International audienceIn this paper, we compare a biomechanics empirical model of the heart fibrous structure to two models obtained by a non-periodic homogenization process. To this end, the two homogenized models are simplified using the small amplitude homogenization procedure of Tartar, both in conduction and in elasticity. A new small amplitude homogenization expansion formula for a mixture of anisotropic elastic materials is also derived and allows us to obtain a third simplified model
In this work, we investigate the limits of classical homogenization theories pertaining to homogeniz...
In this work, we explore the limits of classical homogenization methods pertaining to the homogeniza...
In this paper a second-order homogenization approach for periodic material is derived from an approp...
In this paper, we compare a biomechanics empirical model of the heart fibrous structure to two model...
Abstract. In this paper, we compare a biomechanics empirical model of the heart fibrous structure to...
International audienceThanks to their geometrical organization at the cell level, soft biological ti...
International audienceThe homogenization theory in linear elasticity is applied to a periodic array ...
International audienceThe periodic homogenisation method is often used to study the behaviour of het...
This thesis is devoted to the homogenization of conduction and linearized elasticity equations in di...
On étudie quelques problèmes singuliers d'homogénéisation en élasticité linéarisée ou électricté non...
summary:The homogenization problem (i.e. the approximation of the material with periodic structure b...
In the paper we study the homogenization method and its potential for research of some phenomenons c...
Computational models in cardiac electrophysiology are notorious for long runtimes, restricting the n...
International audienceWe follow a formal homogenization approach to investigate the effects of mecha...
In this work, we investigate the limits of classical homogenization theories pertaining to homogeniz...
In this work, we explore the limits of classical homogenization methods pertaining to the homogeniza...
In this paper a second-order homogenization approach for periodic material is derived from an approp...
In this paper, we compare a biomechanics empirical model of the heart fibrous structure to two model...
Abstract. In this paper, we compare a biomechanics empirical model of the heart fibrous structure to...
International audienceThanks to their geometrical organization at the cell level, soft biological ti...
International audienceThe homogenization theory in linear elasticity is applied to a periodic array ...
International audienceThe periodic homogenisation method is often used to study the behaviour of het...
This thesis is devoted to the homogenization of conduction and linearized elasticity equations in di...
On étudie quelques problèmes singuliers d'homogénéisation en élasticité linéarisée ou électricté non...
summary:The homogenization problem (i.e. the approximation of the material with periodic structure b...
In the paper we study the homogenization method and its potential for research of some phenomenons c...
Computational models in cardiac electrophysiology are notorious for long runtimes, restricting the n...
International audienceWe follow a formal homogenization approach to investigate the effects of mecha...
In this work, we investigate the limits of classical homogenization theories pertaining to homogeniz...
In this work, we explore the limits of classical homogenization methods pertaining to the homogeniza...
In this paper a second-order homogenization approach for periodic material is derived from an approp...