A model of the electrical activity of excitable membrane was used to simulate action potential propagation in cardiac cells. Using an implicit method for solving finite difference equations, propagation through the intercalated disc region between two abutting cells was studied. A model of interaction was constructed and parameters of the cellular junction determined. Estimates of the intercalated disc resistance were then made from these junction parameters using a field analysis of the junction. Values of approximately 4Ω-cm2 were found and correlate well with experimentally measured values
In this paper we introduce our findings which can lead to a mathematical method for simplifying cell...
In this paper we introduce our findings which can lead to a mathematical method for simplifying cell...
International audienceIt has been suggested in the literature that a disorgani-sation of cardiac tis...
A model of the electrical activity of excitable membrane was used to simulate action potential propa...
We have used numerical methods for solving cable equations, combined with previously published mathe...
We have used numerical methods for solving cable equations, combined with previously published mathe...
In this paper, we study a mathematical model of cardiac tissue based on explicit representation of i...
For many years, local circuit current through gap junctions has been seemed to be the main fundament...
Cable theory and active equivalent circuits have been used to simulate the propagation of action pot...
We used the Luo and Rudy (LR) mathematical model of the guinea pig ventricular cell coupled to exper...
Action potential propagation through cardiac tissue occurs in a spatially inhomogeneous three-dimens...
The influence of interstitial or extracellular potentials on propagation usually has been ignored, o...
The conduction of electrical signals through cardiac tissue is essential for maintaining the functio...
During the last decades, studies regarding the prospective impact of the alterations at the microsco...
We used the Luo and Rudy (LR) mathematical model of the guinea pig ventricular cell coupled to exper...
In this paper we introduce our findings which can lead to a mathematical method for simplifying cell...
In this paper we introduce our findings which can lead to a mathematical method for simplifying cell...
International audienceIt has been suggested in the literature that a disorgani-sation of cardiac tis...
A model of the electrical activity of excitable membrane was used to simulate action potential propa...
We have used numerical methods for solving cable equations, combined with previously published mathe...
We have used numerical methods for solving cable equations, combined with previously published mathe...
In this paper, we study a mathematical model of cardiac tissue based on explicit representation of i...
For many years, local circuit current through gap junctions has been seemed to be the main fundament...
Cable theory and active equivalent circuits have been used to simulate the propagation of action pot...
We used the Luo and Rudy (LR) mathematical model of the guinea pig ventricular cell coupled to exper...
Action potential propagation through cardiac tissue occurs in a spatially inhomogeneous three-dimens...
The influence of interstitial or extracellular potentials on propagation usually has been ignored, o...
The conduction of electrical signals through cardiac tissue is essential for maintaining the functio...
During the last decades, studies regarding the prospective impact of the alterations at the microsco...
We used the Luo and Rudy (LR) mathematical model of the guinea pig ventricular cell coupled to exper...
In this paper we introduce our findings which can lead to a mathematical method for simplifying cell...
In this paper we introduce our findings which can lead to a mathematical method for simplifying cell...
International audienceIt has been suggested in the literature that a disorgani-sation of cardiac tis...