Although transmural heterogeneity of action potential duration (APD) is established in single cells isolated from different tissue layers, the extent to which it produces transmural gradients of repolarization in electrotonically coupled ventricular myocardium remains controversial. The purpose of this study was to examine the relative contribution of intrinsic cellular gradients of APD and electrotonic influences to transmural repolarization in rabbit ventricular myocardium. Transmural optical mapping was performed in left ventricular wedge preparations from eight rabbits. Transmural patterns of activation, repolarization, and APD were recorded during endocardial and epicardial stimulation. Experimental results were compared with modeled d...
Single ventricular myocytes paced at a constant rate and held at a constant temperature exhibit beat...
Variability is observed at all levels of cardiac electrophysiology. Yet, the underlying causes and i...
variations in repolarization currents in the heart can produce spatial gradients in action potential...
Heterogeneities in the densities of membrane ionic currents of myocytes cause regional variations in...
yesSpatial dispersion of repolarization is known to play an important role in arrhythmogenesis. Elec...
It has been shown in the literature that myocytes isolated from the ventricular walls at various int...
We investigated the role of ventricular repolarization sequence in ventricular diastolic function. ...
<p>Background—Electric excitability in the ventricular wall is influenced by cellular electrop...
Objective: Myocardial ischemia and ventricular arrhythmias often complicate congestive heart failure...
The ventricle exhibits gradients in repolarization time in both transmural and apicobasal directions...
International audienceAlteration of action potential duration (APD) heterogeneity contributes to arr...
Aims The duration and morphology of the T wave predict risk for ventricular fibrillation. A transmur...
Transmural APD heterogeneity is thought to play an important role in homogeneous repolarization of t...
Variability is observed at all levels of cardiac electrophysiology. Yet, the underlying causes and i...
<p>Alteration of action potential duration (APD) heterogeneity contributes to arrhythmogenesis. Purk...
Single ventricular myocytes paced at a constant rate and held at a constant temperature exhibit beat...
Variability is observed at all levels of cardiac electrophysiology. Yet, the underlying causes and i...
variations in repolarization currents in the heart can produce spatial gradients in action potential...
Heterogeneities in the densities of membrane ionic currents of myocytes cause regional variations in...
yesSpatial dispersion of repolarization is known to play an important role in arrhythmogenesis. Elec...
It has been shown in the literature that myocytes isolated from the ventricular walls at various int...
We investigated the role of ventricular repolarization sequence in ventricular diastolic function. ...
<p>Background—Electric excitability in the ventricular wall is influenced by cellular electrop...
Objective: Myocardial ischemia and ventricular arrhythmias often complicate congestive heart failure...
The ventricle exhibits gradients in repolarization time in both transmural and apicobasal directions...
International audienceAlteration of action potential duration (APD) heterogeneity contributes to arr...
Aims The duration and morphology of the T wave predict risk for ventricular fibrillation. A transmur...
Transmural APD heterogeneity is thought to play an important role in homogeneous repolarization of t...
Variability is observed at all levels of cardiac electrophysiology. Yet, the underlying causes and i...
<p>Alteration of action potential duration (APD) heterogeneity contributes to arrhythmogenesis. Purk...
Single ventricular myocytes paced at a constant rate and held at a constant temperature exhibit beat...
Variability is observed at all levels of cardiac electrophysiology. Yet, the underlying causes and i...
variations in repolarization currents in the heart can produce spatial gradients in action potential...