DocumentCode
651445
Title
A training system for the MyoBock hand in a virtual reality environment
Author
Nakamura, G. ; Shibanoki, Taro ; Shima, Keisuke ; Kurita, Yuichi ; Hasegawa, Mikio ; Otsuka, Akira ; Honda, Yuma ; Chin, Tsung-Shune ; Tsuji, Takao
Author_Institution
Robot Rehabilitaion Center in Hyogo Rehabilitaion Center, Kobe, Japan
fYear
2013
fDate
Oct. 31 2013-Nov. 2 2013
Firstpage
61
Lastpage
64
Abstract
This paper proposes a novel EMG-based MyoBock training system that consistently provides a variety of functions ranging from EMG signal control training to task training. Using the proposed training sytem, a trainee controls a virtual hand (VH) in a 3D virtual reality (VR) environment using EMG signals and position/posture information recorded from the trainee. The trainee can also perform tasks such as holding and moving virtual objects using the system. In the experiments of this study, virtual task training developed with reference to the Box and Block Test (BBT) used to evaluate myoelectric prostheses was conducted with two healthy subjects, who repeatedly performed 10 one-minute tasks involving grasping a ball in one box and transporting it to another. The BBT experiments were also conducted in a real environment before and after the virtual training, with results showing an improvement in the number of tasks successfully completed. It was therefore confirmed that the proposed system could be used for myoelectric prosthesis control training.
Keywords
electromyography; medical computing; medical control systems; prosthetics; virtual reality; 3D virtual reality environment; BBT; Box and Block Test; EMG based MyoBock training system; EMG signal control training; EMG signals; MyoBock hand; myoelectric prostheses; myoelectric prosthesis control training; position information; posture information; task training; virtual object holding tasks; virtual object moving tasks; Electromyography; Joints; Muscles; Prosthetics; Three-dimensional displays; Training; Virtual reality;
fLanguage
English
Publisher
ieee
Conference_Titel
Biomedical Circuits and Systems Conference (BioCAS), 2013 IEEE
Conference_Location
Rotterdam
Type
conf
DOI
10.1109/BioCAS.2013.6679640
Filename
6679640
Link To Document