most citedMicroscopic Tridomain Model of Electrical Activity in the Heart with Dynamical Gap Junctions. Part 1 -- Modeling and Well-Posedness

11 citations · 36 across the 4 of their papers we have counts for

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4 papers

math.AP2022★ 5 cited

Microscopic tridomain model of electrical activity in the heart with dynamical gap junctions. Part 2 -- Derivation of the macroscopic tridomain model by unfolding homogenization method

Fakhrielddine Bader, Mostafa Bendahmane, Mazen Saad +1

We study the homogenization of a novel microscopic tridomain system, allowing for a more detailed analysis of the properties of cardiac conduction than the classical bidomain and m…

math.AP2022★ 11 cited

Microscopic Tridomain Model of Electrical Activity in the Heart with Dynamical Gap Junctions. Part 1 -- Modeling and Well-Posedness

Fakhrielddine Bader, Mostafa Bendahmane, Mazen Saad +1

We present a novel microscopic tridomain model describing the electrical activity in cardiac tissue with dynamical gap junctions. The microscopic tridomain system consists of three…

math.AP2022★ 10 cited

Three Scale Unfolding Homogenization Method Applied to Cardiac Bidomain Model

Fakhrielddine Bader, Mostafa Bendahmane, Mazen Saad +1

In this paper, we are dealing with a rigorous homogenization result at two different levels for the bidomain model of cardiac electro-physiology. The first level associated with th…

math.AP2022★ 10 cited

Derivation of a new macroscopic bidomain model including three scales for the electrical activity of cardiac tissue

Fakhrielddine Bader, Mostafa Bendahmane, Mazen Saad +1

In the present paper, a new three-scale asymptotic homogenization method is proposed to study the electrical behavior of the cardiac tissue structure with multiple heterogeneities…