Development of a myoelectric interface for indirect hand grip force and wrist angle measurement/analysis

A. Jazlan, S. N. Sidek
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引用次数: 3

Abstract

Limb loss is a growing problem due to the increasing number of accidents worldwide. A cybernetic prosthesis is a device which can assist individuals with hand disabilities by enabling them to have some of the hand capabilities of an able bodied individual. Extracting hand grip force and wrist angle information from forearm electromyogram (EMG) signals is useful to be used as inputs for the control of cybernetic prostheses. By establishing the relationship between forearm EMG and hand grip force/wrist angles, the prosthetic hand can be controlled in a manner that is customised to an amputee’s intent. In this research work, a myoelectric interface which consists of an electronic conditioning circuit to measure EMG signals and software to record and process the EMG signals were developed. Experimental training and testing datasets from five subjects were collected to investigate the relationship between forearm EMG, hand grip force and wrist angle simultaneously.
用于间接握力和手腕角度测量/分析的肌电接口的开发
由于世界范围内事故的增加,肢体丧失是一个日益严重的问题。控制论义肢是一种可以帮助手部残疾的人,使他们能够拥有健全个体的一些手部功能的装置。从前臂肌电图信号中提取手握力和手腕角度信息,可作为控制论假肢控制的输入。通过建立前臂肌电图和手握力/手腕角度之间的关系,可以根据截肢者的意图以定制的方式控制假手。本研究开发了一个肌电接口,该接口由测量肌电信号的电子调理电路和记录和处理肌电信号的软件组成。收集5名受试者的训练和测试数据,同时研究前臂肌电图、握力和手腕角度之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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