The influence of each ischemic component (hypoxia, hyperkalemia, and acidosis) on arrhythmogenesis is controversial and difficult to study experimentally. In the present study, we investigate how the different ischemic components affect the vulnerable window (VW) for reentry using computational simulations. Simulations were performed in a 3D biventricular model that includes a realistic ischemic region and the His-Purkinje conduction system. At the cellular level, we used a modified version of the O' Hara action potential model adapted to simulate acute ischemia. Three different levels of ischemia were simulated: mild, moderate, and severe. The effects on the width of the VW of each ischemic parameter were analyzed. The model allowed us to ...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
Ventricular tachycardia and ventricular fibrillation are known to be two types of cardiac arrhythmia...
In this work, we have studied the vulnerable window and propagation patterns in a human heart during...
The influence of each ischemic component (hypoxia, hyperkalemia, and acidosis) on arrhythmogenesis i...
The influence of each ischemic component (hypoxia, hyperkalemia, and acidosis) on arrhythmogenesis i...
The influence of each ischemic component (hypoxia, hyperkalemia, and acidosis) on arrhythmogenesis i...
The influence of each ischemic component (hypoxia, hyperkalemia, and acidosis) on arrhythmogenesis i...
The influence of each ischemic component (hypoxia, hyperkalemia, and acidosis) on arrhythmogenesis i...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
[EN] Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-ar...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
Ventricular tachycardia and ventricular fibrillation are known to be two types of cardiac arrhythmia...
In this work, we have studied the vulnerable window and propagation patterns in a human heart during...
The influence of each ischemic component (hypoxia, hyperkalemia, and acidosis) on arrhythmogenesis i...
The influence of each ischemic component (hypoxia, hyperkalemia, and acidosis) on arrhythmogenesis i...
The influence of each ischemic component (hypoxia, hyperkalemia, and acidosis) on arrhythmogenesis i...
The influence of each ischemic component (hypoxia, hyperkalemia, and acidosis) on arrhythmogenesis i...
The influence of each ischemic component (hypoxia, hyperkalemia, and acidosis) on arrhythmogenesis i...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
[EN] Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-ar...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
Electrophysiological alterations of the myocardium caused by acute ischemia constitute a pro-arrhyth...
Ventricular tachycardia and ventricular fibrillation are known to be two types of cardiac arrhythmia...
In this work, we have studied the vulnerable window and propagation patterns in a human heart during...