lessons</Journal><Date>2024 Dec 16</Date><IssueInfo>8(25)</IssueInfo></Publication><Publication Source="PubMed" PMID="39249115"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39249115</URL><PublicationReference>Hearing preservation and quality of life in small to medium sized vestibular schwannomas after a wait and scan approach or stereotactic radiosurgery: a systematic review and meta-analysis. Acta Neurochir (Wien). 2024 09 09; 166(1):361.</PublicationReference><Title>Hearing preservation and quality of life in small to medium sized vestibular schwannomas after a wait and scan approach or stereotactic radiosurgery: a systematic review and meta-analysis.</Title><Authors>Brito A, Silva JDS, Terry F, Punukollu A, Levy AS, Silva ALM, Speckter H, Morell AA, Enriquez-Marulanda A, Moses ZB, Komotar RJ, Vega RA. </Authors><Journal>Acta Neurochir (Wien)</Journal><Date>2024 09 09</Date><IssueInfo>166(1):361</IssueInfo></Publication><Publication Source="PubMed" PMID="39177304"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39177304</URL><PublicationReference>Rethinking the role of surgical resection in the management of primary pituitary lymphoma. Br J Neurosurg. 2025 Dec; 39(6):844-848.</PublicationReference><Title>Rethinking the role of surgical resection in the management of primary pituitary lymphoma.</Title><Authors>Filo J, Zhao M, Orrego-Gonzalez E, Schwartz SN, White B, Varma H, Vega RA. </Authors><Journal>Br J Neurosurg</Journal><Date>2025 Dec</Date><IssueInfo>39(6):844-848</IssueInfo></Publication><Publication Source="PubMed" PMID="39159499" PMCID="PMC11337938"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39159499</URL><PublicationReference>Diffuse large B-cell lymphoma in the C8 root mimicking a schwannoma: illustrative case. J Neurosurg Case Lessons. 2024 Aug 19; 8(8).</PublicationReference><Title>Diffuse large B-cell lymphoma in the C8 root mimicking a schwannoma: illustrative case.</Title><Authors>Ramirez-Velandia F, Manchella MK, Penumaka A, Schwartz SN, Varma H, Vega RA, Moses ZB. </Authors><Journal>J Neurosurg Case Lessons</Journal><Date>2024 Aug 19</Date><IssueInfo>8(8)</IssueInfo></Publication><Publication Source="PubMed" PMID="39046560"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39046560</URL><PublicationReference>Cranial stair-step incision for minimizing postoperative complications in neuro-oncologic surgery: A propensity score-matched analysis. Acta Neurochir (Wien). 2024 07 24; 166(1):305.</PublicationReference><Title>Cranial stair-step incision for minimizing postoperative complications in neuro-oncologic surgery: A propensity score-matched analysis.</Title><Authors>Park JB, Filo J, Rahmani B, Adebagbo OD, Lee D, Escobar-Domingo MJ, Garvey SR, Arnautovic A, Cauley RP, Vega RA. </Authors><Journal>Acta Neurochir (Wien)</Journal><Date>2024 07 24</Date><IssueInfo>166(1):305</IssueInfo></Publication><Publication Source="PubMed" PMID="38967423"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38967423</URL><PublicationReference>Comparison of Postoperative Seizures Between Burr-Hole Evacuation and Craniotomy in Patients With Nonacute Subdural Hematomas: A Bi-Institutional Propensity Score-Matched Analysis. Neurosurgery. 2025 Jan 01; 96(1):122-130.</PublicationReference><Title>Comparison of Postoperative Seizures Between Burr-Hole Evacuation and Craniotomy in Patients With Nonacute Subdural Hematomas: A Bi-Institutional Propensity Score-Matched Analysis.</Title><Authors>Ramirez-Velandia F, Ranawaka KH, Wadhwa A, Salih M, Fodor TB, Lau TS, Pacheco-Barrios N, Enriquez-Marulanda A, Khan IS, Vega RA, Stippler M, Taussky P, Hong J, Ogilvy CS. </Authors><Journal>Neurosurgery</Journal><Date>2025 Jan 01</Date><IssueInfo>96(1):122-130</IssueInfo></Publication><Publication Source="PubMed" PMID="38906476"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38906476</URL><PublicationReference>Factors Associated with Extended Hospitalization in Patients Who Had Adjuvant Middle Meningeal Artery Embolization After Conventional Surgery for Chronic Subdural Hematomas. World Neurosurg. 