肌电与血氧信号同步采集系统设计与实验研究

      Design and Experimental Research of Synchronous Acquisition System of EMG and Blood Oxygen Signal

      • 摘要: 设计了表面肌电信号(surface electromyography,sEMG)和血氧信号实时监测系统,用于探究肌肉疲劳过程中生理信号的变化,从而对肌肉疲劳进行检测。介绍了sEMG的分析方法,血氧检测的原理,阐述了系统方案。系统硬件部分以STM32为核心,目标肌群的sEMG采集由Ag/AgCl凝胶电极、三运放仪表放大器以及信号调理模块组成。血氧信号采集基于近红外光谱技术(near infrared spectroscopy,NIRS),包括光源、光源驱动、光电转换、信号调理等模块。系统软件部分基于实时uC/OS-III的软件系统。通过等长收缩局部肌肉疲劳实验提取sEMG的特征参数;在前臂阻断实验中计算出氧合血红蛋白(oxyhemoglobin,HbO2)和脱氧血红蛋白(deoxyhemoglobin,Hb)的相对变化,从而验证系统采集两种信号的有效性。

         

        Abstract: In this study, a surface electromyography (sEMG) and blood oxygen signal real-time monitoring system is designed to explore the changes of physiological signals during muscle fatigue, so as to detect muscle fatigue. The analysis method of sEMG and the principle of blood oxygen detection are respectively introduced, and the system scheme is expounded. The hardware part of the system takes STM32 as the core. Conditioning module composition; blood oxygen signal acquisition is based on near infrared spectroscopy (NIRS), specifically including light source, light source driving, photoelectric conversion, signal conditioning and other modules. The system software part is based on the real-time uC/OS-III software system. The characteristic parameters of sEMG were extracted by isometric contraction local muscle fatigue experiment; the relative changes of oxyhemoglobin (HbO2) and deoxyhemoglobin (Hb) were calculated in the forearm blocking experiment, thereby verifying that the system collects two signals effectiveness.

         

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