Myoelectric prosthetic hands aim to serve upper limb amputees. The myoelectric control of the hand grasp action is a kind of real-time or online method. Thus it is of great necessity to carry on a study of online prosthetic hand electrical control. In this paper, the strategy of simultaneous EMG decoding of grasping patterns and grasping force was realized by controlling a virtual multi-degree-freedom prosthetic hand and a real one-degree-freedom prosthetic hand simultaneously. The former realized the grasping patterns from the recognition of the sEMG pattern. The other implemented the grasping force from sEMG force decoding. The results show that the control method is effective and feasible
Dependable and efficient utilization of a multigrasp prosthetic hand requires an effective control i...
The paper investigates how multi-finger myoelectric signals could be used to control a virtual robot...
In this paper a case study is introduced, which assesses the suitability of a newly conceived two-ch...
Myoelectric prosthetic hands aim to serve upper limb amputees. The myoelectric control of the hand g...
A real-time pattern recognition algorithm based on k-nearest neighbors and lazy learning was used to...
Understanding the neurophysiological signals underlying voluntary motor control and decoding them fo...
The human hand is a complex system, with a large number of degrees of freedom (DoFs), sensors embedd...
Myoelectric prostheses allow users to recover lost functionality by controlling a robotic device wit...
Prosthetic hands are prescribed to patients who have suffered an amputation of the upper limb due to...
Human’s movement can be decoded by surface electromyography (EMG), and the prosthetic hand can be co...
This paper presents a prosthetic hand control system for trans-radial amputees based on electromyogr...
A myoelectric control system for prostheses was developed and evaluated on six healthy subjects. The...
Myoelectric upper limb prostheses are controlled using information from the electrical activity of r...
One of the major problems when dealing with highly dexterous, active hand prostheses is their contro...
Dependable and efficient utilization of a multigrasp prosthetic hand requires an effective control i...
The paper investigates how multi-finger myoelectric signals could be used to control a virtual robot...
In this paper a case study is introduced, which assesses the suitability of a newly conceived two-ch...
Myoelectric prosthetic hands aim to serve upper limb amputees. The myoelectric control of the hand g...
A real-time pattern recognition algorithm based on k-nearest neighbors and lazy learning was used to...
Understanding the neurophysiological signals underlying voluntary motor control and decoding them fo...
The human hand is a complex system, with a large number of degrees of freedom (DoFs), sensors embedd...
Myoelectric prostheses allow users to recover lost functionality by controlling a robotic device wit...
Prosthetic hands are prescribed to patients who have suffered an amputation of the upper limb due to...
Human’s movement can be decoded by surface electromyography (EMG), and the prosthetic hand can be co...
This paper presents a prosthetic hand control system for trans-radial amputees based on electromyogr...
A myoelectric control system for prostheses was developed and evaluated on six healthy subjects. The...
Myoelectric upper limb prostheses are controlled using information from the electrical activity of r...
One of the major problems when dealing with highly dexterous, active hand prostheses is their contro...
Dependable and efficient utilization of a multigrasp prosthetic hand requires an effective control i...
The paper investigates how multi-finger myoelectric signals could be used to control a virtual robot...
In this paper a case study is introduced, which assesses the suitability of a newly conceived two-ch...