Heterogeneous mechanical dyskinesis has been implicated in many arrhythmogenic phenotypes. Strain-dependent perturbations to cardiomyocyte electrophysiology may contribute to this arrhythmogenesis through processes referred to as mechanoelectric feedback. Although the role of stretch-activated ion currents has been investigated using computational models, experimental studies suggest that mechanical strain may also promote arrhythmia by facilitating calcium wave propagation. To investigate whether strain-dependent changes in calcium affinity to the myofilament may promote arrhythmogenic intracellular calcium waves, we modified a mathematical model of rabbit excitation-contraction coupling coupled to a model of myofilament activation and for...
Atrial fibrillation is a common cardiac arrhythmia and is promoted by atrial dilatation. Acute atria...
Spontaneous calcium (Ca) waves in cardiac myocytes underlie delayed afterdepolarizations (DADs) that...
The consequences of cardiac excitation-contraction coupling by calcium-induced calcium release were ...
Cardiac electrophysiology and mechanics are strongly interconnected. Calcium is crucial in this comp...
The effect of mechano-electric feedback (MEF) on myocyte's action potential (AP) has been largely st...
Mechanoelectric feedback (MEF) in the heart operates through several mechanisms which serve to regul...
International audienceIsolated cardiac myocytes exhibit spontaneous patterns of rhythmic contraction...
Atrial fibrillation is the fast and irregular heart rate that occurs when the upper chambers of the ...
Since first discovered in chick skeletal muscles, stretch-activated channels (SACs) have been propos...
Heart failure (HF) is associated with elevated sympathetic tone and mechanical load. Both systems ac...
Regional variation in ionic membrane currents causes differences in action potential duration (APD) ...
Atrial fibrillation is a common cardiac arrhythmia and is promoted by atrial dilatation. Acute atria...
Spontaneous calcium (Ca) waves in cardiac myocytes underlie delayed afterdepolarizations (DADs) that...
The consequences of cardiac excitation-contraction coupling by calcium-induced calcium release were ...
Cardiac electrophysiology and mechanics are strongly interconnected. Calcium is crucial in this comp...
The effect of mechano-electric feedback (MEF) on myocyte's action potential (AP) has been largely st...
Mechanoelectric feedback (MEF) in the heart operates through several mechanisms which serve to regul...
International audienceIsolated cardiac myocytes exhibit spontaneous patterns of rhythmic contraction...
Atrial fibrillation is the fast and irregular heart rate that occurs when the upper chambers of the ...
Since first discovered in chick skeletal muscles, stretch-activated channels (SACs) have been propos...
Heart failure (HF) is associated with elevated sympathetic tone and mechanical load. Both systems ac...
Regional variation in ionic membrane currents causes differences in action potential duration (APD) ...
Atrial fibrillation is a common cardiac arrhythmia and is promoted by atrial dilatation. Acute atria...
Spontaneous calcium (Ca) waves in cardiac myocytes underlie delayed afterdepolarizations (DADs) that...
The consequences of cardiac excitation-contraction coupling by calcium-induced calcium release were ...