Cardiac Purkinje cells (PCs) are morphologically and electrophysiologically different from ventricular myocytes and, importantly, exhibit distinct calcium (Ca 2+ ) homeostasis. Recent studies suggest that PCs are more susceptible to action potential (AP) abnormalities than ventricular myocytes; however, the exact mechanisms are poorly understood. In this study, we utilized a detailed biophysical mathematical model of a murine PC to systematically examine the role of cytosolic Ca 2+ diffusion in shaping the AP in PCs. A biphasic spatiotemporal Ca 2+ diffusion process, as recorded experimentally, was implemented in the model. In this study, we investigated the role of cytosolic Ca 2+ dynamics on AP and ionic current properties by varying the ...
The effects of variation in calcium concentration on the action potential of Purkinje fibers isolate...
Little is known about how small variations in ionic currents and Ca 2 + and Na + diffusion coefficie...
In cardiac cells, calcium is the mediator of excitation-contraction coupling. Dysfunctions in calciu...
# The Author(s) 2010. This article is published with open access at Springerlink.com Abstract Intrac...
Background-In catecholaminergic polymorphic ventricular tachycardia (CPVT), cardiac Purkinje cells (...
Cardiac Purkinje fibers (PFs) play a very important role in cardiac electrophysiology. They are cru...
Abstract: Purkinje cells (Pcell) are characterized by different electrophysiological properties and ...
Cardiac Purkinje cells (PCs) are implicated in lethal arrhythmias caused by cardiac diseases, mutati...
BACKGROUND: Inherited arrhythmias can be caused by mutations in the cardiac ryanodine receptor (RyR...
Heterogeneous repolarization causes dispersion of the T-wave and has been linked to arrhythmogenesis...
Early development of ionic models for cardiac myocytes, from the pioneering modification of the Hodg...
A reduced order differential model of cardiac Purkinje fibres action potential, with only eight stat...
The diastolic membrane potential (Vm) can be hyperpolarized or depolarized by various factors such a...
SUMMARY The effects of calcium ionophores X-537A, A23187, and PR-47 on the action potential of canin...
AbstractThe diastolic membrane potential (Vm) can be hyperpolarized or depolarized by various factor...
The effects of variation in calcium concentration on the action potential of Purkinje fibers isolate...
Little is known about how small variations in ionic currents and Ca 2 + and Na + diffusion coefficie...
In cardiac cells, calcium is the mediator of excitation-contraction coupling. Dysfunctions in calciu...
# The Author(s) 2010. This article is published with open access at Springerlink.com Abstract Intrac...
Background-In catecholaminergic polymorphic ventricular tachycardia (CPVT), cardiac Purkinje cells (...
Cardiac Purkinje fibers (PFs) play a very important role in cardiac electrophysiology. They are cru...
Abstract: Purkinje cells (Pcell) are characterized by different electrophysiological properties and ...
Cardiac Purkinje cells (PCs) are implicated in lethal arrhythmias caused by cardiac diseases, mutati...
BACKGROUND: Inherited arrhythmias can be caused by mutations in the cardiac ryanodine receptor (RyR...
Heterogeneous repolarization causes dispersion of the T-wave and has been linked to arrhythmogenesis...
Early development of ionic models for cardiac myocytes, from the pioneering modification of the Hodg...
A reduced order differential model of cardiac Purkinje fibres action potential, with only eight stat...
The diastolic membrane potential (Vm) can be hyperpolarized or depolarized by various factors such a...
SUMMARY The effects of calcium ionophores X-537A, A23187, and PR-47 on the action potential of canin...
AbstractThe diastolic membrane potential (Vm) can be hyperpolarized or depolarized by various factor...
The effects of variation in calcium concentration on the action potential of Purkinje fibers isolate...
Little is known about how small variations in ionic currents and Ca 2 + and Na + diffusion coefficie...
In cardiac cells, calcium is the mediator of excitation-contraction coupling. Dysfunctions in calciu...