Dawson Michael R, Fahimi Farbod, Carey Jason P
Department of Mechanical Engineering, University of Alberta, Alberta, Canada.
Open Biomed Eng J. 2012;6:5-15. doi: 10.2174/1874230001206010005. Epub 2012 Feb 20.
The objective of above-elbow myoelectric prostheses is to reestablish the functionality of missing limbs and increase the quality of life of amputees. By using electromyography (EMG) electrodes attached to the surface of the skin, amputees are able to control motors in myoelectric prostheses by voluntarily contracting the muscles of their residual limb. This work describes the development of an inexpensive myoelectric training tool (MTT) designed to help upper limb amputees learn how to use myoelectric technology in advance of receiving their actual myoelectric prosthesis. The training tool consists of a physical and simulated robotic arm, signal acquisition hardware, controller software, and a graphical user interface. The MTT improves over earlier training systems by allowing a targeted muscle reinnervation (TMR) patient to control up to two degrees of freedom simultaneously. The training tool has also been designed to function as a research prototype for novel myoelectric controllers. A preliminary experiment was performed in order to evaluate the effectiveness of the MTT as a learning tool and to identify any issues with the system. Five able-bodied participants performed a motor-learning task using the EMG controlled robotic arm with the goal of moving five balls from one box to another as quickly as possible. The results indicate that the subjects improved their skill in myoelectric control over the course of the trials. A usability survey was administered to the subjects after their trials. Results from the survey showed that the shoulder degree of freedom was the most difficult to control.
肘上肌电假肢的目标是恢复缺失肢体的功能并提高截肢者的生活质量。通过使用附着在皮肤表面的肌电图(EMG)电极,截肢者能够通过自主收缩残肢肌肉来控制肌电假肢中的电机。这项工作描述了一种廉价的肌电训练工具(MTT)的开发,该工具旨在帮助上肢截肢者在接收实际的肌电假肢之前学习如何使用肌电技术。该训练工具由一个物理和模拟机器人手臂、信号采集硬件、控制器软件以及一个图形用户界面组成。MTT比早期的训练系统有所改进,它允许目标肌肉再支配(TMR)患者同时控制多达两个自由度。该训练工具还被设计用作新型肌电控制器的研究原型。为了评估MTT作为学习工具的有效性并识别系统存在的任何问题,进行了一项初步实验。五名身体健全的参与者使用肌电控制的机器人手臂执行了一项运动学习任务,目标是尽快将五个球从一个盒子移动到另一个盒子。结果表明,受试者在试验过程中提高了他们的肌电控制技能。试验结束后,对受试者进行了可用性调查。调查结果显示,肩部自由度最难控制。