Calcium (Ca2+) plays a central role in the excitation and contraction of cardiac myocytes. Experiments have indicated that calcium release is stochastic and regulated locally suggesting the possibility of spatially heterogeneous calcium levels in the cells. This spatial heterogeneity might be important in mediating different signaling pathways. During more than 50 years of computational cell biology, the computational models have been advanced to incorporate more ionic currents, going from deterministic models to stochastic models. While periodic increases in cytoplasmic Ca2+ concentration drive cardiac contraction, aberrant Ca2+ release can underly cardiac arrhythmia. However, the study of the spatial role of calcium ions has been limited ...
Atrial myocytes in a number of species lack transverse tubules. As a consequence the intracellular c...
In this study, we present an innovative mathematical modeling approach that allows detailed characte...
In cardiac cells, calcium is the mediator of excitation-contraction coupling. Dysfunctions in calciu...
In this thesis three case studies of stochastic effects in biological signaling systems are presente...
Contraction of cardiac cells is initiated by an increase in the level of intracellular calcium conce...
Atrial myocytes in a number of species lack transverse tubules. As a consequence the intracellular c...
AbstractAtrial myocytes in a number of species lack transverse tubules. As a consequence the intrace...
In this study, we present an innovative mathematical modeling approach that allows detailed characte...
Contraction of cardiac cells is initiated by an increase in the level of intracellular calcium conce...
<div><p>Ectopic heartbeats can trigger reentrant arrhythmias, leading to ventricular fibrillation an...
Ca2+ sparks and Ca2+ waves play important roles in calcium release and calcium propagation during th...
AbstractWe present a mathematical model of calcium cycling that takes into account the spatially loc...
AbstractWe present a model that provides a unified framework for studying Ca2+ sparks and Ca2+ waves...
AbstractWe present a mathematical model of calcium cycling that takes into account the spatially loc...
Ca(2+) sparks and Ca(2+) waves play important roles in calcium release and calcium propagation durin...
Atrial myocytes in a number of species lack transverse tubules. As a consequence the intracellular c...
In this study, we present an innovative mathematical modeling approach that allows detailed characte...
In cardiac cells, calcium is the mediator of excitation-contraction coupling. Dysfunctions in calciu...
In this thesis three case studies of stochastic effects in biological signaling systems are presente...
Contraction of cardiac cells is initiated by an increase in the level of intracellular calcium conce...
Atrial myocytes in a number of species lack transverse tubules. As a consequence the intracellular c...
AbstractAtrial myocytes in a number of species lack transverse tubules. As a consequence the intrace...
In this study, we present an innovative mathematical modeling approach that allows detailed characte...
Contraction of cardiac cells is initiated by an increase in the level of intracellular calcium conce...
<div><p>Ectopic heartbeats can trigger reentrant arrhythmias, leading to ventricular fibrillation an...
Ca2+ sparks and Ca2+ waves play important roles in calcium release and calcium propagation during th...
AbstractWe present a mathematical model of calcium cycling that takes into account the spatially loc...
AbstractWe present a model that provides a unified framework for studying Ca2+ sparks and Ca2+ waves...
AbstractWe present a mathematical model of calcium cycling that takes into account the spatially loc...
Ca(2+) sparks and Ca(2+) waves play important roles in calcium release and calcium propagation durin...
Atrial myocytes in a number of species lack transverse tubules. As a consequence the intracellular c...
In this study, we present an innovative mathematical modeling approach that allows detailed characte...
In cardiac cells, calcium is the mediator of excitation-contraction coupling. Dysfunctions in calciu...