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Showing results (251-260 of 327) with videos related to

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Cureus|May 17, 2017
Cadaver-based Necrotizing Fasciitis Model for Medical TrainingKurt M Mohty, Matthew G Cravens, William J Adamas-Rappaport, et al.
Archives of Biochemistry and Biophysics|January 21, 2015
Elastic proteins in the flight muscle of Manduca sextaChen-Ching Yuan, Weikang Ma, Peter Schemmel, et al.
The Journal of Physiology|November 7, 2012
N-terminal phosphorylation of cardiac troponin-I reduces length-dependent calcium sensitivity of contraction in cardiac muscleVijay S Rao, F Steven Korte, Maria V Razumova, et al.
Journal of Neuroscience Methods|August 31, 2013
Convection-enhanced delivery of AAV2 in white matter--a novel method for gene delivery to cerebral cortexN U Barua, M Woolley, A S Bienemann, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 30, 2021
The myosin II coiled-coil domain atomic structure in its native environmentHamidreza Rahmani, Wen Ma, Zhongjun Hu, et al.
Biorxiv : the Preprint Server for Biology|November 28, 2023
Titin-based force regulates cardiac myofilament structures mediating length-dependent activationAnthony L Hessel, Michel N Kuehn, Nichlas M Engels, et al.
Advances in Experimental Medicine and Biology|April 22, 2004
Myosin filament structure and myosin crossbridge dynamics in fish and insect musclesJohn M Squire, Hind A AL-Khayat, Jeffrey J Harford, et al.
Circulation Research|March 14, 2024
Titin-Based Force Modulates Cardiac Thick and Thin FilamentsAnthony L Hessel, Michel N Kuehn, Nichlas M Engels, et al.
Biophysical Journal|March 25, 1998
X-ray diffraction indicates that active cross-bridges bind to actin target zones in insect flight muscleR T Tregear, R J Edwards, T C Irving, et al.
Biophysical Journal|October 4, 2011
Roles for cardiac MyBP-C in maintaining myofilament lattice rigidity and prolonging myosin cross-bridge lifetimeBradley M Palmer, Sakthivel Sadayappan, Yuan Wang, et al.
Pageof 33

Showing results (251-260 of 327) with videos related to

Sort By:
Pageof 33
Cureus|May 17, 2017
Cadaver-based Necrotizing Fasciitis Model for Medical TrainingKurt M Mohty, Matthew G Cravens, William J Adamas-Rappaport, et al.
Archives of Biochemistry and Biophysics|January 21, 2015
Elastic proteins in the flight muscle of Manduca sextaChen-Ching Yuan, Weikang Ma, Peter Schemmel, et al.
The Journal of Physiology|November 7, 2012
N-terminal phosphorylation of cardiac troponin-I reduces length-dependent calcium sensitivity of contraction in cardiac muscleVijay S Rao, F Steven Korte, Maria V Razumova, et al.
Journal of Neuroscience Methods|August 31, 2013
Convection-enhanced delivery of AAV2 in white matter--a novel method for gene delivery to cerebral cortexN U Barua, M Woolley, A S Bienemann, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 30, 2021
The myosin II coiled-coil domain atomic structure in its native environmentHamidreza Rahmani, Wen Ma, Zhongjun Hu, et al.
Biorxiv : the Preprint Server for Biology|November 28, 2023
Titin-based force regulates cardiac myofilament structures mediating length-dependent activationAnthony L Hessel, Michel N Kuehn, Nichlas M Engels, et al.
Advances in Experimental Medicine and Biology|April 22, 2004
Myosin filament structure and myosin crossbridge dynamics in fish and insect musclesJohn M Squire, Hind A AL-Khayat, Jeffrey J Harford, et al.
Circulation Research|March 14, 2024
Titin-Based Force Modulates Cardiac Thick and Thin FilamentsAnthony L Hessel, Michel N Kuehn, Nichlas M Engels, et al.
Biophysical Journal|March 25, 1998
X-ray diffraction indicates that active cross-bridges bind to actin target zones in insect flight muscleR T Tregear, R J Edwards, T C Irving, et al.
Biophysical Journal|October 4, 2011
Roles for cardiac MyBP-C in maintaining myofilament lattice rigidity and prolonging myosin cross-bridge lifetimeBradley M Palmer, Sakthivel Sadayappan, Yuan Wang, et al.
Pageof 33