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通过经颅直流电刺激改善截肢者的肌电控制

Improving Myoelectric Control for Amputees through Transcranial Direct Current Stimulation.

作者信息

Pan Lizhi, Zhang Dingguo, Sheng Xinjun, Zhu Xiangyang

出版信息

IEEE Trans Biomed Eng. 2015 Aug;62(8):1927-36. doi: 10.1109/TBME.2015.2407491. Epub 2015 Feb 26.

Abstract

Most prosthetic myoelectric control studies have shown good performance for unimpaired subjects. However, performance is generally unacceptable for amputees. The primary problem is the poor quality of electromyography (EMG) signals of amputees compared with healthy individuals. To improve clinical performance of myoelectric control, this study explored transcranial direct current stimulation (tDCS) to modulate brain activity and enhance EMG quality. We tested six unilateral transradial amputees by applying active and sham anodal tDCS separately on two different days. Surface EMG signals were acquired from the affected and intact sides for 11 hand and wrist motions in the pre-tDCS and post-tDCS sessions. Autoregression coefficients and linear discriminant analysis classifiers were used to process the EMG data for pattern recognition of the 11 motions. For the affected side, active anodal tDCS significantly reduced the average classification error rate (CER) by 10.1%, while sham tDCS had no such effect. For the intact side, the average CER did not change on the day of sham tDCS but increased on the day of active tDCS. These results demonstrated that tDCS could modulate brain function and improve EMG-based classification performance for amputees. It has great potential in dramatically reducing the length of learning process of amputees for effectively using myoelectrically controlled multifunctional prostheses.

摘要

大多数假肢肌电控制研究表明,未受损受试者的表现良好。然而,截肢者的表现通常难以令人接受。主要问题是与健康个体相比,截肢者的肌电图(EMG)信号质量较差。为了提高肌电控制的临床性能,本研究探索了经颅直流电刺激(tDCS)来调节大脑活动并提高EMG质量。我们对六名单侧经桡骨截肢者进行了测试,在两天内分别施加主动和伪阳极tDCS。在tDCS前和tDCS后的时段,从患侧和健侧采集了11种手部和腕部动作的表面EMG信号。使用自回归系数和线性判别分析分类器处理EMG数据,以对这11种动作进行模式识别。对于患侧,主动阳极tDCS显著降低了平均分类错误率(CER)10.1%,而伪tDCS则没有这种效果。对于健侧,伪tDCS当天平均CER没有变化,但主动tDCS当天有所增加。这些结果表明,tDCS可以调节大脑功能,并改善截肢者基于EMG的分类性能。它在显著缩短截肢者有效使用肌电控制多功能假肢的学习过程长度方面具有巨大潜力。

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