In cardiac cells, calcium is the mediator of excitation-contraction coupling. Dysfunctions in calcium handling have been identified as the origin of some cardiac arrhythmias. In the particular case of atrial myocytes, recent available experimental data has found links between these dysfunctions and structural changes in the calcium handling machinery (ryanodine cluster size and distribution, t-tubular network, etc). To address this issue, we have developed a computational model of an atrial myocyte that takes into account the detailed intracellular structure. The homogenized macroscopic behavior is described with a two-concentration field model, using effective diffusion coefficients of calcium in the sarcoplasmic reticulum (SR) and in the ...
AbstractSpontaneously generated calcium (Ca2+) waves can trigger arrhythmias in ventricular and atri...
In cardiac myocytes, calcium cycling links the dynamics of the membrane potential to the activation ...
AbstractIn cardiac ventricular myocytes, calcium (Ca) release occurs at distinct structures (dyads) ...
In cardiac cells, calcium is the mediator of excitation-contraction coupling. Dysfunctions in calciu...
In cardiac cells, calcium is the mediator of excitation-contraction coupling. Dysfunctions in calciu...
The heart beating is produced by the synchronization of the cardiac cells' contraction. A dysregulat...
Clusters of ryanodine receptors within atrial myocytes are confined to spatially separated layers. I...
In this study, we present an innovative mathematical modeling approach that allows detailed characte...
AbstractAtrial myocytes in a number of species lack transverse tubules. As a consequence the intrace...
We examined the regulation of calcium signalling in atrial cardiomyocytes during excitation-contract...
Atrial myocytes in a number of species lack transverse tubules. As a consequence the intracellular c...
Understanding the biology and mechanisms as to how the heart contracts has long been a point of inte...
We present a minimal whole cell model that accounts for both local and global aspects of Ca signalin...
Heart disease is the leading cause of mortality in the United States. One cause of heart arrhythmia ...
Contraction of cardiac cells is initiated by an increase in the level of intracellular calcium conce...
AbstractSpontaneously generated calcium (Ca2+) waves can trigger arrhythmias in ventricular and atri...
In cardiac myocytes, calcium cycling links the dynamics of the membrane potential to the activation ...
AbstractIn cardiac ventricular myocytes, calcium (Ca) release occurs at distinct structures (dyads) ...
In cardiac cells, calcium is the mediator of excitation-contraction coupling. Dysfunctions in calciu...
In cardiac cells, calcium is the mediator of excitation-contraction coupling. Dysfunctions in calciu...
The heart beating is produced by the synchronization of the cardiac cells' contraction. A dysregulat...
Clusters of ryanodine receptors within atrial myocytes are confined to spatially separated layers. I...
In this study, we present an innovative mathematical modeling approach that allows detailed characte...
AbstractAtrial myocytes in a number of species lack transverse tubules. As a consequence the intrace...
We examined the regulation of calcium signalling in atrial cardiomyocytes during excitation-contract...
Atrial myocytes in a number of species lack transverse tubules. As a consequence the intracellular c...
Understanding the biology and mechanisms as to how the heart contracts has long been a point of inte...
We present a minimal whole cell model that accounts for both local and global aspects of Ca signalin...
Heart disease is the leading cause of mortality in the United States. One cause of heart arrhythmia ...
Contraction of cardiac cells is initiated by an increase in the level of intracellular calcium conce...
AbstractSpontaneously generated calcium (Ca2+) waves can trigger arrhythmias in ventricular and atri...
In cardiac myocytes, calcium cycling links the dynamics of the membrane potential to the activation ...
AbstractIn cardiac ventricular myocytes, calcium (Ca) release occurs at distinct structures (dyads) ...