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Myoelectric Neural Interface Enables Accurate Control of a Virtual Multiple Degree-Of-Freedom Foot-Ankle Prosthesis

机译:肌电神经界面可以准确控制虚拟多程度的自由度脚踝假体

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Technological advances have enabled clinical use of powered foot-ankle prostheses. Although the fundamental purposes of such devices are to restore natural gait and reduce energy expenditure by amputees during walking, these powered prostheses enable further restoration of ankle function through possible voluntary control of the powered joints. Such control would greatly assist amputees in daily tasks such as reaching, dressing, or simple limb repositioning for comfort. A myoelectric interface between an amputee and the powered foot-ankle prostheses may provide the required control signals for accurate control of multiple degrees of freedom of the ankle joint. Using a pattern recognition classifier we compared the error rates of predicting up to 7 different ankle-joint movements using electromyographic (EMG) signals collected from below-knee, as well as below-knee combined with above-knee muscles of 12 trans-tibial amputee and 5 control subjects. Our findings suggest very accurate (5.3±0.5%SE mean error) real-time control of a 1 degree of freedom (DOF) of ankle joint can be achieved by amputees using EMG from as few as 4 below-knee muscles. Reliable control (9.8±0.7%SE mean error) of 3 DOFs can be achieved using EMG from 8 below-knee and above-knee muscles.
机译:技术进步使能动力脚踝假肢的临床应用。虽然此类设备的基本目的是在行走期间恢复自然步态并减少能源支出,但这些动力假体能够通过可能的动力接头自愿控制进一步恢复脚踝函数。这种控制将在日常任务中有极大的帮助,例如伸展,敷料或简单的肢体重新定位,以便于舒适。截肢者和动力脚踝假体之间的肌电接口可以提供所需的控制信号,以便精确控制多个踝关节自由度。使用模式识别分类器,我们使用从下面的膝盖内收集的电灰度(EMG)信号以及12个跨胫骨截肢者的膝关节相结合的膝关节(EMG)信号进行比较预测最多7个不同的踝关节运动的误差率和5个控制主题。我们的研究结果表明,非常精确的(5.3±0.5%SE误差)的实时控制1自由度(DOF)的自由度(DOF)可以通过从膝盖以下的4个少数以下的emg来实现踝关节。可以使用eMG从膝关节和膝关节肌肉下方的8个可靠控制(9.8±0.7%SE误差)3 DOF。

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