2024 09; 189:e168-e176.</PublicationReference><Title>Factors Associated with Extended Hospitalization in Patients Who Had Adjuvant Middle Meningeal Artery Embolization After Conventional Surgery for Chronic Subdural Hematomas.</Title><Authors>Filo J, Salih M, Alwakaa O, Ramirez-Velandia F, Shutran M, Vega RA, Stippler M, Papavassiliou E, Alterman RL, Thomas A, Taussky P, Moore J, Ogilvy CS. </Authors><Journal>World Neurosurg</Journal><Date>2024 09</Date><IssueInfo>189:e168-e176</IssueInfo></Publication><Publication Source="PubMed" PMID="38770467" PMCID="PMC11104278"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38770467</URL><PublicationReference>Educational Limitations of ChatGPT in Neurosurgery Board Preparation. 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Neoplasms</MeshHeader><NumPubs>1</NumPubs><Weight>4.007005033846692e-001</Weight><FirstPubDate>2014-07-09T00:00:00</FirstPubDate><LastPubDate>2014-07-09T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Middle Cerebral Artery</MeshHeader><NumPubs>1</NumPubs><Weight>3.939637712424471e-001</Weight><FirstPubDate>2015-01-10T00:00:00</FirstPubDate><LastPubDate>2015-01-10T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Antifibrinolytic Agents</MeshHeader><NumPubs>1</NumPubs><Weight>3.870605249714608e-001</Weight><FirstPubDate>2016-06-14T00:00:00</FirstPubDate><LastPubDate>2016-06-14T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Arnold-Chiari Malformation</MeshHeader><NumPubs>1</NumPubs><Weight>3.621783061006954e-001</Weight><FirstPubDate>2014-01-27T00:00:00</FirstPubDate><LastPubDate>2014-01-27T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Brain Stem Neoplasms</MeshHeader><NumPubs>1</NumPubs><Weight>3.555942656933996e-001</Weight><FirstPubDate>2014-01-27T00:00:00</FirstPubDate><LastPubDate>2014-01-27T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Hematinics</MeshHeader><NumPubs>1</NumPubs><Weight>3.497920400103308e-001</Weight><FirstPubDate>2014-05-30T00:00:00</FirstPubDate><LastPubDate>2014-05-30T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Heart Neoplasms</MeshHeader><NumPubs>1</NumPubs><Weight>3.441587487289924e-001</Weight><FirstPubDate>2015-01-10T00:00:00</FirstPubDate><LastPubDate>2015-01-10T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Stereotaxic Techniques</MeshHeader><NumPubs>1</NumPubs><Weight>3.330872039246447e-001</Weight><FirstPubDate>2013-10-11T00:00:00</FirstPubDate><LastPubDate>2013-10-11T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Quality of Life</MeshHeader><NumPubs>2</NumPubs><Weight>3.229724369517492e-001</Weight><FirstPubDate>2020-06-01T00:00:00</FirstPubDate><LastPubDate>2024-09-09T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Glioma</MeshHeader><NumPubs>2</NumPubs><Weight>3.195126811285081e-001</Weight><FirstPubDate>2014-01-27T00:00:00</FirstPubDate><LastPubDate>2023-11-20T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Temporal Bone</MeshHeader><NumPubs>1</NumPubs><Weight>3.150266622382147e-001</Weight><FirstPubDate>2014-07-09T00:00:00</FirstPubDate><LastPubDate>2014-07-09T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Erythropoietin</MeshHeader><NumPubs>1</NumPubs><Weight>3.140386944605618e-001</Weight><FirstPubDate>2014-05-30T00:00:00</FirstPubDate><LastPubDate>2014-05-30T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Blood Loss, 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Dyes</MeshHeader><NumPubs>1</NumPubs><Weight>8.691514086506553e-003</Weight><FirstPubDate>2006-04-14T00:00:00</FirstPubDate><LastPubDate>2006-04-14T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Base