Harvard Catalyst Profiles

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Young Woo Noh, Ph.D.

Concepts (70)

Concepts are derived automatically from a person's publications.
Concepts are listed by decreasing relevance which is based on many factors, including how many publications the person wrote about that topic, how long ago those publications were written, and how many publications other people have written on that same topic.
Name Number of Publications Most Recent Publication Publications by All Authors Concept Score Why?
Hydrogen Peroxide220117290.320 Why?
Peroxiredoxins12009510.320 Why?
Oxidoreductases120094130.270 Why?
Tryptophan-tRNA Ligase12023160.230 Why?
Mitochondrial Proteins120099760.210 Why?
Oxygen Consumption1200918630.200 Why?
Oxidoreductases Acting on Sulfur Group Donors22011320.180 Why?
Mitochondria2201436230.170 Why?
Ubiquinone120141830.100 Why?
Membrane Potential, Mitochondrial220112950.100 Why?
Microcirculation1201512730.090 Why?
Sepsis1202325850.080 Why?
Sulfinic Acids12009150.080 Why?
CD8-Positive T-Lymphocytes1202345750.080 Why?
Glutamic Acid1201411760.080 Why?
Oxidation-Reduction2201122300.070 Why?
Oxidative Stress2201431100.060 Why?
Vitamins1201416340.060 Why?
Glaucoma1201411850.060 Why?
Cysteine120098920.060 Why?
Nerve Net1201522880.050 Why?
Protein Transport1200919660.050 Why?
HeLa Cells1200930930.050 Why?
Amyloid beta-Peptides1201538370.050 Why?
Chemokines120239590.040 Why?
Adjuvants, Immunologic1202310360.040 Why?
Apoptosis2201194880.030 Why?
Systemic Vasculitis12015360.030 Why?
Disease Models, Animal12014182470.030 Why?
bcl-Associated Death Protein120141020.030 Why?
Neoplasms12023221640.030 Why?
Mice, Inbred DBA120146210.030 Why?
In Situ Nick-End Labeling120146130.030 Why?
Glial Fibrillary Acidic Protein120145520.020 Why?
Mice42023815090.020 Why?
Caspase 9120111850.020 Why?
Heme Oxygenase-1120143650.020 Why?
Superoxide Dismutase120145940.020 Why?
Cytochromes c120111730.020 Why?
Immunity, Innate1202330610.020 Why?
Retinal Degeneration120144130.020 Why?
Caspase 3120117310.020 Why?
Cytokines1202373920.020 Why?
Receptors, N-Methyl-D-Aspartate120148940.020 Why?
Gene Knockout Techniques120118020.020 Why?
Retinal Ganglion Cells120148110.020 Why?
Immunotherapy1202346500.020 Why?
Animals420231684410.020 Why?
Blotting, Western1201450360.020 Why?
Axons1201416740.020 Why?
Enzyme Activation1201135970.020 Why?
RNA, Small Interfering1201134280.010 Why?
Cell Survival1201157900.010 Why?
Nerve Tissue Proteins1201444140.010 Why?
Cognition Disorders1201539790.010 Why?
Dose-Response Relationship, Drug12011107660.010 Why?
Positron-Emission Tomography1201564850.010 Why?
Cell Line12011156050.010 Why?
Membrane Proteins1201478560.010 Why?
Humans420237614230.010 Why?
Cell Line, Tumor12011169790.010 Why?
Gene Expression Regulation12011119020.010 Why?
Prospective Studies12015544150.010 Why?
Aged, 80 and over12015589560.010 Why?
Signal Transduction12011234410.000 Why?
Magnetic Resonance Imaging12015364230.000 Why?
Female220153925810.000 Why?
Aged120151692350.000 Why?
Middle Aged120152208260.000 Why?
Male120153607360.000 Why?
Noh's Networks
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Concepts (70)
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Co-Authors (3)
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Funded by the NIH National Center for Advancing Translational Sciences through its Clinical and Translational Science Awards Program, grant number UL1TR002541.