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Annual Review of Biomedical Engineering|March 22, 2007
The structure and function of the endothelial glycocalyx layerSheldon Weinbaum, John M Tarbell, Edward R Damiano
Annals of Biomedical Engineering|January 4, 2006
Cellular fluid mechanics and mechanotransductionJohn M Tarbell, Sheldon Weinbaum, Roger D Kamm
Cardiovascular Engineering and Technology|September 22, 2020
The Glycocalyx and Its Role in Vascular Physiology and Vascular Related DiseasesSheldon Weinbaum, Limary M Cancel, Bingmei M Fu, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 17, 2004
The role of the glycocalyx in reorganization of the actin cytoskeleton under fluid shear stress: a "bumper-car" modelMia M Thi, John M Tarbell, Sheldon Weinbaum, et al.
Annals of Biomedical Engineering|July 12, 2013
Changing views of the biomechanics of vulnerable plaque rupture: a reviewLuis Cardoso, Sheldon Weinbaum
Advances in Experimental Medicine and Biology|October 14, 2018
Microcalcifications, Their Genesis, Growth, and Biomechanical Stability in Fibrous Cap RuptureLuis Cardoso, Sheldon Weinbaum
Annual Review of Fluid Mechanics|January 15, 2010
Fluid and Solute Transport in Bone: Flow-Induced MechanotransductionSusannah P Fritton, Sheldon Weinbaum
Physical Review Letters|December 17, 2004
From red cells to snowboarding: a new concept for a train trackQianhong Wu, Yiannis Andreopoulos, Sheldon Weinbaum
Molecular & Cellular Biomechanics : MCB|June 6, 2008
Micro-CT based analysis of a new paradigm for vulnerable plaque rupture: cellular microcalcifications in fibrous capsYuliya Vengrenyuk, Luis Cardoso, Sheldon Weinbaum
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