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长期植入肌肉传感器和神经移植用于肘部以上截肢者对机器人手臂的无线控制。

Long-term implant of intramuscular sensors and nerve transfers for wireless control of robotic arms in above-elbow amputees.

作者信息

Salminger S, Sturma A, Hofer C, Evangelista M, Perrin M, Bergmeister K D, Roche A D, Hasenoehrl T, Dietl H, Farina D, Aszmann O C

机构信息

Division of Plastic and Reconstructive Surgery, Department of Surgery, Medical University of Vienna, Waehringer Guertel 18-20, A-1090 Vienna, Austria.

Christian Doppler Laboratory for Restoration of Extremity Function, Medical University of Vienna, Waehringer Guertel 18-20, A-1090 Vienna, Austria.

出版信息

Sci Robot. 2019 Jul 17;4(32). doi: 10.1126/scirobotics.aaw6306.

Abstract

Targeted muscle reinnervation (TMR) amplifies the electrical activity of nerves at the stump of amputees by redirecting them in remnant muscles above the amputation. The electrical activity of the reinnervated muscles can be used to extract natural control signals. Nonetheless, current control systems, mainly based on noninvasive muscle recordings, fail to provide accurate and reliable control over time. This is one of the major reasons for prosthetic abandonment. This prospective interventional study includes three unilateral above-elbow amputees and reports the long-term (2.5 years) implant of wireless myoelectric sensors in the reinnervation sites after TMR and their use for control of robotic arms in daily life. It therefore demonstrates the clinical viability of chronically implanted myoelectric interfaces that amplify nerve activity through TMR. The patients showed substantial functional improvements using the implanted system compared with control based on surface electrodes. The combination of TMR and chronically implanted sensors may drastically improve robotic limb replacement in above-elbow amputees.

摘要

靶向肌肉再支配(TMR)通过将截肢者残端神经重新导向截肢部位上方的残余肌肉,增强了神经的电活动。再支配肌肉的电活动可用于提取自然控制信号。然而,目前主要基于非侵入性肌肉记录的控制系统无法长期提供准确可靠的控制。这是假肢被弃用的主要原因之一。这项前瞻性干预研究纳入了三名单侧肘上截肢者,并报告了在TMR术后将无线肌电传感器长期(2.5年)植入再支配部位及其在日常生活中用于控制机械臂的情况。因此,它证明了通过TMR增强神经活动的长期植入肌电接口的临床可行性。与基于表面电极的控制相比,患者使用植入系统后功能有显著改善。TMR与长期植入传感器的结合可能会极大地改善肘上截肢者的机械肢体置换。

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