Showing results (21-30 of 88) with videos related to
Sort By:
Pageof 9
Antioxidants & Redox Signaling|March 12, 2008
Oxidation of myofilament protein sulfhydryl groups reduces the contractile force and its Ca2+ sensitivity in human cardiomyocytesZita Hertelendi, Attila Tóth, Attila Borbély, et al.Anesthesia and Analgesia|October 23, 2003
The cardioprotective effect of sevoflurane depends on protein kinase C activation, opening of mitochondrial K(+)(ATP) channels, and the production of reactive oxygen speciesWouter de Ruijter, René J P Musters, Christa Boer, et al.Journal of Muscle Research and Cell Motility|March 10, 2010
A piece of the human heart: variance of protein phosphorylation in left ventricular samples from end-stage primary cardiomyopathy patientsSabine J van Dijk, Rozemarije A Holewijn, Anouk Tebeest, et al.European Journal of Clinical Investigation|December 17, 2010
The development of familial hypertrophic cardiomyopathy: from mutation to bedsideWessel P Brouwer, Sabine J van Dijk, Ger J M Stienen, et al.Circulation|February 9, 2005
Cardiomyocyte stiffness in diastolic heart failureAttila Borbély, Jolanda van der Velden, Zoltán Papp, et al.Journal of Visualized Experiments : Jove|July 7, 2020
In Vitro Assessment of Cardiac Function Using Skinned CardiomyocytesPatrícia Gonçalves-Rodrigues, João Almeida-Coelho, Alexandre Gonçalves, et al.Proceedings of the National Academy of Sciences of the United States of America|March 8, 2017
Myosin filament activation in the heart is tuned to the mechanical taskMassimo Reconditi, Marco Caremani, Francesca Pinzauti, et al.Cardiovascular Research|July 13, 2016
Mitochondrial complex I dysfunction and altered NAD(P)H kinetics in rat myocardium in cardiac right ventricular hypertrophy and failureRob C I Wüst, Heder J de Vries, Liesbeth T Wintjes, et al.Journal of Applied Physiology (Bethesda, Md. : 1985)|January 7, 2012
Titin-based stiffening of muscle fibers in Ehlers-Danlos SyndromeCoen A C Ottenheijm, Nicol C Voermans, Bryan D Hudson, et al.Diabetologia|October 19, 2016
Empagliflozin decreases myocardial cytoplasmic Na+ through inhibition of the cardiac Na+/H+ exchanger in rats and rabbitsAntonius Baartscheer, Cees A Schumacher, Rob C I Wüst, et al.Pageof 9