The problem of identification of nonlinear models for the Functional Electrical Stimulation (FES) process is considered. In particular, the stimulation of the quadriceps muscle group and the following movement (or torque release) of the knee-joint will be considered. Both isometric and isotonic experimental conditions are considered. NARX models will be identified from data: polynomial and neural network structures are considered. For both model families, the structural identification problem and the model validation issue are considered. The resulting models are compared with experimental data measured on a paraplegic patient
Stroke affects a large percentage of the population in UK and one of the most devastating and common...
International audienceA model-based FES would be very helpful for the adaptive movement synthesis of...
To develop model-based control strategies for Functional Electrical Stimulation (FES) in order to su...
A new approach for estimating nonlinear models of the electrically stimulated quadriceps muscle grou...
International audienceThe knowledge and prediction of the behavior of electrically activated muscles...
A new approach for estimating nonlinear models of the electrically stimulated quadriceps muscle grou...
International audienceWe investigated the parameter identification of a multi-scale physiological mo...
This paper describes the modelling of lower-limb dynamics of paraplegics using different neural netw...
In this paper, a new approach for estimating a nonlinear model of the electrically stimulated quadri...
In this paper, a new approach for estimating a nonlinear model of the electrically stimulated quadri...
International audienceThis paper concerns the whole physiological parameters identification of a mus...
The aim of this paper is to propose a novel class of non-linear, possibly parameter-varying models s...
Model structures for artificially stimulated paralyzed muscle-limb system dynamics were developed an...
Functional electrical stimulation (FES) has been used to facilitate persons with paralysis in restor...
This paper deals with the problem of modelling and control of the knee joint dynamics. Using control...
Stroke affects a large percentage of the population in UK and one of the most devastating and common...
International audienceA model-based FES would be very helpful for the adaptive movement synthesis of...
To develop model-based control strategies for Functional Electrical Stimulation (FES) in order to su...
A new approach for estimating nonlinear models of the electrically stimulated quadriceps muscle grou...
International audienceThe knowledge and prediction of the behavior of electrically activated muscles...
A new approach for estimating nonlinear models of the electrically stimulated quadriceps muscle grou...
International audienceWe investigated the parameter identification of a multi-scale physiological mo...
This paper describes the modelling of lower-limb dynamics of paraplegics using different neural netw...
In this paper, a new approach for estimating a nonlinear model of the electrically stimulated quadri...
In this paper, a new approach for estimating a nonlinear model of the electrically stimulated quadri...
International audienceThis paper concerns the whole physiological parameters identification of a mus...
The aim of this paper is to propose a novel class of non-linear, possibly parameter-varying models s...
Model structures for artificially stimulated paralyzed muscle-limb system dynamics were developed an...
Functional electrical stimulation (FES) has been used to facilitate persons with paralysis in restor...
This paper deals with the problem of modelling and control of the knee joint dynamics. Using control...
Stroke affects a large percentage of the population in UK and one of the most devastating and common...
International audienceA model-based FES would be very helpful for the adaptive movement synthesis of...
To develop model-based control strategies for Functional Electrical Stimulation (FES) in order to su...