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Myoelectric control of prosthetic hands: state-of-the-art review

机译:假手的肌电控制:最新综述

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Myoelectric signals (MES) have been used in various applications, in particular, for identification of user intention to potentially control assistive devices for amputees, orthotic devices, and exoskeleton in order to augment capability of the user. MES are also used to estimate force and, hence, torque to actuate the assistive device. The application of MES is not limited to assistive devices, and they also find potential applications in teleoperation of robots, haptic devices, virtual reality, and so on. The myoelectric control-based prosthetic hand aids to restore activities of daily living of amputees in order to improve the self-esteem of the user. All myoelectric control-based prosthetic hands may not have similar operations and exhibit variation in sensing input, deciphering the signals, and actuating prosthetic hand. Researchers are focusing on improving the functionality of prosthetic hand in order to suit the user requirement with the different operating features. The myoelectric control differs in operation to accommodate various external factors. This article reviews the state of the art of myoelectric prosthetic hand, giving description of each control strategy.
机译:肌电信号(MES)已经用于各种应用中,尤其是用于识别用户意图潜在地控制截肢者,矫形器和外骨骼的辅助设备,以增强用户的能力。 MES还用于估计力,从而估计扭矩以致动辅助装置。 MES的应用不仅限于辅助设备,它们还在机器人,触觉设备,虚拟现实等的远程操作中发现了潜在的应用。基于肌电控制的假肢手有助于恢复被截肢者的日常生活,以改善使用者的自尊。所有基于肌电控制的假肢可能没有相似的操作,并且在感应输入,解密信号和激活假肢方面表现出差异。研究人员正在致力于改善假手的功能,以使用户具有不同的操作功能。肌电控制在操作上有所不同,以适应各种外部因素。本文回顾了肌电修复手的最新技术,并给出了每种控制策略的描述。

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