Sequence</MeshHeader><NumPubs>1</NumPubs><Weight>8.020000898642065e-003</Weight><FirstPubDate>2007-10-10T00:00:00</FirstPubDate><LastPubDate>2007-10-10T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Acute Disease</MeshHeader><NumPubs>1</NumPubs><Weight>7.916475097970199e-003</Weight><FirstPubDate>2007-08-01T00:00:00</FirstPubDate><LastPubDate>2007-08-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Signal Transduction</MeshHeader><NumPubs>1</NumPubs><Weight>7.085580078717226e-003</Weight><FirstPubDate>2018-09-14T00:00:00</FirstPubDate><LastPubDate>2018-09-14T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Time Factors</MeshHeader><NumPubs>2</NumPubs><Weight>6.951093393099397e-003</Weight><FirstPubDate>2006-04-14T00:00:00</FirstPubDate><LastPubDate>2007-08-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>B-Lymphocytes</MeshHeader><NumPubs>1</NumPubs><Weight>6.304761087869556e-003</Weight><FirstPubDate>2007-08-01T00:00:00</FirstPubDate><LastPubDate>2007-08-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Prospective Studies</MeshHeader><NumPubs>1</NumPubs><Weight>4.930436955755663e-003</Weight><FirstPubDate>2015-01-01T00:00:00</FirstPubDate><LastPubDate>2015-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Sensitivity and Specificity</MeshHeader><NumPubs>1</NumPubs><Weight>4.846217843868972e-003</Weight><FirstPubDate>2005-03-09T00:00:00</FirstPubDate><LastPubDate>2005-03-09T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Severity of Illness Index</MeshHeader><NumPubs>1</NumPubs><Weight>4.714646665845122e-003</Weight><FirstPubDate>2007-08-01T00:00:00</FirstPubDate><LastPubDate>2007-08-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Young Adult</MeshHeader><NumPubs>1</NumPubs><Weight>4.161714672974480e-003</Weight><FirstPubDate>2015-01-01T00:00:00</FirstPubDate><LastPubDate>2015-01-01T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Adolescent</MeshHeader><NumPubs>1</NumPubs><Weight>3.751110256116300e-003</Weight><FirstPubDate>2015-01-01T00:00:00</FirstPubDate><LastPubDate>2015-01-01T00:00:00</LastPubDate></Concept></ConceptList></Person><Person PersonID="220327"><Name><FullName>Vishal Venkatraman, M.D.</FullName><FirstName>Vishal</FirstName><LastName>Venkatraman</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2> </Address2><Address3>330 Brookline Ave</Address3><Address4>Boston, MA 02215</Address4><Telephone> </Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Clinical Fellow in Neurosurgery</JobTitle><FacultyType FacultyTypeSort="6">Fellow or Post Doc</FacultyType></Affiliation></AffiliationList><PublicationList><Publication Source="PubMed" PMID="40682579"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40682579</URL><PublicationReference>A Competency-Based Approach to Functional Neurosurgery Training: Insights From the Surgical Autonomy Program. Neuromodulation. 2025 Jul 18.</PublicationReference><Title>A Competency-Based Approach to Functional Neurosurgery Training: Insights From the Surgical Autonomy Program.</Title><Authors>Hon K, Warman P, Venkatraman V, Suarez AD, Kelly-Hendrick M, Teshome S, Dharmapurikar R, Haglund MM, Lad SP. </Authors><Journal>Neuromodulation</Journal><Date>2025 Jul 18</Date><IssueInfo /></Publication><Publication Source="PubMed" PMID="40510094" PMCID="PMC12160069"><URL>http://www.ncbi.nlm.nih.gov/pubmed/40510094</URL><PublicationReference>Enhancing Low Back Pain Management: The Diagnostic and Prognostic Role of Single Photon Emission Computed Tomography-Computerized Tomography (SPECT-CT) in Surgical Outcomes. Cureus. 2025 May; 17(5):e84015.</PublicationReference><Title>Enhancing Low Back Pain Management: The Diagnostic and Prognostic Role of Single Photon Emission Computed Tomography-Computerized Tomography (SPECT-CT) in Surgical Outcomes.