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Sheldon Weinbaum

Showing results (51-60 of 59) with videos related to

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American Journal of Physiology. Heart and Circulatory Physiology|July 11, 2012
A mechanistic analysis of the role of microcalcifications in atherosclerotic plaque stability: potential implications for plaque ruptureNatalia Maldonado, Adreanne Kelly-Arnold, Yuliya Vengrenyuk, et al.
Proceedings of the National Academy of Sciences of the United States of America|September 28, 2006
A hypothesis for vulnerable plaque rupture due to stress-induced debonding around cellular microcalcifications in thin fibrous capsYuliya Vengrenyuk, Stéphane Carlier, Savvas Xanthos, et al.
Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|November 1, 2017
Potential role for a specialized β<sub>3</sub> integrin-based structure on osteocyte processes in bone mechanosensationPamela Cabahug-Zuckerman, Randy F Stout, Robert J Majeska, et al.
Annals of Biomedical Engineering|March 5, 2009
Biomechanics: cell research and applications for the next decadeDennis Discher, Cheng Dong, Jeffrey J Fredberg, et al.
Proceedings of the National Academy of Sciences of the United States of America|October 29, 2017
Osteocyte calcium signals encode strain magnitude and loading frequency in vivoKarl J Lewis, Dorra Frikha-Benayed, Joyce Louie, et al.
Nature Materials|January 12, 2016
Genesis and growth of extracellular-vesicle-derived microcalcification in atherosclerotic plaquesJoshua D Hutcheson, Claudia Goettsch, Sergio Bertazzo, et al.
Bone|June 25, 2021
Estrogen depletion on In vivo osteocyte calcium signaling responses to mechanical loadingKarl J Lewis, Pamela Cabahug-Zuckerman, James F Boorman-Padgett, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 2, 2021
Nanoanalytical analysis of bisphosphonate-driven alterations of microcalcifications using a 3D hydrogel system and in vivo mouse modelJessica L Ruiz, Joshua D Hutcheson, Luis Cardoso, et al.
Arteriosclerosis, Thrombosis, and Vascular Biology|May 29, 2020
S100A9-RAGE Axis Accelerates Formation of Macrophage-Mediated Extracellular Vesicle Microcalcification in Diabetes MellitusRyo Kawakami, Shunsuke Katsuki, Richard Travers, et al.
Pageof 6

Showing results (51-60 of 59) with videos related to

Sort By:
Pageof 6
You have reached the last page of results.This site can display upto 59 results.
American Journal of Physiology. Heart and Circulatory Physiology|July 11, 2012
A mechanistic analysis of the role of microcalcifications in atherosclerotic plaque stability: potential implications for plaque ruptureNatalia Maldonado, Adreanne Kelly-Arnold, Yuliya Vengrenyuk, et al.
Proceedings of the National Academy of Sciences of the United States of America|September 28, 2006
A hypothesis for vulnerable plaque rupture due to stress-induced debonding around cellular microcalcifications in thin fibrous capsYuliya Vengrenyuk, Stéphane Carlier, Savvas Xanthos, et al.
Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|November 1, 2017
Potential role for a specialized β<sub>3</sub> integrin-based structure on osteocyte processes in bone mechanosensationPamela Cabahug-Zuckerman, Randy F Stout, Robert J Majeska, et al.
Annals of Biomedical Engineering|March 5, 2009
Biomechanics: cell research and applications for the next decadeDennis Discher, Cheng Dong, Jeffrey J Fredberg, et al.
Proceedings of the National Academy of Sciences of the United States of America|October 29, 2017
Osteocyte calcium signals encode strain magnitude and loading frequency in vivoKarl J Lewis, Dorra Frikha-Benayed, Joyce Louie, et al.
Nature Materials|January 12, 2016
Genesis and growth of extracellular-vesicle-derived microcalcification in atherosclerotic plaquesJoshua D Hutcheson, Claudia Goettsch, Sergio Bertazzo, et al.
Bone|June 25, 2021
Estrogen depletion on In vivo osteocyte calcium signaling responses to mechanical loadingKarl J Lewis, Pamela Cabahug-Zuckerman, James F Boorman-Padgett, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 2, 2021
Nanoanalytical analysis of bisphosphonate-driven alterations of microcalcifications using a 3D hydrogel system and in vivo mouse modelJessica L Ruiz, Joshua D Hutcheson, Luis Cardoso, et al.
Arteriosclerosis, Thrombosis, and Vascular Biology|May 29, 2020
S100A9-RAGE Axis Accelerates Formation of Macrophage-Mediated Extracellular Vesicle Microcalcification in Diabetes MellitusRyo Kawakami, Shunsuke Katsuki, Richard Travers, et al.
Pageof 6