The experimental and clinical possibilities for studying cardiac arrhythmias in human ventricular myocardium are very limited. Therefore, the use of alternative methods such as computer simulations is of great importance. In this article we introduce a mathematical model of the action potential of human ventricular cells that, while including a high level of electrophysiological detail, is computationally cost-effective enough to be applied in large-scale spatial simulations for the study of reentrant arrhythmias. The model is based on recent experimental data on most of the major ionic currents: the fast sodium, L-type calcium, transient outward, rapid and slow delayed rectifier, and inward rectifier currents. The model includes a basic ca...
ABSTRACT A computational model of the human left-ventricular epicardial myocyte is presented. Models...
We present a new phenomenological model of human ventricular epicardial cells and we test its reentr...
We present a new phenomenological model of human ventricular epicardial cells and we test its reentr...
The experimental and clinical possibilities for studying cardiac arrhythmias in human ventricular my...
The experimental and clinical possibilities for studying cardiac arrhythmias in human ventricular my...
The experimental and clinical possibilities for studying cardiac arrhythmias in human ventricular my...
The experimental and clinical possibilities for studying cardiac arrhythmias in human ventricular my...
The experimental and clinical possibilities for studying cardiac arrhythmias in human ventricular my...
Recent experimental and theoretical results have stressed the importance of modeling studies of reen...
Recent experimental and theoretical results have stressed the importance of modeling studies of reen...
Recent experimental and theoretical results have stressed the importance of modeling studies of reen...
In this paper, we formulate a model for human ventricular cells that is efficient enough for whole o...
In this paper, we formulate a model for human ventricular cells that is efficient enough for whole o...
available at the end of the article This paper analyzes a new semiphysiological ionic model, used re...
We present a new phenomenological model of human ventricular epicardial cells and we test its reentr...
ABSTRACT A computational model of the human left-ventricular epicardial myocyte is presented. Models...
We present a new phenomenological model of human ventricular epicardial cells and we test its reentr...
We present a new phenomenological model of human ventricular epicardial cells and we test its reentr...
The experimental and clinical possibilities for studying cardiac arrhythmias in human ventricular my...
The experimental and clinical possibilities for studying cardiac arrhythmias in human ventricular my...
The experimental and clinical possibilities for studying cardiac arrhythmias in human ventricular my...
The experimental and clinical possibilities for studying cardiac arrhythmias in human ventricular my...
The experimental and clinical possibilities for studying cardiac arrhythmias in human ventricular my...
Recent experimental and theoretical results have stressed the importance of modeling studies of reen...
Recent experimental and theoretical results have stressed the importance of modeling studies of reen...
Recent experimental and theoretical results have stressed the importance of modeling studies of reen...
In this paper, we formulate a model for human ventricular cells that is efficient enough for whole o...
In this paper, we formulate a model for human ventricular cells that is efficient enough for whole o...
available at the end of the article This paper analyzes a new semiphysiological ionic model, used re...
We present a new phenomenological model of human ventricular epicardial cells and we test its reentr...
ABSTRACT A computational model of the human left-ventricular epicardial myocyte is presented. Models...
We present a new phenomenological model of human ventricular epicardial cells and we test its reentr...
We present a new phenomenological model of human ventricular epicardial cells and we test its reentr...