To fully understand the mechanisms of defibrillation, it is critical to know how a given electrical stimulus causes membrane polarizations in cardiac tissue. We have extended the concept of the activating function, originally used to describe neuronal stimulation, to derive a new expression that identifies the sources that drive changes in transmembrane potential. Source terms, or virtual electrodes, consist of either second derivatives of extracellular potential weighted by intracellular conductivity or extracellular potential gradients weighted by derivatives of intracellular conductivity. The full response of passive tissue can be considered, in simple cases, to be a convolution of this "generalized activating function" with the impulse ...
We propose a new model for electrical activity of cardiac tissue that incorporates the effects of ce...
A three-dimensional (3-D) computer simulation of the electrical stimulation of passive cardiac tissu...
The bidomain model is often used to simulate the electrical activity in cardiac tissue. It has appli...
To fully understand the mechanisms of defibrillation, it is critical to know how a given electrical ...
AIM: The aim of the present study is to investigate the origin and effect of virtual electrode polar...
Recent theoretical models of cardiac electrical stimulation or defibrillation predict a complex spat...
stimulation; defibrillation; spiral wave; virtual electrode polarization Abstract Aim The aim of the...
The changes in transmembrane potential during a stimulation pulse in the heart are not known. We hav...
Traditional cable analyses cannot explain complex patterns of excitation in cardiac tissue with unip...
Virtual electrodes from structural/conductivity heterogeneities are known to elicit wavefront propag...
BackgroundVirtual electrodes from structural/conductivity heterogeneities are known to elicit wavefr...
AbstractAchieving controlled extracellular microstimulation of the central nervous system requires u...
Defibrillation is a well-established therapy for atrial and ventricular arrhythmia. Here, we shed li...
Electrical stimulation of cardiac cells by imposed extracellular electric fields results in a transm...
Defibrillation is a well-established therapy for atrial and ventricular arrhythmia. Here, we shed li...
We propose a new model for electrical activity of cardiac tissue that incorporates the effects of ce...
A three-dimensional (3-D) computer simulation of the electrical stimulation of passive cardiac tissu...
The bidomain model is often used to simulate the electrical activity in cardiac tissue. It has appli...
To fully understand the mechanisms of defibrillation, it is critical to know how a given electrical ...
AIM: The aim of the present study is to investigate the origin and effect of virtual electrode polar...
Recent theoretical models of cardiac electrical stimulation or defibrillation predict a complex spat...
stimulation; defibrillation; spiral wave; virtual electrode polarization Abstract Aim The aim of the...
The changes in transmembrane potential during a stimulation pulse in the heart are not known. We hav...
Traditional cable analyses cannot explain complex patterns of excitation in cardiac tissue with unip...
Virtual electrodes from structural/conductivity heterogeneities are known to elicit wavefront propag...
BackgroundVirtual electrodes from structural/conductivity heterogeneities are known to elicit wavefr...
AbstractAchieving controlled extracellular microstimulation of the central nervous system requires u...
Defibrillation is a well-established therapy for atrial and ventricular arrhythmia. Here, we shed li...
Electrical stimulation of cardiac cells by imposed extracellular electric fields results in a transm...
Defibrillation is a well-established therapy for atrial and ventricular arrhythmia. Here, we shed li...
We propose a new model for electrical activity of cardiac tissue that incorporates the effects of ce...
A three-dimensional (3-D) computer simulation of the electrical stimulation of passive cardiac tissu...
The bidomain model is often used to simulate the electrical activity in cardiac tissue. It has appli...