手部表面肌电信号的触觉感知和反馈

Leilei Zhang, Zujia Zheng, Gongfa Li, Ying Sun, Guozhang Jiang, Jianyi Kong, Bo Tao, Shuang Xu, Hui Yu, Honghai Liu
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引用次数: 2

摘要

使用表面肌电图(SEMG)信号控制的主动手假体已经使用了几十年,以恢复抓取功能。拥有肌电手的截肢者希望根据自己的意愿控制假肢,并尽可能像人的手一样行动。因此,大量的研究工作已经提出,以推进肌电手的控制。然而,肌电手的触觉感应和反馈仍然缺失,从而限制了手的抓取能力。事实上,将触觉感知和反馈与假肢相结合,对于提高用户的操作性能和增强感知体现具有重要作用。本文综述了当前触觉传感技术的发展现状,包括触觉传感器的类型和集成方法。然后,介绍了表面肌电信号的基本理论,并对假手的感觉反馈进行了概述。论文最后详细讨论了具有挑战性的问题和未来的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tactile sensing and feedback in SEMG hand
Active hand prostheses controlled using surface electromyography (SEMG) signals have been used for decades to restore the grasping function. Amputees with myoelectric hands wish to control the prostheses according to their own will and act like human hands as much as possible. Therefore, substantial research efforts have been put forth to advance the control of myoelectric hands. However, the tactile sensing and feedback of the myoelectric hands are still missing, thus limit hand grasp capabilities. In fact, integration of tactile sensing and feedback with hand prostheses plays an important role in improving the manipulation performance and enhancing perceptual embodiment for users. This paper reviews current state-of-the-art of tactile sensing technologies, including tactile sensor types and integration methods. Then, it introduces the basic theory of SEMG signals and presents an overview of the sensory feedback employed to prosthetic hand. The paper concludes with a detailed discussion of challenging issues and future developments.
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