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Design of an electronic system for monitoring muscle activity in weight-lifting

机译:用于监测体重升降中肌肉活动的电子系统的设计

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Electronic systems based on body area networks can be used to monitor sports performance. These systems use sensors to acquire signals from the athlete while performing the exercises, and a communication system to transmit the data to a computer or smart phone to analyze it. That information can be used to evaluate sport performance quantitatively, prevent and treat injuries, and design personalized training programs. Surface electromyography (SEMG) is used to study muscle function during dynamic activities, and can be used for the biomechanical analysis of gait, sports gesture, muscle fatigue, and sports performance. This paper describes the design, construction and evaluation of an electronic circuit for monitoring muscle activation during weight-lifting exercises. The system has the following stages: an instrumentation amplifier to amplify the electromyographic (EMG) signal and reduce common-mode noise, a band-pass filter to limit the frequency content to the range 30 to 500 Hz, a precision rectifier, and a low-pass filter with cut-off frequency of 35 Hz, to obtain the signal envelope. The system uses two 9 V batteries, and is portable. Preliminary tests have been done and the acquired EMG signal has amplitudes in the order of volts.
机译:基于体积网络的电子系统可用于监控运动性能。这些系统使用传感器在执行练习的同时从运动员获取信号,以及将数据传输到计算机或智能手机以分析它的通信系统。该信息可用于定量,预防和治疗伤害和设计个性化培训计划来评估运动性能。表面肌电图(SEMG)用于在动态活动期间研究肌肉功能,可用于步态,运动姿态,肌肉疲劳和运动性能的生物力学分析。本文介绍了在举重运动期间监测肌肉激活的电子电路的设计,构造和评估。该系统具有以下阶段:仪表放大器,用于放大电偏振(EMG)信号并减少共模噪声,将频率通滤波器限制为30至500Hz的范围,精密整流器和低截止频率为35Hz的截止频率,以获得信号包络。该系统使用两节9伏电池,可便携。已经完成初步测试,并且所获得的EMG信号以伏特的顺序具有幅度。

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