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首页> 外文期刊>IEEE transactions on neural systems and rehabilitation engineering >A Myoelectric Control Interface for Upper-Limb Robotic Rehabilitation Following Spinal Cord Injury
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A Myoelectric Control Interface for Upper-Limb Robotic Rehabilitation Following Spinal Cord Injury

机译:脊髓损伤后肢体机器人康复的肌电控制界面

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摘要

Spinal cord injury (SCI) is a widespread, life-altering injury leading to impairment of sensorimotor function that, while once thought to be permanent, is now being treated with the hope of one day being able to restore function. Surface electromyography (EMG) presents an opportunity to examine and promote human engagement at the neuromuscular level, enabling new protocols for intervention that could be combined with robotic rehabilitation, particularly when robot motion or force sensing may be unusable due to the user's impairment. In this paper, a myoelectric control interface to an exoskeleton for the elbow and wrist was evaluated on a population of ten able-bodied participants and four individuals with cervical-level SCI. The ability of an EMG classifier to discern intended direction of motion in single-degree-of-freedom (DoF) and multi-DoF control modes was assessed for usability in a therapy-like setting. The classifier demonstrated high accuracy for able-bodied participants (averages over 99% for single-DoF and near 90% for multi-DoF), and performance in the SCI group was promising, warranting further study (averages ranging from 85% to 95% for single-DoF, and variable multi-DoF performance averaging around 60%). These results are encouraging for the future use of myoelectric interfaces in robotic rehabilitation for SCI.
机译:脊髓损伤(SCI)是一种普遍的,改变生命改变的伤害,导致感觉运动障碍的损害,虽然曾经被认为是永久的,但现在正在接受一天能够恢复功能的希望。表面肌电图(EMG)呈现出在神经肌肉层面检查和促进人类接触的机会,使得能够与机器人康复组合的干预协议,特别是当机器人运动或力传感可能由于用户的损伤而无法使用时。在本文中,对肘部和手腕的外骨骼的肌电控制界面进行了评估了十个能够拥有的十个能够体内参与者和宫颈级SCI的四个人群。 EMG分类器在单级 - 自由度(DOF)和多DOF控制模式下辨别预期运动的能力,用于在类似的疗法设置中的可用性。分类器对能够体内参与者的高准确度(SCI-DOF的平均值超过99%),并且SCI集团的性能有望,需要进一步研究(平均范围从85%到95%。对于单DOF,可变多DOF性能平均约60%)。这些结果令人鼓舞的是未来使用肌电界面对SCI的机器人康复。

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