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用于高级假肢控制的植入式肌电传感器的研制。

Development of an implantable myoelectric sensor for advanced prosthesis control.

机构信息

Alfred E. Mann Foundation for Scientific Research, Santa Clarita, CA, USA.

出版信息

Artif Organs. 2011 Mar;35(3):249-52. doi: 10.1111/j.1525-1594.2011.01219.x. Epub 2011 Mar 3.

Abstract

Modern hand and wrist prostheses afford a high level of mechanical sophistication, but the ability to control them in an intuitive and repeatable manner lags. Commercially available systems using surface electromyographic (EMG) or myoelectric control can supply at best two degrees of freedom (DOF), most often sequentially controlled. This limitation is partially due to the nature of surface-recorded EMG, for which the signal contains components from multiple muscle sources. We report here on the development of an implantable myoelectric sensor using EMG sensors that can be chronically implanted into an amputee's residual muscles. Because sensing occurs at the source of muscle contraction, a single principal component of EMG is detected by each sensor, corresponding to intent to move a particular effector. This system can potentially provide independent signal sources for control of individual effectors within a limb prosthesis. The use of implanted devices supports inter-day signal repeatability. We report on efforts in preparation for human clinical trials, including animal testing, and a first-in-human proof of principle demonstration where the subject was able to intuitively and simultaneously control two DOF in a hand and wrist prosthesis.

摘要

现代手部和腕部假肢具有高度的机械复杂性,但在直观和可重复的方式下控制它们的能力却滞后了。商业上可用的使用表面肌电图 (EMG) 或肌电控制的系统最多只能提供两个自由度 (DOF),通常是顺序控制。这种限制部分归因于表面记录的 EMG 的性质,因为信号中包含来自多个肌肉源的成分。我们在这里报告了一种使用 EMG 传感器的可植入肌电传感器的开发,该传感器可以长期植入截肢者的残余肌肉中。由于感应发生在肌肉收缩的源头,因此每个传感器都会检测到单个 EMG 主要成分,对应于移动特定效应器的意图。该系统可以为肢体假肢中单个效应器的控制提供潜在的独立信号源。植入设备的使用支持日间信号可重复性。我们报告了为人体临床试验做准备的工作,包括动物试验,以及首例人体原理证明演示,其中受试者能够直观地同时控制手部和腕部假肢中的两个 DOF。

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