State-of-the-art cardiac electrophysiology models that are able to deliver physiologically motivated activation maps and electrocardiograms (ECGs) can only be solved on high-performance computing architectures. This makes it nearly impossible to adopt such models in clinical practice. ECG imaging tools typically rely on simplified models, but these neglect the anisotropic electric conductivity of the tissue in the forward problem. Moreover, their results are often confined to the heart-torso interface. We propose a forward model that fully accounts for the anisotropic tissue conductivity and produces the standard 12-lead ECG in a few seconds. The activation sequence is approximated with an eikonal model in the 3d myocardium, while the ECG i...
We developed a three-dimensional finite element model of the electrical activity of the whole heart ...
Objectives: In this paper, we present a unified electrodynamic heart model that permits simulations ...
We developed a finite element model of the electrical activity of the whole heart embedded in the to...
State-of-the-art cardiac electrophysiology models that are able to deliver physiologically motivated...
State-of-the-art cardiac electrophysiology models that are able to deliver physiologically motivated...
<p>Realistic electrocardiogram (ECG) simulation with numerical models is important for research link...
International audienceThe estimation of solutions of the ElectroCardioGraphy (ECG) inverse problem i...
There is a clear need for improved methods (e.g. computer modelling, imaging) to characterize the su...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
In this study we present a novel computational model for unprecedented simulations of the whole card...
Cardiac arrhythmias are increasingly being treated using ablation procedures. Development of fast el...
International audienceAnatomically accurate and biophysically detailed bidomain models of the human ...
Purpose Heart failure patients are often affected by a ventricular conduction disorder. Accurate c...
We developed a three-dimensional finite element model of the electrical activity of the whole heart ...
Objectives: In this paper, we present a unified electrodynamic heart model that permits simulations ...
We developed a finite element model of the electrical activity of the whole heart embedded in the to...
State-of-the-art cardiac electrophysiology models that are able to deliver physiologically motivated...
State-of-the-art cardiac electrophysiology models that are able to deliver physiologically motivated...
<p>Realistic electrocardiogram (ECG) simulation with numerical models is important for research link...
International audienceThe estimation of solutions of the ElectroCardioGraphy (ECG) inverse problem i...
There is a clear need for improved methods (e.g. computer modelling, imaging) to characterize the su...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
In this study we present a novel computational model for unprecedented simulations of the whole card...
Cardiac arrhythmias are increasingly being treated using ablation procedures. Development of fast el...
International audienceAnatomically accurate and biophysically detailed bidomain models of the human ...
Purpose Heart failure patients are often affected by a ventricular conduction disorder. Accurate c...
We developed a three-dimensional finite element model of the electrical activity of the whole heart ...
Objectives: In this paper, we present a unified electrodynamic heart model that permits simulations ...
We developed a finite element model of the electrical activity of the whole heart embedded in the to...