</Title><Authors>Futch BG, Venkatraman V, OCallaghan E, Albanese J, Morsi SM, Paturu M, Futrell M, Foster N, Rocos B, Zein M, Than KD, Shaffrey C, Goodwin CR, Kelleher C, Abd-El-Barr M. </Authors><Journal>Cureus</Journal><Date>2025 May</Date><IssueInfo>17(5):e84015</IssueInfo></Publication><Publication Source="PubMed" PMID="41163991" PMCID="PMC12560703"><URL>http://www.ncbi.nlm.nih.gov/pubmed/41163991</URL><PublicationReference>Study Protocol: Single-Blinded, Controlled, Clinical Trial Evaluating the Feasibility of Spinal Cord Stimulation for Improving Neuropathic Pain and Rehabilitation Outcomes in Patients With Thoracic Spinal Cord Injury. Neurosurg Pract. 2025 Jun; 6(2):e00135.</PublicationReference><Title>Study Protocol: Single-Blinded, Controlled, Clinical Trial Evaluating the Feasibility of Spinal Cord Stimulation for Improving Neuropathic Pain and Rehabilitation Outcomes in Patients With Thoracic Spinal Cord Injury.</Title><Authors>Futch BG, Venkatraman V, Smith A, Spell AW, Seas A, Warman PI, Woo J, Hon K, Bullock S, Thoreson C, Liu B, Lee HJ, Chow SC, Lindsay T, Lott D, Murphy DLK, Davis SW, Peterchev AV, Song AW, Zein M, Peterson AC, Nosé BD, Parente B, Abd-El-Barr MM, Turner DA, Lad SP. </Authors><Journal>Neurosurg Pract</Journal><Date>2025 Jun</Date><IssueInfo>6(2):e00135</IssueInfo></Publication><Publication Source="PubMed" PMID="39471099"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39471099</URL><PublicationReference>Assessing Neurosurgery Training: Accreditation Council for Graduate Medical Education Case Minimums Versus Surgical Autonomy. Neurosurgery. 2025 Jun 01; 96(6):1333-1340.</PublicationReference><Title>Assessing Neurosurgery Training: Accreditation Council for Graduate Medical Education Case Minimums Versus Surgical Autonomy.</Title><Authors>Venkatraman V, Kelly-Hedrick M, Suarez AD, Dharmapurikar R, Lad SP, Haglund MM. </Authors><Journal>Neurosurgery</Journal><Date>2025 Jun 01</Date><IssueInfo>96(6):1333-1340</IssueInfo></Publication><Publication Source="PubMed" PMID="39416402" PMCID="PMC11475442"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39416402</URL><PublicationReference>Gender Differences in Operative Autonomy Using the Surgical Autonomy Program: A Multicenter Study. J Grad Med Educ. 2024 Oct; 16(5):517-524.</PublicationReference><Title>Gender Differences in Operative Autonomy Using the Surgical Autonomy Program: A Multicenter Study.</Title><Authors>Kirsch EP, Venkatraman V, Deng D, McDaniel KE, Suarez AD, Lew SM, Orina J, Silberstein H, Goldstein I, Gould G, Gandhi CD, Patil C, Dengler BA, Dharmapurikar R, Lad SP, Haglund MM. </Authors><Journal>J Grad Med Educ</Journal><Date>2024 Oct</Date><IssueInfo>16(5):517-524</IssueInfo></Publication><Publication Source="PubMed" PMID="39399077" PMCID="PMC11467272"><URL>http://www.ncbi.nlm.nih.gov/pubmed/39399077</URL><PublicationReference>Clinical and radiographic outcomes after index anterior cervical discectomy and fusion with interbody spacer with integrated anchor fixation: a single-surgeon case study. J Spine Surg. 2024 Sep 23; 10(3):416-427.</PublicationReference><Title>Clinical and radiographic outcomes after index anterior cervical discectomy and fusion with interbody spacer with integrated anchor fixation: a single-surgeon case study.</Title><Authors>Venkatraman V, Albanese J, Zaidi SE, Than KD, Erickson MM, Crutcher CL, Goodwin CR, Groff MW, Abd-El-Barr MM. </Authors><Journal>J Spine Surg</Journal><Date>2024 Sep 23</Date><IssueInfo>10(3):416-427</IssueInfo></Publication><Publication Source="PubMed" PMID="38618151" PMCID="PMC11015248"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38618151</URL><PublicationReference>Demographics of focused ultrasound thalamotomy for essential tremor and trends in deep brain stimulation surgery after its introduction in the USA. BMJ Neurol Open. 2024; 6(1):e000582.