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A Preliminary Investigation of the Effect of Force Variation for Myoelectric Control of Hand Prosthesis

机译:初步调查手术假体磁芯控制力变化的影响

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The myoelectric control of prostheses has been an important area of research for the past 40 years. Significant advances have been achieved with Pattern Recognition (PR) systems regarding the number of movements to be classified with high accuracy. However, practical robustness still needs further research. This paper focuses on investigating the effect of the change in force levels by transradial amputee persons on the performance of PR systems. Two below-elbow amputee persons participated in the study. Three levels of forces (low, medium, and high) were recorded for different hand grips with the help of visual feedback from the Electromyography (EMG) signals. Results showed that changing the force level degraded the performance of the myoelectric control system by up to 60% with 12 EMG channels for 4 hand grips and a rest position. We investigated different EMG feature sets in combination with a Linear Discriminant Analysis (LDA) classifier. The performance was slightly better with Time Domain (TD) features compared to Auto Regression (AR) coefficients and Root Mean Square (RMS) features. Finally, the error of the classification was considerably reduced to approximately 17% when the PR system was trained with all force levels.
机译:Prostheses的肌电控制是过去40年来的重要研究领域。对于以高精度分类的运动数量的模式识别(PR)系统实现了显着的进展。但是,实际稳健性仍然需要进一步研究。本文侧重于调查跨越截肢者对PR系统性能的跨越截肢人员对力水平变化的影响。两个肘部截肢者的人参加了这项研究。借助来自肌电图(EMG)信号的视觉反馈,对不同的手夹具记录了三个力量(低,培养基和高)。结果表明,改变力水平将电磁控制系统的性能降低高达60%,具有4个手柄的12个EMG通道和静止位置。我们调查了不同的EMG功能集合与线性判别分析(LDA)分类器组合。与自动回归(AR)系数和均方根(RMS)特征相比,随着时域(TD)特征的时域(TD)特征略微更好。最后,当PR系统培训时,分类的误差大大降至大约17%,所有力水平训练。

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