Prostheses are artificial body parts that can be used by amputees. Myoelectric prostheses are controlled by so-called surface electromyograms (sEMG) that are acquired on the skin surface of the residual limb. A well-known problem in myoelectric prostheses is motion artifacts, these artifacts cause unwanted behaviour of the prosthesis. The purpose of this study is to try to cancel the effect motion artifacts have on myoelectric prosthesis control, in order to avoid unsolicited prosthesis behaviour. The subject of myoelectric prostheses and motion artifacts are outlined in this study, together with the development and characterisation of a sensor that can do simultaneous measurements of sEMG and contact forces between a surface electrode ...
From a prosthesis user's viewpoint there is a wide range of challenges in prosthesis research, despi...
The functionality of upper limb prostheses can be improved by intuitive control strategies that use ...
The functionality of upper limb prostheses can be improved by intuitive control strategies that use ...
Upper limb myoelectric prostheses are controlled by the voluntary contraction of residual muscles of...
Upper limb myoelectric prostheses are controlled by the voluntary contraction of residual muscles of...
In myoelectric prostheses, movement artifacts are known to impair control performance. This study re...
Myoelectric prostheses help amputees to regain independence and a higher quality of life. Such prost...
An upper-limb amputation is a life-changing procedure severely impacting the individual's ability to...
The surface myoelectric signal (MES) has proven to be an effective control input for powered prosthe...
Technological advancements in lower limb prostheses have resulted in actuated motors in both knees a...
Amputations can result in disability, permanent physical injury, and even posttraumatic stress disor...
An electromyography signal that was taken from the surface of the stump-muscle of an amputee is used...
An electromyography signal that was taken from the surface of the stump-muscle of an amputee is used...
Limb loss is a traumatic event as it has physical and psychological effects on an amputee. Recent ad...
Abstract Background Myoelectric pattern recognition systems can decode movement intention to drive u...
From a prosthesis user's viewpoint there is a wide range of challenges in prosthesis research, despi...
The functionality of upper limb prostheses can be improved by intuitive control strategies that use ...
The functionality of upper limb prostheses can be improved by intuitive control strategies that use ...
Upper limb myoelectric prostheses are controlled by the voluntary contraction of residual muscles of...
Upper limb myoelectric prostheses are controlled by the voluntary contraction of residual muscles of...
In myoelectric prostheses, movement artifacts are known to impair control performance. This study re...
Myoelectric prostheses help amputees to regain independence and a higher quality of life. Such prost...
An upper-limb amputation is a life-changing procedure severely impacting the individual's ability to...
The surface myoelectric signal (MES) has proven to be an effective control input for powered prosthe...
Technological advancements in lower limb prostheses have resulted in actuated motors in both knees a...
Amputations can result in disability, permanent physical injury, and even posttraumatic stress disor...
An electromyography signal that was taken from the surface of the stump-muscle of an amputee is used...
An electromyography signal that was taken from the surface of the stump-muscle of an amputee is used...
Limb loss is a traumatic event as it has physical and psychological effects on an amputee. Recent ad...
Abstract Background Myoelectric pattern recognition systems can decode movement intention to drive u...
From a prosthesis user's viewpoint there is a wide range of challenges in prosthesis research, despi...
The functionality of upper limb prostheses can be improved by intuitive control strategies that use ...
The functionality of upper limb prostheses can be improved by intuitive control strategies that use ...