</PublicationReference><Title>Demographics of focused ultrasound thalamotomy for essential tremor and trends in deep brain stimulation surgery after its introduction in the USA.</Title><Authors>Gautam D, Venkatraman V, Horns J, Yang LZ, Lee HJ, Kassavetis P, Alshaikh J, Moretti P, Shofty B, Rahimpour S. </Authors><Journal>BMJ Neurol Open</Journal><Date>2024</Date><IssueInfo>6(1):e000582</IssueInfo></Publication><Publication Source="PubMed" PMID="38519019"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38519019</URL><PublicationReference>Nationwide Analysis of Risk Factors Related to Opioid Weaning Following Lumbar Decompression Surgery - A Retrospective Database Study. World Neurosurg. 2024 06; 186:e20-e34.</PublicationReference><Title>Nationwide Analysis of Risk Factors Related to Opioid Weaning Following Lumbar Decompression Surgery - A Retrospective Database Study.</Title><Authors>Spears CA, Hodges SE, Liu B, Venkatraman V, Edwards RM, Than KD, Abd-El-Barr MM, Parente B, Lee HJ, Lad SP. </Authors><Journal>World Neurosurg</Journal><Date>2024 06</Date><IssueInfo>186:e20-e34</IssueInfo></Publication><Publication Source="PubMed" PMID="38306639" PMCID="PMC10898494"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38306639</URL><PublicationReference>Disparities in the treatment of movement disorders using deep brain stimulation. J Neurosurg. 2024 Jul 01; 141(1):241-251.</PublicationReference><Title>Disparities in the treatment of movement disorders using deep brain stimulation.</Title><Authors>Venkatraman V, Futch BG, Bode Padron KJ, Yang LZ, Lee HJ, Seas A, Parente B, Shofty B, Lad SP, Williamson TL, Rahimpour S. </Authors><Journal>J Neurosurg</Journal><Date>2024 Jul 01</Date><IssueInfo>141(1):241-251</IssueInfo></Publication><Publication Source="PubMed" PMID="38159098" PMCID="PMC11193492"><URL>http://www.ncbi.nlm.nih.gov/pubmed/38159098</URL><PublicationReference>Disparities in Access to Deep Brain Stimulation and Responsive Neurostimulation Approaches to Drug-Resistant Epilepsy. Neuromodulation. 2024 Jun; 27(4):792-799.</PublicationReference><Title>Disparities in Access to Deep Brain Stimulation and Responsive Neurostimulation Approaches to Drug-Resistant Epilepsy.</Title><Authors>Venkatraman V, Futch BG, Bartlett A, Yang LZ, Lee HJ, Shofty B, Parente BA, Lad SP, Williamson TL, Rahimpour S. </Authors><Journal>Neuromodulation</Journal><Date>2024 Jun</Date><IssueInfo>27(4):792-799</IssueInfo></Publication><Publication Source="PubMed" PMID="37967741"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37967741</URL><PublicationReference>Digital Health for Patients Undergoing Spine Surgery: A Systematic Review. World Neurosurg. 2024 Feb; 182:70-82.</PublicationReference><Title>Digital Health for Patients Undergoing Spine Surgery: A Systematic Review.</Title><Authors>Venkatraman V, Heo H, Kaplan S, Parente BA, Lad SP. </Authors><Journal>World Neurosurg</Journal><Date>2024 Feb</Date><IssueInfo>182:70-82</IssueInfo></Publication><Publication Source="PubMed" PMID="37812266" PMCID="PMC10922544"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37812266</URL><PublicationReference>Ratios of head circumference to ventricular size vary over time and predict eventual need for CSF diversion in intraventricular hemorrhage of prematurity. Childs Nerv Syst. 2024 Mar; 40(3):673-684.</PublicationReference><Title>Ratios of head circumference to ventricular size vary over time and predict eventual need for CSF diversion in intraventricular hemorrhage of prematurity.</Title><Authors>Venkatraman V, Harward SC, Bhasin S, Calderon K, Atkins SL, Liu B, Lee HJ, Chow SC, Fuchs HE, Thompson EM. </Authors><Journal>Childs Nerv Syst</Journal><Date>2024 Mar</Date><IssueInfo>40(3):673-684</IssueInfo></Publication><Publication Source="PubMed" PMID="37774788"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37774788</URL><PublicationReference>Clinical and Radiographic Outcomes for Patients with Cervical Adjacent Segment Disease Treated with Anterior Cervical Discectomy and Fusion with Integrated Interbody Spacers. World Neurosurg. 