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基于语音识别和肌电混合的桡骨截肢者手部假肢改进控制。

Improved hand prostheses control for transradial amputees based on hybrid of voice recognition and electromyography.

机构信息

Dentistry College, Mosul University, Mosul, Iraq.

Management Technical College, Middle Technical University, Baghdad, Iraq.

出版信息

Int J Artif Organs. 2021 Jul;44(7):509-517. doi: 10.1177/0391398820976656. Epub 2020 Dec 7.

Abstract

The control of prostheses and their complexities is one of the greatest challenges limiting wide amputees' use of upper limb prostheses. The main challenges include the difficulty of extracting signals for controlling the prostheses, limited number of degrees of freedom (DoF), and cost-prohibitive for complex controlling systems. In this study, a real-time hybrid control system, based on electromyography (EMG) and voice commands (VC) is designed to render the prosthesis more dexterous with the ability to accomplish amputee's daily activities proficiently. The voice and EMG systems were combined in three proposed hybrid strategies, each strategy had different number of movements depending on the combination protocol between voice and EMG control systems. Furthermore, the designed control system might serve a large number of amputees with different amputation levels, and since it has a reasonable cost and be easy to use. The performance of the proposed control system, based on hybrid strategies, was tested by intact-limbed and amputee participants for controlling the HANDi hand. The results showed that the proposed hybrid control system was robust, feasible, with an accuracy of 94%, 98%, and 99% for Strategies 1, 2, and 3, respectively. It was possible to specify the grip force applied to the prosthetic hand within three gripping forces. The amputees participated in this study preferred combination Strategy 3 where the voice and EMG are working concurrently, with an accuracy of 99%.

摘要

控制假肢及其复杂性是限制上肢截肢者广泛使用假肢的最大挑战之一。主要挑战包括提取控制假肢信号的困难、自由度数量有限以及复杂控制系统的成本过高。在这项研究中,设计了一种基于肌电图 (EMG) 和语音命令 (VC) 的实时混合控制系统,旨在使假肢更灵活,能够熟练完成截肢者的日常活动。语音和 EMG 系统结合了三种提出的混合策略,每种策略根据语音和 EMG 控制系统之间的组合协议具有不同数量的运动。此外,所设计的控制系统可能适合具有不同截肢水平的大量截肢者,并且具有合理的成本和易于使用的特点。基于混合策略的提出的控制系统的性能通过完整肢体和截肢参与者进行了测试,用于控制 HANDi 手。结果表明,所提出的混合控制系统具有鲁棒性、可行性,策略 1、2 和 3 的准确性分别为 94%、98%和 99%。可以在三种抓握力内指定施加到手部假肢的抓握力。参与这项研究的截肢者更喜欢语音和 EMG 同时工作的组合策略 3,准确性为 99%。

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