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Simultaneous and Proportional Estimation of Hand Kinematics From EMG During Mirrored Movements at Multiple Degrees-of-Freedom

机译:多自由度镜像运动中肌电图的手部运动的同时和比例估计

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摘要

This paper proposes and tests on able-bodied subjects a control strategy that can be practically applied in unilateral transradial amputees for simultaneous and proportional control of multiple degrees-of-freedom (DOFs). We used artificial neural networks to estimate kinematics of the complex wrist/hand from high-density surface electromyography (EMG) signals of the contralateral limb during mirrored bilateral movements in free space. The movements tested involved the concurrent activation of wrist flexion/extension, radial/ulnar deviation, forearm pronation/supination, and hand closing. The accuracy in estimation was in the range 79%–88% ($r^{2}$ index) for the four DOFs in six able-bodied subjects. Moreover, the estimation of the pronation/supination angle (wrist rotation) was influenced by the reduction in the number of EMG channels used for the estimation to a greater extent than the other DOFs. In conclusion, the proposed method and set-up provide a viable means for proportional and simultaneous control of multiple DOFs for hand prostheses.
机译:本文提出并测试了健全的受试者的控制策略,该策略可实际应用于单侧trans骨截肢者,以同时和成比例地控制多个自由度(DOF)。我们使用人工神经网络从镜像的双侧自由空间运动过程中的对侧肢体的高密度表面肌电图(EMG)信号估计复杂手腕/手的运动学。测试的动作涉及同时激活腕部弯曲/伸展,radial骨/尺骨偏斜,前臂内旋/旋前和手闭合。在六个健全主体中,四个自由度的估计准确性在79%–88%($ r ^ {2} $指数)的范围内。此外,旋前/旋前角(腕旋转)的估计受用于该估计的EMG通道数量减少的影响比其他DOF更大。总之,所提出的方法和装置为手部假体的多个自由度的按比例和同时控制提供了可行的手段。

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