Skeletal muscle tissue has a highly complex and heterogeneous structure comprising several physical length scales. In the simplest model of muscle tissue, it can be represented as a one dimensional nonlinear spring in the direction of muscle fibres. However, at the finest level, muscle tissue includes a complex network of collagen fibres, actin and myosin proteins, and other cellular materials. This study shall derive an intermediate physical model which encapsulates the major contributions of the muscle components to the elastic response apart from activation-related along-fibre responses. The micro-mechanical factors in skeletal muscle tissue (eg. connective tissue, fluid, and fibres) can be homogenized into one material aggregate that wi...
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...
Skeletal muscle tissues are highly hierarchical materials with multifarious fibre bundles embedded i...
Muscle is a unique material that converts chemical energy into mechanical work. Additionally, skelet...
In previous applications of the finite element method in modeling mechanical behavior of skeletal mu...
In previous applications of the finite element method in modeling mechanical behavior of skeletal mu...
The forces that allow body movement can be divided into active (generated by sarcomeric contractile ...
The structural response of active skeletal muscle is derived from a combination of sarcomere contrac...
Duchenne Muscular Dystrophy (DMD) is a common X-linked disease, caused by mutations in the gene enco...
Duchenne Muscular Dystrophy (DMD) is a common X-linked disease, caused by mutations in the gene enco...
Duchenne Muscular Dystrophy (DMD) is a common X-linked disease, caused by mutations in the gene enco...
Duchenne Muscular Dystrophy (DMD) is a common X-linked disease, caused by mutations in the gene enco...
Duchenne Muscular Dystrophy (DMD) is a common X-linked disease, caused by mutations in the gene enco...
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...
Skeletal muscle tissues are highly hierarchical materials with multifarious fibre bundles embedded i...
Muscle is a unique material that converts chemical energy into mechanical work. Additionally, skelet...
In previous applications of the finite element method in modeling mechanical behavior of skeletal mu...
In previous applications of the finite element method in modeling mechanical behavior of skeletal mu...
The forces that allow body movement can be divided into active (generated by sarcomeric contractile ...
The structural response of active skeletal muscle is derived from a combination of sarcomere contrac...
Duchenne Muscular Dystrophy (DMD) is a common X-linked disease, caused by mutations in the gene enco...
Duchenne Muscular Dystrophy (DMD) is a common X-linked disease, caused by mutations in the gene enco...
Duchenne Muscular Dystrophy (DMD) is a common X-linked disease, caused by mutations in the gene enco...
Duchenne Muscular Dystrophy (DMD) is a common X-linked disease, caused by mutations in the gene enco...
Duchenne Muscular Dystrophy (DMD) is a common X-linked disease, caused by mutations in the gene enco...
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...