Gap junctions are key mediators of intercellular communication in cardiac tissue, and their function is vital to sustaining normal cardiac electrical activity. Conduction through gap junctions strongly depends on the hemichannel arrangement and transjunctional voltage, rendering the intercellular conductance highly non-Ohmic, particularly under steady-state regimes of conduction. Despite this marked non-linear behavior, current tissue-level models of cardiac conduction are rooted in the assumption that gap-junctions conductance is constant (Ohmic), which results in inaccurate predictions of electrical propagation, particularly in the low junctional-coupling regime observed under pathological conditions. In this work, we present a novel non-...
International audienceBackground: Velocity and pattern of propagation of cardiac AP depends on struc...
Coordinated electrical activation of the heart is essential for the maintenance of a regular cardiac...
The cell-to-cell propagation of the cardiac action potential allows for the electro-mechanical coupl...
Gap junctions are key mediators of intercellular communication in cardiac tissue, and their function...
When modelling tissue-level cardiac electrophysiology, a continuum approximation to the discrete cel...
he aim of this thesis is to analyze the effects of time variations of the gap junctions (GJ) conduct...
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...
In the first part of this dissertation, we investigate three different issues involving homogenizati...
In this paper, we study the propagation of the cardiac action potential in a one-dimensional fiber, ...
Bidomain equations are the standard way to model the electric potential in cardiac tissue. We propos...
Abstract We derive the values for the intracellular and extracellular conductivities needed for bido...
Constant conductances are often assumed when model- ing cardiac tissue. However experimental evidenc...
Constant conductances are often assumed when model- ing cardiac tissue. However experimental evide...
Gap junctions play a pivotal role for the velocity and the safety of impulse propagation in cardiac ...
International audienceBackground: Velocity and pattern of propagation of cardiac AP depends on struc...
Coordinated electrical activation of the heart is essential for the maintenance of a regular cardiac...
The cell-to-cell propagation of the cardiac action potential allows for the electro-mechanical coupl...
Gap junctions are key mediators of intercellular communication in cardiac tissue, and their function...
When modelling tissue-level cardiac electrophysiology, a continuum approximation to the discrete cel...
he aim of this thesis is to analyze the effects of time variations of the gap junctions (GJ) conduct...
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...
In the first part of this dissertation, we investigate three different issues involving homogenizati...
In this paper, we study the propagation of the cardiac action potential in a one-dimensional fiber, ...
Bidomain equations are the standard way to model the electric potential in cardiac tissue. We propos...
Abstract We derive the values for the intracellular and extracellular conductivities needed for bido...
Constant conductances are often assumed when model- ing cardiac tissue. However experimental evidenc...
Constant conductances are often assumed when model- ing cardiac tissue. However experimental evide...
Gap junctions play a pivotal role for the velocity and the safety of impulse propagation in cardiac ...
International audienceBackground: Velocity and pattern of propagation of cardiac AP depends on struc...
Coordinated electrical activation of the heart is essential for the maintenance of a regular cardiac...
The cell-to-cell propagation of the cardiac action potential allows for the electro-mechanical coupl...