International audienceBidomain equations are the standard way to model the electric potential in cardiac tissue. They are based on the fact that active cardiomyocytes are present everywhere in the heart, while it is known that non-small regions exist where additional extracellular media take place. These regions, which play an important role in diseased hearts, are often taken into account through ad-hoc rough tuning of the tissue conductivities. In this work, we introduce a rigorous way to derive these conductivities from a microscopic description of the heterogeneities in the tissue. We assume a periodic alternation of the healthy tissue and the fibrotic tissue. Such a microscopic model can be simulated directly, at the price of a very hi...
We prove the existence and the uniqueness of a solution for a modified bidomain model, describing th...
A novel multiple scales method is formulated that can be applied to problems which have an almost pe...
International audienceIn the present paper, a new three-scale asymptotic homogenization method is pr...
International audienceBidomain equations are the standard way to model the electric potential in car...
Bidomain equations are the standard way to model the electric potential in cardiac tissue. They are ...
Bidomain equations are the standard way to model the electric potential in cardiac tissue. We propos...
International audienceWe present a new mathematical model of the electric activity of the heart. In ...
International audienceIntroduction: The most used model in the elctrophysiology of the heart,known a...
The standard bidomain model is based on the fact that electrically active cardiomyocytes are present...
We study, by means of the periodic unfolding technique, the homogenization of a modified bidomain mo...
International audienceIn this paper we study how mesoscopic heterogeneities affect electrical signal...
International audienceMathematical modelling and numerical simulation in cardiac electrophysiology h...
We prove the existence and the uniqueness of a solution for a modified bidomain model, describing th...
A novel multiple scales method is formulated that can be applied to problems which have an almost pe...
International audienceIn the present paper, a new three-scale asymptotic homogenization method is pr...
International audienceBidomain equations are the standard way to model the electric potential in car...
Bidomain equations are the standard way to model the electric potential in cardiac tissue. They are ...
Bidomain equations are the standard way to model the electric potential in cardiac tissue. We propos...
International audienceWe present a new mathematical model of the electric activity of the heart. In ...
International audienceIntroduction: The most used model in the elctrophysiology of the heart,known a...
The standard bidomain model is based on the fact that electrically active cardiomyocytes are present...
We study, by means of the periodic unfolding technique, the homogenization of a modified bidomain mo...
International audienceIn this paper we study how mesoscopic heterogeneities affect electrical signal...
International audienceMathematical modelling and numerical simulation in cardiac electrophysiology h...
We prove the existence and the uniqueness of a solution for a modified bidomain model, describing th...
A novel multiple scales method is formulated that can be applied to problems which have an almost pe...
International audienceIn the present paper, a new three-scale asymptotic homogenization method is pr...