2023 12; 180:e514-e522.</PublicationReference><Title>Clinical and Radiographic Outcomes for Patients with Cervical Adjacent Segment Disease Treated with Anterior Cervical Discectomy and Fusion with Integrated Interbody Spacers.</Title><Authors>Zaidi SE, Venkatraman V, Sykes DAW, Albanese J, Erickson MM, Crutcher CL, Goodwin CR, Groff MW, Grossi P, Than KD, Haglund MM, Abd-El-Barr MM. </Authors><Journal>World Neurosurg</Journal><Date>2023 12</Date><IssueInfo>180:e514-e522</IssueInfo></Publication><Publication Source="PubMed" PMID="37983113" PMCID="PMC11225031"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37983113</URL><PublicationReference>Improving patient outcomes with a mobile digital health platform for patients undergoing transcatheter aortic valve replacement. J Invasive Cardiol. 2023 09; 35(9).</PublicationReference><Title>Improving patient outcomes with a mobile digital health platform for patients undergoing transcatheter aortic valve replacement.</Title><Authors>Venkatraman V, Lad SP, Gellad ZF, Heo H, Wu KA, Dharmapurikar R, Liu B, Jung SH, Plichta R, Harrison JK, Nguyen TC, Doberne J. </Authors><Journal>J Invasive Cardiol</Journal><Date>2023 09</Date><IssueInfo>35(9)</IssueInfo></Publication><Publication Source="PubMed" PMID="37685445" PMCID="PMC10487407"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37685445</URL><PublicationReference>Digital Health for Patients Undergoing Cardiac Surgery: A Systematic Review. Healthcare (Basel). 2023 Aug 28; 11(17).</PublicationReference><Title>Digital Health for Patients Undergoing Cardiac Surgery: A Systematic Review.</Title><Authors>Wu KA, Kunte S, Rajkumar S, Venkatraman V, Kim G, Kaplan S, Anwar-Hashmi SO, Doberne J, Nguyen TC, Lad SP. </Authors><Journal>Healthcare (Basel)</Journal><Date>2023 Aug 28</Date><IssueInfo>11(17)</IssueInfo></Publication><Publication Source="PubMed" PMID="37541604" PMCID="PMC11225030"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37541604</URL><PublicationReference>Real World Characterization of Chronic Pain, Success Rates and Implant Rates: Evidence from a Digital Health Platform of Patients Undergoing Spinal Cord Stimulation Evaluations. J Pain. 2023 12; 24(12):2228-2239.</PublicationReference><Title>Real World Characterization of Chronic Pain, Success Rates and Implant Rates: Evidence from a Digital Health Platform of Patients Undergoing Spinal Cord Stimulation Evaluations.</Title><Authors>Venkatraman V, Bharmi R, Coletti F, Gellad ZF, Lempel N, Amit R, Blank N, Brown J, Kumar C, Fishman M, Vallejo R, Datta D, Reeve BB, Chakravarthy K, Sharan AD, Lad SP. </Authors><Journal>J Pain</Journal><Date>2023 12</Date><IssueInfo>24(12):2228-2239</IssueInfo></Publication><Publication Source="PubMed" PMID="37030478"><URL>http://www.ncbi.nlm.nih.gov/pubmed/37030478</URL><PublicationReference>Quantifying the Opportunity Cost of Neurosurgical Resident Education. World Neurosurg. 2023 07; 175:e669-e677.</PublicationReference><Title>Quantifying the Opportunity Cost of Neurosurgical Resident Education.</Title><Authors>Venkatraman V, Suarez AD, Kirsch EP, Heo H, Wu KA, McDaniel KE, Yang LZ, Jung SH, Dharmapurikar R, Lad SP, Haglund MM. </Authors><Journal>World Neurosurg</Journal><Date>2023 07</Date><IssueInfo>175:e669-e677</IssueInfo></Publication><Publication Source="PubMed" PMID="36890089" PMCID="PMC10440289"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36890089</URL><PublicationReference>Assessment of Health Care Costs and Total Baclofen Use Associated With Targeted Drug Delivery for Spasticity. Neuromodulation. 2023 Aug; 26(6):1247-1255.