Reductions in electrotonic loading around regions of structural and electrophysiological heterogeneity may facilitate capture of focal triggered activity, initiating reentrant arrhythmias. How electrotonic loading, refractoriness and capture of focal ectopics depend upon the intricate nature of physiological structural anatomy, as well as pathological tissue remodelling, however, is not well understood. In this study, we performed computational bidomain simulations with anatomically-detailed models representing the rabbit left ventricle. We used these models to quantify the relationship between local structural anatomy and spatial heterogeneity in action potential (AP) characteristics, electrotonic currents and effective refractory periods ...
Objective: Myocardial ischemia and ventricular arrhythmias often complicate congestive heart failure...
Both scar and left-to-right ventricular (LV/RV) differences in repolarization properties have been i...
In a 2-D model of anisotropy, created by freezing the intramural and endocardial layers of a Langend...
Reductions in electrotonic loading around regions of structural and electrophysiological heterogenei...
Reductions in electrotonic loading around regions of structural and electrophysiological heterogenei...
Ectopic electrical activity which originates in the peri-infarct region can give rise to potentially...
Background: Understanding the biophysical processes by which electrical stimuli applied to cardiac t...
<p>Cardiac arrhythmias triggered by both reentrant and focal sources are closely correlated with reg...
Aims Studies of arrhythmogenesis during ischemia have focused primarily on reentrant mechanisms mani...
The goal of this study is to investigate the contribution of transmural heterogeneities in action po...
Although transmural heterogeneity of action potential duration (APD) is established in single cells ...
Phase-2 reentry is a basic mechanism for the transition to VT and VF in the heart. It is thought to...
AbstractHow early (EADs) and delayed afterdepolarizations (DADs) overcome electrotonic source-sink m...
Heterogeneities in the densities of membrane ionic currents of myocytes cause regional variations in...
Both scar and left-to-right ventricular (LV/RV) differences in repolarization properties have been i...
Objective: Myocardial ischemia and ventricular arrhythmias often complicate congestive heart failure...
Both scar and left-to-right ventricular (LV/RV) differences in repolarization properties have been i...
In a 2-D model of anisotropy, created by freezing the intramural and endocardial layers of a Langend...
Reductions in electrotonic loading around regions of structural and electrophysiological heterogenei...
Reductions in electrotonic loading around regions of structural and electrophysiological heterogenei...
Ectopic electrical activity which originates in the peri-infarct region can give rise to potentially...
Background: Understanding the biophysical processes by which electrical stimuli applied to cardiac t...
<p>Cardiac arrhythmias triggered by both reentrant and focal sources are closely correlated with reg...
Aims Studies of arrhythmogenesis during ischemia have focused primarily on reentrant mechanisms mani...
The goal of this study is to investigate the contribution of transmural heterogeneities in action po...
Although transmural heterogeneity of action potential duration (APD) is established in single cells ...
Phase-2 reentry is a basic mechanism for the transition to VT and VF in the heart. It is thought to...
AbstractHow early (EADs) and delayed afterdepolarizations (DADs) overcome electrotonic source-sink m...
Heterogeneities in the densities of membrane ionic currents of myocytes cause regional variations in...
Both scar and left-to-right ventricular (LV/RV) differences in repolarization properties have been i...
Objective: Myocardial ischemia and ventricular arrhythmias often complicate congestive heart failure...
Both scar and left-to-right ventricular (LV/RV) differences in repolarization properties have been i...
In a 2-D model of anisotropy, created by freezing the intramural and endocardial layers of a Langend...