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Circulation
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December 12, 2001
Expression of inducible nitric oxide synthase depresses beta-adrenergic-stimulated calcium release from the sarcoplasmic reticulum in intact ventricular myocytes
M T Ziolo, H Katoh, D M Bers
The Journal of Physiology
|
June 15, 1996
Comparison of sarcolemmal calcium channel current in rabbit and rat ventricular myocytes
W Yuan, K S Ginsburg, D M Bers
Circulation Research
|
June 7, 2003
Ca2+ scraps: local depletions of free [Ca2+] in cardiac sarcoplasmic reticulum during contractions leave substantial Ca2+ reserve
Thomas R Shannon, Tao Guo, Donald M Bers
Biophysical Journal
|
September 20, 2005
Regulation of cardiac sarcoplasmic reticulum Ca release by luminal [Ca] and altered gating assessed with a mathematical model
Thomas R Shannon, Fei Wang, Donald M Bers
American Journal of Physiology. Heart and Circulatory Physiology
|
June 18, 2013
Post-translational modifications of the cardiac Na channel: contribution of CaMKII-dependent phosphorylation to acquired arrhythmias
Anthony W Herren, Donald M Bers, Eleonora Grandi
Basic Research in Cardiology
|
December 14, 2002
Upregulated Na/Ca exchange is involved in both contractile dysfunction and arrhythmogenesis in heart failure
Donald M Bers, Steven M Pogwizd, Klaus Schlotthauer
Journal of Molecular and Cellular Cardiology
|
September 18, 2002
Frequency-dependent acceleration of relaxation in the heart depends on CaMKII, but not phospholamban
Jaime DeSantiago, Lars S Maier, Donald M Bers
The Journal of Membrane Biology
|
January 1, 1985
Calcium at the surface of cardiac plasma membrane vesicles: cation binding, surface charge screening, and Na-Ca exchange
D M Bers, K D Philipson, A Peskoff
Progress in Biophysics and Molecular Biology
|
May 15, 2004
Modeling the isolated cardiac myocyte
Jose L Puglisi, Fei Wang, Donald M Bers
The American Journal of Physiology
|
February 1, 1995
CaMKII is responsible for activity-dependent acceleration of relaxation in rat ventricular myocytes
R A Bassani, A Mattiazzi, D M Bers
Page
of 57
Search research articles
Search
Showing results (121-130 of 566) with videos related to
Sort By:
Page
of 57
Circulation
|
December 12, 2001
Expression of inducible nitric oxide synthase depresses beta-adrenergic-stimulated calcium release from the sarcoplasmic reticulum in intact ventricular myocytes
M T Ziolo, H Katoh, D M Bers
The Journal of Physiology
|
June 15, 1996
Comparison of sarcolemmal calcium channel current in rabbit and rat ventricular myocytes
W Yuan, K S Ginsburg, D M Bers
Circulation Research
|
June 7, 2003
Ca2+ scraps: local depletions of free [Ca2+] in cardiac sarcoplasmic reticulum during contractions leave substantial Ca2+ reserve
Thomas R Shannon, Tao Guo, Donald M Bers
Biophysical Journal
|
September 20, 2005
Regulation of cardiac sarcoplasmic reticulum Ca release by luminal [Ca] and altered gating assessed with a mathematical model
Thomas R Shannon, Fei Wang, Donald M Bers
American Journal of Physiology. Heart and Circulatory Physiology
|
June 18, 2013
Post-translational modifications of the cardiac Na channel: contribution of CaMKII-dependent phosphorylation to acquired arrhythmias
Anthony W Herren, Donald M Bers, Eleonora Grandi
Basic Research in Cardiology
|
December 14, 2002
Upregulated Na/Ca exchange is involved in both contractile dysfunction and arrhythmogenesis in heart failure
Donald M Bers, Steven M Pogwizd, Klaus Schlotthauer
Journal of Molecular and Cellular Cardiology
|
September 18, 2002
Frequency-dependent acceleration of relaxation in the heart depends on CaMKII, but not phospholamban
Jaime DeSantiago, Lars S Maier, Donald M Bers
The Journal of Membrane Biology
|
January 1, 1985
Calcium at the surface of cardiac plasma membrane vesicles: cation binding, surface charge screening, and Na-Ca exchange
D M Bers, K D Philipson, A Peskoff
Progress in Biophysics and Molecular Biology
|
May 15, 2004
Modeling the isolated cardiac myocyte
Jose L Puglisi, Fei Wang, Donald M Bers
The American Journal of Physiology
|
February 1, 1995
CaMKII is responsible for activity-dependent acceleration of relaxation in rat ventricular myocytes
R A Bassani, A Mattiazzi, D M Bers
Page
of 57