International audienceIn this article, we describe an approach to model the electromechanical behavior of the skeletal muscle based on the Huxley formulation. We propose a model that complies with a well established macroscopic behavior of striated muscles where force-length, force-velocity, and Mirsky-Parmley properties are taken into account. These properties are introduced at themicroscopic scale and related to a tentative explanation of the phenomena. The method used integrates behavior ranging from the microscopic to the macroscopic scale, and allows the computation of the dynamics of the output force and stiffness controlled byEMG or stimulation parameters. The model can thus be used to simulate and carry out research to develop contr...
In the field of computational biomechanics, the experimental evaluation of the material properties i...
Models of skeletal muscle can be classified as phenomenological or biophysical. Phenomenological mod...
Abstract — EMG-to-force estimation for voluntary muscle contraction has many applications in human-m...
International audienceIn this study, we present a new model describing the mechanical behavior of th...
International audienceWe investigated the parameter identification of a multi-scale physiological mo...
International audienceA model-based FES would be very helpful for the adaptive movement synthesis of...
The main contributions of this thesis concern the modelling and the identification of theskeletal mu...
A new mathematical model is presented to describe both the active and passive mechanics of muscles. ...
International audienceEMG-to-force estimation for voluntary muscle contraction has many applications...
The present paper describes a geometrically and physically nonlinear continuum model to study the me...
Neuromuscular physiology is a vibrant research field that has recently seen exciting advances. Previ...
BackgroundDirect electrical activation of skeletal muscles of patients with upper motor neuron lesio...
Mathematical models and computer simulations have the great potential to substantially increase our ...
Abstract Background Mathematical muscle models may be useful for the determination of appropriate mu...
In the field of computational biomechanics, the experimental evaluation of the material properties i...
Models of skeletal muscle can be classified as phenomenological or biophysical. Phenomenological mod...
Abstract — EMG-to-force estimation for voluntary muscle contraction has many applications in human-m...
International audienceIn this study, we present a new model describing the mechanical behavior of th...
International audienceWe investigated the parameter identification of a multi-scale physiological mo...
International audienceA model-based FES would be very helpful for the adaptive movement synthesis of...
The main contributions of this thesis concern the modelling and the identification of theskeletal mu...
A new mathematical model is presented to describe both the active and passive mechanics of muscles. ...
International audienceEMG-to-force estimation for voluntary muscle contraction has many applications...
The present paper describes a geometrically and physically nonlinear continuum model to study the me...
Neuromuscular physiology is a vibrant research field that has recently seen exciting advances. Previ...
BackgroundDirect electrical activation of skeletal muscles of patients with upper motor neuron lesio...
Mathematical models and computer simulations have the great potential to substantially increase our ...
Abstract Background Mathematical muscle models may be useful for the determination of appropriate mu...
In the field of computational biomechanics, the experimental evaluation of the material properties i...
Models of skeletal muscle can be classified as phenomenological or biophysical. Phenomenological mod...
Abstract — EMG-to-force estimation for voluntary muscle contraction has many applications in human-m...