The electrocardiogram (ECG) is an essential clinical tool for the non-invasive assessment of cardiac function. Computational simulations of ECGs using bidomain models are considered the biophysically most detailed approach, but computational costs are significant. Alternatively, pseudo-bidomain formulations can be used, combining a monodomain model with an infrequent bidomain solve to obtain full extracellular potential (e) distributions and traces. However, previous attempts at such approaches did not see the expected significant decrease in compute time and did not include important effects of bathloading on activation wavefront morphology (present in full bidomain models), representing a less accurate source term for e solution. ECG trac...
Bidomain equations are the standard way to model the electric potential in cardiac tissue. They are ...
The bidomain and monodomain equations are well established as the standard set of equations for the ...
The bidomain model is often used to simulate the electrical activity in cardiac tissue. It has appli...
Although the cardiac bidomain model has been widely used in the simulation of electrical activation,...
Advanced multiscale models in computational electrocardiology offer a detailed representation of the...
In this work we address the propagation of the action potential propagation in the cardiac tissue, d...
This paper deals with mathematical models of cardiac bioelectric activity at both the cell and tissu...
Abstract—A bidomain reaction-diffusion model of the human heart was developed, and potentials result...
International audienceAnatomically accurate and biophysically detailed bidomain models of the human ...
The currently available techniques to investigate the 3D sequence of activation and recovery in the ...
Cardiac arrhythmias and fibrillation are potentially life threatening diseases that can result from ...
The objective of this paper is to introduce efficient methods to compute the relevant information re...
The electrocardiogram (ECG) is often used to diagnose myocardial infarction, but sensitivity and spe...
The monodomain and bidomain models are widely used in electro cardiology to simulate spreading of ex...
Simulation of cardiac electrical activity using the bidomain equations can be a massively computatio...
Bidomain equations are the standard way to model the electric potential in cardiac tissue. They are ...
The bidomain and monodomain equations are well established as the standard set of equations for the ...
The bidomain model is often used to simulate the electrical activity in cardiac tissue. It has appli...
Although the cardiac bidomain model has been widely used in the simulation of electrical activation,...
Advanced multiscale models in computational electrocardiology offer a detailed representation of the...
In this work we address the propagation of the action potential propagation in the cardiac tissue, d...
This paper deals with mathematical models of cardiac bioelectric activity at both the cell and tissu...
Abstract—A bidomain reaction-diffusion model of the human heart was developed, and potentials result...
International audienceAnatomically accurate and biophysically detailed bidomain models of the human ...
The currently available techniques to investigate the 3D sequence of activation and recovery in the ...
Cardiac arrhythmias and fibrillation are potentially life threatening diseases that can result from ...
The objective of this paper is to introduce efficient methods to compute the relevant information re...
The electrocardiogram (ECG) is often used to diagnose myocardial infarction, but sensitivity and spe...
The monodomain and bidomain models are widely used in electro cardiology to simulate spreading of ex...
Simulation of cardiac electrical activity using the bidomain equations can be a massively computatio...
Bidomain equations are the standard way to model the electric potential in cardiac tissue. They are ...
The bidomain and monodomain equations are well established as the standard set of equations for the ...
The bidomain model is often used to simulate the electrical activity in cardiac tissue. It has appli...