International audienceA novel multiscale modeling framework for skeletal muscles based on analytical and numerical homogeniza-tion methods is presented to study the mechanical muscle response at finite strains under three-dimensional loading conditions. First an analytical microstructure-based constitutive model is developed and numerically implemented in a general purpose finite element program. The analytical model takes into account explicitly the volume fractions, the material properties, and the spatial distribution of muscle's constituents by using homogenization techniques to bridge the different length scales of the muscle structure. Next, a numerical homogenization model is developed using periodic eroded Voronoi tessellation to vi...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA novel multiscale modeling framework for skeletal muscles based on analytical...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...
International audienceA three-dimensional constitutive model for skeletal muscle incorporating micro...