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One or more keywords matched the following items that are connected to Lee, Luke
Item TypeName
Concept Equipment Design
Academic Article Continuous perfusion microfluidic cell culture array for high-throughput cell-based assays.
Academic Article Hybrid integrated PDMS microfluidics with a silica capillary.
Academic Article Assessing Antibiotic Permeability of Gram-Negative Bacteria via Nanofluidics.
Academic Article Microfluidic alignment of collagen fibers for in vitro cell culture.
Academic Article Open-access microfluidic patch-clamp array with raised lateral cell trapping sites.
Academic Article Sample concentration and impedance detection on a microfluidic polymer chip.
Academic Article Non-invasive microfluidic gap junction assay.
Academic Article Microfluidic self-assembly of tumor spheroids for anticancer drug discovery.
Academic Article Human iPSC-based cardiac microphysiological system for drug screening applications.
Academic Article Micromachined transmissive scanning confocal microscope.
Academic Article Self-powered Imbibing Microfluidic Pump by Liquid Encapsulation: SIMPLE.
Academic Article An artificial liver sinusoid with a microfluidic endothelial-like barrier for primary hepatocyte culture.
Academic Article Creating high density nanoantenna arrays via plasmon enhanced particle-cavity (PEP-C) architectures.
Academic Article Artificial ommatidia by self-aligned microlenses and waveguides.
Academic Article Total internal reflection-based biochip utilizing a polymer-filled cavity with a micromirror sidewall.
Academic Article Optically addressable single-use microfluidic valves by laser printer lithography.
Academic Article A novel high aspect ratio microfluidic design to provide a stable and uniform microenvironment for cell growth in a high throughput mammalian cell culture array.
Academic Article Toward integrated molecular diagnostic system (i MDx): principles and applications.
Academic Article A single cell electroporation chip.
Academic Article Roll-to-roll fabrication of integrated PDMS-paper microfluidics for nucleic acid amplification.
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  • Equipment Design
Funded by the NIH National Center for Advancing Translational Sciences through its Clinical and Translational Science Awards Program, grant number UL1TR002541.