</PublicationReference><Title>Assessment of Health Care Costs and Total Baclofen Use Associated With Targeted Drug Delivery for Spasticity.</Title><Authors>Venkatraman V, Spears CA, Futch BG, Yang LZ, Parente BA, Lee HJ, Lad SP. </Authors><Journal>Neuromodulation</Journal><Date>2023 Aug</Date><IssueInfo>26(6):1247-1255</IssueInfo></Publication><Publication Source="PubMed" PMID="36872148"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36872148</URL><PublicationReference>Short-Term Health Care Costs of High-Frequency Spinal Cord Stimulation for the Treatment of Postsurgical Persistent Spinal Pain Syndrome. Neuromodulation. 2023 Oct; 26(7):1450-1458.</PublicationReference><Title>Short-Term Health Care Costs of High-Frequency Spinal Cord Stimulation for the Treatment of Postsurgical Persistent Spinal Pain Syndrome.</Title><Authors>Rajkumar S, Venkatraman V, Yang LZ, Parente B, Lee HJ, Lad SP. </Authors><Journal>Neuromodulation</Journal><Date>2023 Oct</Date><IssueInfo>26(7):1450-1458</IssueInfo></Publication><Publication Source="PubMed" PMID="36712738" PMCID="PMC9877488"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36712738</URL><PublicationReference>Filtered Cerebrospinal Fluid From Patients With Amyotrophic Lateral Sclerosis Displays an Altered Proteome and Affects Motor Phenotype in a Mouse Model. Cureus. 2022 Dec; 14(12):e32980.</PublicationReference><Title>Filtered Cerebrospinal Fluid From Patients With Amyotrophic Lateral Sclerosis Displays an Altered Proteome and Affects Motor Phenotype in a Mouse Model.</Title><Authors>Venkatraman V, Filiano AJ, Xu L, Collins L, Luo E, Ripple KM, de Castro GC, Boua JK, Marius C, Giamberardino C, Lad SP, Islam Williams T, Bereman MS, Bedlack RS. </Authors><Journal>Cureus</Journal><Date>2022 Dec</Date><IssueInfo>14(12):e32980</IssueInfo></Publication><Publication Source="PubMed" PMID="36314587" PMCID="PMC11089884"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36314587</URL><PublicationReference>Healthcare Economics of High Frequency Spinal Cord Stimulation for Painful Diabetic Peripheral Neuropathy. J Diabetes Sci Technol. 2024 May; 18(3):635-643.</PublicationReference><Title>Healthcare Economics of High Frequency Spinal Cord Stimulation for Painful Diabetic Peripheral Neuropathy.</Title><Authors>Rajkumar S, Venkatraman V, Zidanyue Yang L, Parente B, Lee HJ, Lad SP. </Authors><Journal>J Diabetes Sci Technol</Journal><Date>2024 May</Date><IssueInfo>18(3):635-643</IssueInfo></Publication><Publication Source="PubMed" PMID="36287589" PMCID="PMC9647464"><URL>http://www.ncbi.nlm.nih.gov/pubmed/36287589</URL><PublicationReference>Outcomes With a Mobile Digital Health Platform for Patients Undergoing Spine Surgery: Retrospective Analysis. JMIR Perioper Med. 2022 Oct 26; 5(1):e38690.</PublicationReference><Title>Outcomes With a Mobile Digital Health Platform for Patients Undergoing Spine Surgery: Retrospective Analysis.</Title><Authors>Venkatraman V, Kirsch EP, Luo E, Kunte S, Ponder M, Gellad ZF, Liu B, Lee HJ, Jung SH, Haglund MM, Lad SP. </Authors><Journal>JMIR Perioper Med</Journal><Date>2022 Oct 26</Date><IssueInfo>5(1):e38690</IssueInfo></Publication><Publication Source="PubMed" PMID="35871122"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35871122</URL><PublicationReference>Health Care Resource Utilization of High-Frequency Spinal Cord Stimulation for Treatment of Chronic Refractory Low Back Pain. Neuromodulation. 2023 Jan; 26(1):115-123.</PublicationReference><Title>Health Care Resource Utilization of High-Frequency Spinal Cord Stimulation for Treatment of Chronic Refractory Low Back Pain.</Title><Authors>Rajkumar S, Yang LZ, Venkatraman V, Charalambous L, Parente B, Lee HJ, Lad SP. </Authors><Journal>Neuromodulation</Journal><Date>2023 Jan</Date><IssueInfo>26(1):115-123</IssueInfo></Publication><Publication Source="PubMed" PMID="35434823"><URL>http://www.ncbi.nlm.nih.gov/pubmed/35434823</URL><PublicationReference>Feasibility study of a novel digital health platform for patients undergoing transcatheter aortic valve replacement. J Card Surg. 2022 Jul; 37(7):2017-2022.