During the last decades, studies regarding the prospective impact of the alterations at the microscopic scale of the heart tissue in the appearance of arrhythmias (Brugada's syndrome, atrial fibrillation, early repolarization syndrome...) have been more numerous. The amount of experimental data regarding the behaviors and regulations that occur at a cellular and a subcellular (gap junctions, role of specific ionic channels) is increasing and these data provide an adapted frame for the computational mathematicians to develop or improve models and confirm their behaviour. In this thesis, we developed and studied a ``microscopic'' model taking into account the individual geometry of the cells and the gap junctions between them. This model is d...
Constant conductances are often assumed when model- ing cardiac tissue. However experimental evide...
For many years, local circuit current through gap junctions has been seemed to be the main fundament...
A model of the electrical activity of excitable membrane was used to simulate action potential propa...
Dans les dernières décennies, l'impact dû à l'altération de la microstructure du tissu cardiaque dan...
International audienceIt has been suggested in the literature that a disorgani-sation of cardiac tis...
International audienceIt has been suggested in the literature that a disorganization of cardiac tiss...
he aim of this thesis is to analyze the effects of time variations of the gap junctions (GJ) conduct...
Cardiac morbidity and mortality increases with the population age. To investigate the underlying pat...
In this paper, we study the propagation of the cardiac action potential in a one-dimensional fiber, ...
Three axes are explored. 1) Derivation of mathematical models of electrophysiological phenomena appl...
In this thesis we addressed two problems in mathematical modelling of propagation of electrical sign...
The usual way to model the propagation of the action potential through the cardiac tissue is to assu...
The conduction of electrical signals through cardiac tissue is essential for maintaining the functio...
Abstract We modify and empirically study an adaptive multiscale model for sim-ulating cardiac action...
When modelling tissue-level cardiac electrophysiology, a continuum approximation to the discrete cel...
Constant conductances are often assumed when model- ing cardiac tissue. However experimental evide...
For many years, local circuit current through gap junctions has been seemed to be the main fundament...
A model of the electrical activity of excitable membrane was used to simulate action potential propa...
Dans les dernières décennies, l'impact dû à l'altération de la microstructure du tissu cardiaque dan...
International audienceIt has been suggested in the literature that a disorgani-sation of cardiac tis...
International audienceIt has been suggested in the literature that a disorganization of cardiac tiss...
he aim of this thesis is to analyze the effects of time variations of the gap junctions (GJ) conduct...
Cardiac morbidity and mortality increases with the population age. To investigate the underlying pat...
In this paper, we study the propagation of the cardiac action potential in a one-dimensional fiber, ...
Three axes are explored. 1) Derivation of mathematical models of electrophysiological phenomena appl...
In this thesis we addressed two problems in mathematical modelling of propagation of electrical sign...
The usual way to model the propagation of the action potential through the cardiac tissue is to assu...
The conduction of electrical signals through cardiac tissue is essential for maintaining the functio...
Abstract We modify and empirically study an adaptive multiscale model for sim-ulating cardiac action...
When modelling tissue-level cardiac electrophysiology, a continuum approximation to the discrete cel...
Constant conductances are often assumed when model- ing cardiac tissue. However experimental evide...
For many years, local circuit current through gap junctions has been seemed to be the main fundament...
A model of the electrical activity of excitable membrane was used to simulate action potential propa...