BACKGROUND: Current myoelectric control algorithms for active prostheses map time- and frequency-domain features of the interference EMG signal into prosthesis commands. With this approach, only a fraction of the available information content of the EMG is used and the resulting control fails to satisfy the majority of users. In this study, we predict joint angles of the three degrees of freedom of the wrist from motor unit discharge timings identified by decomposition of high-density surface EMG. METHODS: We recorded wrist kinematics and high-density surface EMG signals from six able-bodied individuals and one patient with limb deficiency while they performed movements of three degrees of freedom of the wrist at three different speeds...
As the development of dexterous prosthetic hand and wrist units continues, there is a need for comma...
As the development of dexterous prosthetic hand and wrist units continues, there is a need for comma...
Background and Objective: Mobility of subject (MoS) and muscle contraction force variation (MCFV) ha...
Background: Current myoelectric control algorithms for active prostheses map time- and frequency-dom...
We propose a myoelectric control method based on neural data regression and musculoskeletal modeling...
Publisher Copyright: © 2022, The Author(s), under exclusive license to Springer Nature Switzerland A...
Improving the condition-tolerance, stability, response time, and dexterity of neural prosthesis cont...
We propose a myoelectric control method based on neural data regression and musculoskeletal modeling...
Publisher Copyright: IEEEAchieving robust, intuitive, simultaneous and proportional control over mul...
The interest on wearable prosthetic devices has boost the research for a robust framework to help in...
Surface electromyography (sEMG) is a non-invasive technique that measures the electrical activity ge...
Myoelectric controlled human arm prosthetics have shown a promising performance with regards to the ...
This thesis describes the efforts done to research on two closely related subjects regarding prosthe...
Myocontrol is the use of a human machine interface based on muscle signals in order to control a rob...
Understanding the neurophysiological signals underlying voluntary motor control and decoding them fo...
As the development of dexterous prosthetic hand and wrist units continues, there is a need for comma...
As the development of dexterous prosthetic hand and wrist units continues, there is a need for comma...
Background and Objective: Mobility of subject (MoS) and muscle contraction force variation (MCFV) ha...
Background: Current myoelectric control algorithms for active prostheses map time- and frequency-dom...
We propose a myoelectric control method based on neural data regression and musculoskeletal modeling...
Publisher Copyright: © 2022, The Author(s), under exclusive license to Springer Nature Switzerland A...
Improving the condition-tolerance, stability, response time, and dexterity of neural prosthesis cont...
We propose a myoelectric control method based on neural data regression and musculoskeletal modeling...
Publisher Copyright: IEEEAchieving robust, intuitive, simultaneous and proportional control over mul...
The interest on wearable prosthetic devices has boost the research for a robust framework to help in...
Surface electromyography (sEMG) is a non-invasive technique that measures the electrical activity ge...
Myoelectric controlled human arm prosthetics have shown a promising performance with regards to the ...
This thesis describes the efforts done to research on two closely related subjects regarding prosthe...
Myocontrol is the use of a human machine interface based on muscle signals in order to control a rob...
Understanding the neurophysiological signals underlying voluntary motor control and decoding them fo...
As the development of dexterous prosthetic hand and wrist units continues, there is a need for comma...
As the development of dexterous prosthetic hand and wrist units continues, there is a need for comma...
Background and Objective: Mobility of subject (MoS) and muscle contraction force variation (MCFV) ha...