</PublicationReference><Title>Feasibility study of a novel digital health platform for patients undergoing transcatheter aortic valve replacement.</Title><Authors>Venkatraman V, Ponder M, Gellad ZF, Lad SP, Christy E, Plichta R, Harrison JK, Hughes GC, Doberne J. </Authors><Journal>J Card Surg</Journal><Date>2022 Jul</Date><IssueInfo>37(7):2017-2022</IssueInfo></Publication><Publication Source="PubMed" PMID="34097502"><URL>http://www.ncbi.nlm.nih.gov/pubmed/34097502</URL><PublicationReference>Mobile Health Application for Patients Undergoing Breast Cancer Surgery: Feasibility Study. JCO Oncol Pract. 2021 09; 17(9):e1344-e1353.</PublicationReference><Title>Mobile Health Application for Patients Undergoing Breast Cancer Surgery: Feasibility Study.</Title><Authors>Ponder M, Venkatraman V, Charalambous L, Ansah-Yeboah AA, Adil SM, Antezana LA, Dharmapurikar R, Gellad ZF, Lad SP, Hwang ES, Plichta JK. </Authors><Journal>JCO Oncol Pract</Journal><Date>2021 09</Date><IssueInfo>17(9):e1344-e1353</IssueInfo></Publication><Publication Source="PubMed" PMID="33527049" PMCID="PMC7842236"><URL>http://www.ncbi.nlm.nih.gov/pubmed/33527049</URL><PublicationReference>Cobalt-Induced Toxicity and Spasticity Secondary to Hip Arthroplasty: Case Report and Review of the Literature. Cureus. 2020 Dec 29; 12(12):e12368.</PublicationReference><Title>Cobalt-Induced Toxicity and Spasticity Secondary to Hip Arthroplasty: Case Report and Review of the Literature.</Title><Authors>Venkatraman V, Wong MK, Shalita C, Parente B, Lad SP. </Authors><Journal>Cureus</Journal><Date>2020 Dec 29</Date><IssueInfo>12(12):e12368</IssueInfo></Publication><Publication Source="PubMed" PMID="33393924" PMCID="PMC7709850"><URL>http://www.ncbi.nlm.nih.gov/pubmed/33393924</URL><PublicationReference>A Smartphone App With a Digital Care Pathway for Patients Undergoing Spine Surgery: Development and Feasibility Study. JMIR Perioper Med. 2020 Oct 16; 3(2):e21138.</PublicationReference><Title>A Smartphone App With a Digital Care Pathway for Patients Undergoing Spine Surgery: Development and Feasibility Study.</Title><Authors>Ponder M, Ansah-Yeboah AA, Charalambous LT, Adil SM, Venkatraman V, Abd-El-Barr M, Haglund M, Grossi P, Yarbrough C, Dharmapurikar R, Gellad Z, Lad SP. </Authors><Journal>JMIR Perioper Med</Journal><Date>2020 Oct 16</Date><IssueInfo>3(2):e21138</IssueInfo></Publication></PublicationList><ConceptList><Concept><MeshHeader>Spinal Cord Stimulation</MeshHeader><NumPubs>4</NumPubs><Weight>1.146861475394144e+000</Weight><FirstPubDate>2022-07-21T00:00:00</FirstPubDate><LastPubDate>2023-08-02T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Neurosurgery</MeshHeader><NumPubs>2</NumPubs><Weight>9.917914609292947e-001</Weight><FirstPubDate>2023-04-06T00:00:00</FirstPubDate><LastPubDate>2024-10-21T00:00:00</LastPubDate></Concept><Concept><MeshHeader>Deep Brain 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M.D.</FullName><FirstName>Aurelia</FirstName><LastName>Wagner</LastName></Name><Address><Address1>Beth Israel Deaconess Medical Center</Address1><Address2> </Address2><Address3>330 Brookline Ave</Address3><Address4>Boston, MA 02215</Address4><Telephone> </Telephone><Fax /></Address><AffiliationList><Affiliation Primary="true"><AffiliationID>1</AffiliationID><InstitutionAbbreviation>BIDMC</InstitutionAbbreviation><InstitutionName>Beth Israel Deaconess Medical Center</InstitutionName><DepartmentName>Neurosurgery</DepartmentName><DivisionName /><JobTitle>Visiting Fellow in Neurosurgery</JobTitle><FacultyType FacultyTypeSort="6">Fellow or Post Doc</FacultyType></Affiliation></AffiliationList></Person></PersonList>