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Crosspoint switching of EMG signals to increase number of channels for pattern recognition myoelectric control

机译:EMG信号的交叉点切换,增加图案识别磁电气控制的通道数

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Myoelectric pattern recognition (PR) can provide a more intuitive control for upper limb amputees in using multifunction prosthesis than direct control. Accuracy of a pattern recognition system has been shown to improve with increasing number of EMG channels. However, increasing the number of channels comes with a drawback of increased weight, cost and complexity of the prosthesis. This paper presents the concept and design of a novel EMG acquisition system to acquire higher number of channels without increasing the number of electrodes placed or the complexity of the prosthetic device. A prototype of the device was developed and tested on able-bodied subjects to evaluate its performance in pattern recognition. Subjects were requested to perform 9 different hand movements while EMG data was collected into training and test groups. Test results indicate a 15% improvement in classification accuracy with the new system when compared to conventional systems. A system like this is valuable for patients with higher level amputations where placing higher number of electrodes is not feasible due to limited availability of appropriate muscle sites.
机译:Myoelectric模式识别(PR)可以提供比直接控制的多功能假体在使用多功能假体的上肢对上肢进行的更直观的控制。随着越来越多的EMG通道,已经显示了模式识别系统的精度。然而,增加信道的数量随着缺点而增加的重量,成本和假体的复杂性。本文介绍了新型EMG采集系统的概念和设计,以获取更高数量的通道,而不增加放置的电极数量或假肢装置的复杂性。开发了该器件的原型并测试了能够体内的受试者,以评估其在模式识别中的性能。要求受试者执行9种不同的手动运动,而EMG数据被收集到培训和测试组中。与传统系统相比,测试结果表明与新系统的分类准确性提高了15%。一种如此的系统对于具有更高水平截肢的患者具有重要的患者,其中由于适当的肌肉部位的可用性有限而置于较高数量的电极是不可行的。

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