AbstractPunctate releases of Ca2+, called Ca2+ sparks, originate at the regular array of t-tubules in cardiac myocytes and skeletal muscle. During Ca2+ overload sparks serve as sites for the initiation and propagation of Ca2+ waves in myocytes. Computer simulations of spark-mediated waves are performed with model release sites that reproduce the adaptive Ca2+ release observed for the ryanodine receptor. The speed of these waves is proportional to the diffusion constant of Ca2+, D, rather than D, as is true for reaction-diffusion equations in a continuous excitable medium. A simplified “fire-diffuse-fire” model that mimics the properties of Ca2+-induced Ca2+ release (CICR) from isolated sites is used to explain this saltatory mode of wave pr...
Calcium ions are an important second messenger in living cells. Indeed calcium signals in the form ...
The elementary events of excitation-contraction coupling in heart muscle are Ca2+ sparks, which aris...
AbstractThe diastolic membrane potential (Vm) can be hyperpolarized or depolarized by various factor...
AbstractPunctate releases of Ca2+, called Ca2+ sparks, originate at the regular array of t-tubules i...
Ca2+ sparks and Ca2+ waves play important roles in calcium release and calcium propagation during th...
Ca(2+) sparks and Ca(2+) waves play important roles in calcium release and calcium propagation durin...
The objective of the study is to investigate the propagation of Ca2+ waves in full-width cardiac myo...
Ca2z sparks and Ca2z waves play important roles in calcium release and calcium propagation during th...
AbstractWe present a model that provides a unified framework for studying Ca2+ sparks and Ca2+ waves...
Contraction of cardiac cells is initiated by an increase in the level of intracellular calcium conce...
The fire-diffuse-fire model provides an idealized model of Ca2+ release within living cells. The eff...
AbstractThe elementary events of excitation-contraction coupling in heart muscle are Ca2+ sparks, wh...
AbstractUsing a combination of experimental and numerical approaches, we have tested two different a...
AbstractCalcium sparks are local regenerative releases of Ca2+ from a cluster of ryanodine receptors...
AbstractA Ca2+ spark arises when a cluster of sarcoplasmic reticulum (SR) channels (ryanodine recept...
Calcium ions are an important second messenger in living cells. Indeed calcium signals in the form ...
The elementary events of excitation-contraction coupling in heart muscle are Ca2+ sparks, which aris...
AbstractThe diastolic membrane potential (Vm) can be hyperpolarized or depolarized by various factor...
AbstractPunctate releases of Ca2+, called Ca2+ sparks, originate at the regular array of t-tubules i...
Ca2+ sparks and Ca2+ waves play important roles in calcium release and calcium propagation during th...
Ca(2+) sparks and Ca(2+) waves play important roles in calcium release and calcium propagation durin...
The objective of the study is to investigate the propagation of Ca2+ waves in full-width cardiac myo...
Ca2z sparks and Ca2z waves play important roles in calcium release and calcium propagation during th...
AbstractWe present a model that provides a unified framework for studying Ca2+ sparks and Ca2+ waves...
Contraction of cardiac cells is initiated by an increase in the level of intracellular calcium conce...
The fire-diffuse-fire model provides an idealized model of Ca2+ release within living cells. The eff...
AbstractThe elementary events of excitation-contraction coupling in heart muscle are Ca2+ sparks, wh...
AbstractUsing a combination of experimental and numerical approaches, we have tested two different a...
AbstractCalcium sparks are local regenerative releases of Ca2+ from a cluster of ryanodine receptors...
AbstractA Ca2+ spark arises when a cluster of sarcoplasmic reticulum (SR) channels (ryanodine recept...
Calcium ions are an important second messenger in living cells. Indeed calcium signals in the form ...
The elementary events of excitation-contraction coupling in heart muscle are Ca2+ sparks, which aris...
AbstractThe diastolic membrane potential (Vm) can be hyperpolarized or depolarized by various factor...