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David N Ku

Showing results (11-20 of 66) with videos related to

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Biomedical Microdevices|October 1, 2013
Geometric design of microfluidic chambers: platelet adhesion versus accumulationLauren D C Casa, David N Ku
Frontiers in Bioengineering and Biotechnology|December 31, 2024
Advancing microfluidic point-of-care platelet function tests: opportunities and challenges from bench to marketMinki Kang, Christopher A Bresette, David N Ku
Plos One|February 25, 2021
Lysis of arterial thrombi by perfusion of N,N'-Diacetyl-L-cystine (DiNAC)Dongjune Kim, Susan M Shea, David N Ku
Industry and Innovation|August 10, 2019
Who Create Jobs? Venture Capital, Research Grants, and Regional Employment in the U.SHyunsung D Kang, Elazer Edelman, David N Ku
Biomicrofluidics|October 9, 2019
Shear-induced platelet aggregation: 3D-grayscale microfluidics for repeatable and localized occlusive thrombosisMichael T Griffin, Dongjune Kim, David N Ku
Journal of Biomechanics|September 22, 2005
Changes of opening angle in hypertensive and hypotensive arteries in 3-day organ cultureHai-Chao Han, Satoko Marita, David N Ku
Lab on a Chip|April 30, 2025
Development of a novel point-of-care device to monitor arterial thrombosisChristopher A Bresette, Viviana Claveria, David N Ku
Physical Review. E|March 18, 2016
Effects of shear rate, confinement, and particle parameters on margination in blood flowMarmar Mehrabadi, David N Ku, Cyrus K Aidun
Lab on a Chip|February 24, 2012
Microfluidic system for simultaneous optical measurement of platelet aggregation at multiple shear rates in whole bloodMelissa Li, David N Ku, Craig R Forest
Annals of Biomedical Engineering|October 29, 2014
A continuum model for platelet transport in flowing blood based on direct numerical simulations of cellular blood flowMarmar Mehrabadi, David N Ku, Cyrus K Aidun
Pageof 7

Showing results (11-20 of 66) with videos related to

Sort By:
Pageof 7
Biomedical Microdevices|October 1, 2013
Geometric design of microfluidic chambers: platelet adhesion versus accumulationLauren D C Casa, David N Ku
Frontiers in Bioengineering and Biotechnology|December 31, 2024
Advancing microfluidic point-of-care platelet function tests: opportunities and challenges from bench to marketMinki Kang, Christopher A Bresette, David N Ku
Plos One|February 25, 2021
Lysis of arterial thrombi by perfusion of N,N'-Diacetyl-L-cystine (DiNAC)Dongjune Kim, Susan M Shea, David N Ku
Industry and Innovation|August 10, 2019
Who Create Jobs? Venture Capital, Research Grants, and Regional Employment in the U.SHyunsung D Kang, Elazer Edelman, David N Ku
Biomicrofluidics|October 9, 2019
Shear-induced platelet aggregation: 3D-grayscale microfluidics for repeatable and localized occlusive thrombosisMichael T Griffin, Dongjune Kim, David N Ku
Journal of Biomechanics|September 22, 2005
Changes of opening angle in hypertensive and hypotensive arteries in 3-day organ cultureHai-Chao Han, Satoko Marita, David N Ku
Lab on a Chip|April 30, 2025
Development of a novel point-of-care device to monitor arterial thrombosisChristopher A Bresette, Viviana Claveria, David N Ku
Physical Review. E|March 18, 2016
Effects of shear rate, confinement, and particle parameters on margination in blood flowMarmar Mehrabadi, David N Ku, Cyrus K Aidun
Lab on a Chip|February 24, 2012
Microfluidic system for simultaneous optical measurement of platelet aggregation at multiple shear rates in whole bloodMelissa Li, David N Ku, Craig R Forest
Annals of Biomedical Engineering|October 29, 2014
A continuum model for platelet transport in flowing blood based on direct numerical simulations of cellular blood flowMarmar Mehrabadi, David N Ku, Cyrus K Aidun
Pageof 7