Functional electrical stimulation (FES) is an effective technology in post-stroke rehabilitation of the upper limbs. Because of the complexity of the system, traditional linear controllers are still far to drive accurate and natural movements. In this work, we apply reinforcement learning (RL) to design a nonlinear controller for an upper limb FES system combined with a passive exoskeleton. RL methods learn by interacting with the environment and, to efficiently use the collected data, we simulated large numbers of experience episodes through artificial neural network (ANN) models of the electrically stimulated arm muscles. The performance of the novel control solution was compared to a PID controller on five healthy subjects during planar ...
Hybrid robotic systems represent a novel research field, where functional electrical stimulation (FE...
The combined use of Functional Electrical Stimulation (FES) and robotic technologies is advocated to...
The combined use of Functional Electrical Stimulation (FES) and robotic technologies is advocated to...
Functional electrical stimulation (FES) is an effective technology in post-stroke rehabilitation of ...
Controllers for Functional Electrical Stimulation (FES) are still not able to restore natural moveme...
Controllers for Functional Electrical Stimulation are still not able to produce natural movements of...
Clinical tests have shown that the dynamics of a human arm, controlled using Functional Electrical S...
High-level spinal cord injury (SCI) in humans causes paralysis below the neck. Functional electrical...
Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses...
Functional Electrical Stimulation (FES) is a technique to evoke muscle contraction through low-energ...
Clinical tests have shown that the dynamics of a human arm, controlled using Functional Electrical S...
Stroke affects more than 150,000 people every year and is the third major cause of adult disability ...
Stroke affects more than 150,000 people every year and is the third major cause of adult disability ...
Introduction There is a body of clinical evidence to support the use of FES to improve motor control...
Hybrid robotic systems represent a novel research field, where functional electrical stimulation (FE...
The combined use of Functional Electrical Stimulation (FES) and robotic technologies is advocated to...
The combined use of Functional Electrical Stimulation (FES) and robotic technologies is advocated to...
Functional electrical stimulation (FES) is an effective technology in post-stroke rehabilitation of ...
Controllers for Functional Electrical Stimulation (FES) are still not able to restore natural moveme...
Controllers for Functional Electrical Stimulation are still not able to produce natural movements of...
Clinical tests have shown that the dynamics of a human arm, controlled using Functional Electrical S...
High-level spinal cord injury (SCI) in humans causes paralysis below the neck. Functional electrical...
Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses...
Functional Electrical Stimulation (FES) is a technique to evoke muscle contraction through low-energ...
Clinical tests have shown that the dynamics of a human arm, controlled using Functional Electrical S...
Stroke affects more than 150,000 people every year and is the third major cause of adult disability ...
Stroke affects more than 150,000 people every year and is the third major cause of adult disability ...
Introduction There is a body of clinical evidence to support the use of FES to improve motor control...
Hybrid robotic systems represent a novel research field, where functional electrical stimulation (FE...
The combined use of Functional Electrical Stimulation (FES) and robotic technologies is advocated to...
The combined use of Functional Electrical Stimulation (FES) and robotic technologies is advocated to...