We present a new phenomenological model of human ventricular epicardial cells and we test its reentry dynamics. The model is derived from the Rogers-McCulloch formulation of the FitzHugh-Nagumo equations and represents the total ionic current divided into three contributions corresponding to the excitatory, recovery and transient outward currents. Our model reproduces the main characteristics of human epicardial tissue, including action potential amplitude and morphology, upstroke velocity, and action potential duration and conduction velocity restitution curves. The reentry dynamics is stable, and the dominant period is about 270 ms, which is comparable to clinical values. The proposed model is the first phenomenological model able to accu...
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...
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...
We present a new phenomenological model of human ventricular epicardial cells and we test its reentr...
We developed a new phenomenological model for ventricular epicardial cells. The proposed model is ba...
We developed a new phenomenological model for ventricular epicardial cells. The proposed model is ba...
We developed a new phenomenological model for ventricular epicardial cells. The proposed model is ba...
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...
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...
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...
We present a new phenomenological model of human ventricular epicardial cells and we test its reentr...
We developed a new phenomenological model for ventricular epicardial cells. The proposed model is ba...
We developed a new phenomenological model for ventricular epicardial cells. The proposed model is ba...
We developed a new phenomenological model for ventricular epicardial cells. The proposed model is ba...
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...
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...
available at the end of the article This paper analyzes a new semiphysiological ionic model, used re...