Direct and indirect methods to optimize the muscular force response to a pulse train of electrical stimulation
Recent force-fatigue mathematical models in biomechanics [7] allow to predict the muscular force response to functional electrical stimulation (FES) and leads to the optimal control problem of maximizing the force. The stimulations are Dirac pulses and the control parameters are the pulses amplitude...
Main Authors: | Bakir Toufik, Bonnard Bernard, Bourdin Loïc, Rouot Jérémy |
---|---|
Format: | Article |
Language: | English |
Published: |
EDP Sciences
2021-08-01
|
Series: | ESAIM: Proceedings and Surveys |
Online Access: | https://www.esaim-proc.org/articles/proc/pdf/2021/02/proc2107101.pdf |
Similar Items
-
Sub-Riemannian geometry, Hamiltonian dynamics, micro-swimmers, copepod nauplii and copepod robot
by: Bernard Bonnard, et al.
Published: (2018-06-01) -
Méthodes géométriques et numériques en contrôle optimal et applications au transfert orbital à poussée faible et à la nage à faible nombre de Reynolds
by: Rouot, Jérémy
Published: (2016) -
Synaptic Effect of Aδ-Fibers by Pulse-Train Electrical Stimulation
by: Shota Tanaka, et al.
Published: (2021-04-01) -
Satellite-based estimate of the direct and indirect aerosol climate forcing
by: Quaas, Johannes, et al.
Published: (2015) -
Contribution of Corticospinal Modulation and Total Electrical Energy for Peripheral-Nerve-Stimulation-Induced Neuroplasticity as Indexed by Additional Muscular Force
by: Chiun-Fan Chen, et al.
Published: (2016-01-01)