In this paper, a new approach for estimating a nonlinear model of the electrically stimulated quadriceps muscle group under non-isometric conditions is investigated. In order to identify the muscle dynamics (stimulation pulse width-active knee moment relation) from discrete-time angle measurements only, a hybrid model structure is postulated for the shank-quadriceps dynamics. The model consists of a relatively well known time-invariant passive component and an uncertain time-variant active component. Rigid body dynamics, described by the Equation of Motion (EoM), and passive joint properties form the time-variant part. The actuator, i.e. the electrically stimulated muscle group, represents the uncertain time-varying section. A recursive alg...
The neuromuscular system interacts with the environment by generating forces that cause motion about...
The use of electrical signals to restore the function of paralyzed muscles is called functional elec...
In order to develop a comprehensive model of the motor control system the time-varying nature of joi...
In this paper, a new approach for estimating a nonlinear model of the electrically stimulated quadri...
A new approach for estimating nonlinear models of the electrically stimulated quadriceps muscle grou...
A new approach for estimating nonlinear models of the electrically stimulated quadriceps muscle grou...
Model structures for artificially stimulated paralyzed muscle-limb system dynamics were developed an...
The problem of identification of nonlinear models for the Functional Electrical Stimulation (FES) pr...
International audienceWe investigated the parameter identification of a multi-scale physiological mo...
Functional Electrical Stimulation requires an accurate model of electrically stimulated muscles to c...
International audienceThe knowledge and prediction of the behavior of electrically activated muscles...
This paper describes the modelling of lower-limb dynamics of paraplegics using different neural netw...
The use of electrical signals to restore the function of paralyzed muscles is called functional ele...
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...
The neuromuscular system interacts with the environment by generating forces that cause motion about...
The use of electrical signals to restore the function of paralyzed muscles is called functional elec...
In order to develop a comprehensive model of the motor control system the time-varying nature of joi...
In this paper, a new approach for estimating a nonlinear model of the electrically stimulated quadri...
A new approach for estimating nonlinear models of the electrically stimulated quadriceps muscle grou...
A new approach for estimating nonlinear models of the electrically stimulated quadriceps muscle grou...
Model structures for artificially stimulated paralyzed muscle-limb system dynamics were developed an...
The problem of identification of nonlinear models for the Functional Electrical Stimulation (FES) pr...
International audienceWe investigated the parameter identification of a multi-scale physiological mo...
Functional Electrical Stimulation requires an accurate model of electrically stimulated muscles to c...
International audienceThe knowledge and prediction of the behavior of electrically activated muscles...
This paper describes the modelling of lower-limb dynamics of paraplegics using different neural netw...
The use of electrical signals to restore the function of paralyzed muscles is called functional ele...
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...
The neuromuscular system interacts with the environment by generating forces that cause motion about...
The use of electrical signals to restore the function of paralyzed muscles is called functional elec...
In order to develop a comprehensive model of the motor control system the time-varying nature of joi...