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Study of intelligent bio-feedback therapy system based on transcutaneous electrical nerve stimulation and surface EMG signals

机译:基于经皮电子神经刺激和表面EMG信号的智能生物反馈治疗系统研究

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In this study, a novel artificial biofeedback system based on the transcutaneous electrical nerve stimulation and pattern recognition of surface electromyography(sEMG) signals is designed for the rehabilitation treatment. This system is composed of hardware circuit of sEMG acquisition, surface Agcl electrodes, electrical nerve stimulator and relevant software. The main purpose of the system is to cure the nerve and muscle disease by biofeedback intelligent technology instead of physicians, that is, by means of feature extraction and classification of sEMG, the system can identify three different state (sensory, motorial, painful) and the fatigue state of the muscle, then according to above discrimination results to control the output of the stimulator automatically. In this paper, Firstly, a surface electromyographic signal acquisition circuit and signal processing interface based MFC are developed and designed. Secondly, the AR(Auto-Regressive)and WT(wavelet transform) are adopted for signal feature extraction, then extracted feature vectors are feed to the SVM(support vector machine) classifier. Finally, according to the discrimination results to regulate the output of the stimulator. Experiments verify the effectiveness of the system.
机译:在这项研究中,基于所述经皮电神经刺激和模式识别表面肌电(表面肌电)信号的一种新颖的人造生物反馈系统被设计用于康复治疗。该系统由肌电采集,表面AgCl电极,电神经刺激器和相关软件的硬件电路构成。该系统的主要目的是为治愈通过生物反馈的智能化技术,而不是医生,是,是通过特征提取和表面肌电信号的分类方式的神经和肌肉疾病,该系统能够识别三种不同的状态(感觉,运动神经,痛)和肌肉的疲劳状态,则根据上述判别结果来自动地控制刺激器的输出。在本文中,首先,基于MFC表面肌电信号采集电路和信号处理接口的开发和设计。其次,AR(自回归)和WT(小波变换)被采用的信号特征提取,然后萃取特征向量被馈送到SVM(支持向量机)的分类器。最后,根据判断结果来调节刺激器的输出。实验结果验证了系统的有效性。

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