In this study we present a novel computational model for unprecedented simulations of the whole cardiac electrophysiology. According to the heterogeneous electrophysiologic properties of the heart, the whole cardiac geometry is decomposed into a set of coupled conductive media having different topology and electrical conductivities: (i) a network of slender bundles comprising a fast conduction atrial network, the AV-node and the ventricular bundles; (ii) the Purkinje network; and (iii) the atrial and ventricular myocardium. The propagation of the action potential in these conductive media is governed by the bidomain/monodomain equations, which are discretized in space using an in- house finite volume method and coupled to three different ce...
This paper deals with mathematical models of cardiac bioelectric activity at both the cell and tissu...
The electrical activity in the Purkinje network and the myocardial tissue in the ventricles of the h...
Large-scale 3D virtual heart model simulations are highly demanding in computational resources. This...
In this study we present a novel computational model for unprecedented simulations of the whole card...
In this study we present a novel computational model for unprecedented simulations of the whole card...
In this study we present a novel computational model for unprecedented simulations of the whole card...
Copyright © 2012 Bruno Gouvêa de Barros et al. This is an open access article distributed under the...
Copyright © 2015 Yong Xia et al.This is an open access article distributed under the Creative Common...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
Large-scale 3D virtual heart model simulations are highly demanding in computational resources. This...
An accurate understanding of cardiac function necessitates the knowledge of regulation of electromec...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
This paper deals with mathematical models of cardiac bioelectric activity at both the cell and tissu...
The electrical activity in the Purkinje network and the myocardial tissue in the ventricles of the h...
Large-scale 3D virtual heart model simulations are highly demanding in computational resources. This...
In this study we present a novel computational model for unprecedented simulations of the whole card...
In this study we present a novel computational model for unprecedented simulations of the whole card...
In this study we present a novel computational model for unprecedented simulations of the whole card...
Copyright © 2012 Bruno Gouvêa de Barros et al. This is an open access article distributed under the...
Copyright © 2015 Yong Xia et al.This is an open access article distributed under the Creative Common...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
Large-scale 3D virtual heart model simulations are highly demanding in computational resources. This...
An accurate understanding of cardiac function necessitates the knowledge of regulation of electromec...
International audienceThis work is dedicated to the simulation of full cycles of the electrical acti...
This paper deals with mathematical models of cardiac bioelectric activity at both the cell and tissu...
The electrical activity in the Purkinje network and the myocardial tissue in the ventricles of the h...
Large-scale 3D virtual heart model simulations are highly demanding in computational resources. This...