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Development of wearable electromyogram(EMG)device for upper extremity in aerobic exercise

机译:有氧运动中上肢可穿戴电灰度(EMG)装置的研制

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The demand on the wearable device in sport for health monitoring is increasing due to the awareness among the people while they undergo any physical activities.Therefore,the purpose of this study is to develop a wearable surface electromyogram device that can be used to measure and to monitor muscle activity during aerobic exercise.A 10-bit analog to digital converter(ADC)micro-controller board is selected to obtain and process the data sensed by Ag/AgCl wet electrodes.The obtained data is transmitted to the computer via Bluetooth's wireless technology using HC-05 master-slave module.In prior,the wearable is attached to the palmaris longus muscle in two different activities known as isometric and isotonic contractions.The fourth-order Butterworth filter is applied to eliminate the noise and filtering the raw signal in order to produce a clean EMG signal.Then,the device is compared with the commercial EMG to validate the signal obtained and to ensure the result is reliable.The results reveal that the high consistency of the vohage amplitude is successfully achieved in the high reliability of exercise voluntary contractions especially for isotonic and isometric.These types of contraction are distinguished able from the pattern of signal.The error of signal analysis is < 5% in validity test verified the accuracy of this device compared with the other device available in the market.This device is potentially can be used for upper extremity of aerobic exercise in measuring the muscle contraction,and it is beneficial for the biomedical and sports application environment.
机译:在健康监测运动中对可穿戴设备的需求正在增加由于人民的意识,而他们经历任何物理活动。因此,本研究的目的是开发一种可穿戴的表面电象设备,可用于测量和衡量和在有氧运动期间监测肌肉活动。选择10位模数转换器(ADC)微控制器板获得并处理AG / AGCL湿电极所感测的数据。获得的数据通过蓝牙的无线技术传输到计算机。使用HC-05主从模块。在之前,可穿戴物在两个不同的活动中连接到棕榈杆肌肌,称为等距和等渗收缩。第四阶Butterworth滤波器应用于消除噪声并过滤原始信号为了产生清洁的EMG信号。该设备与商业EMG进行比较,以验证所获得的信号并确保结果是可靠的。结果R在运动自愿收缩的高可靠性方面,vohage幅度的高一致性尤其是对等渗和等距的高度可靠性。这些收缩的类型能够从信号模式中区分。信号分析的误差有效期<5%与市场上可用的其他设备相比,测试验证了该设备的准确性。该装置可能用于测量肌肉收缩时有氧运动的上肢,并有利于生物医学和体育应用环境。

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