肌肉疲劳对运动前后肌电信号和最大心率的影响

Arifah Putri Caesaria, Endro Yulianto, Sari Luthfiyah, Triwiyanto Triwiyanto, Achmad Rizal
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引用次数: 0

摘要

体育运动是一种通过肌肉运动来优化身体发育的体育活动。没有休息的体力活动和强烈而持久的肌肉收缩会导致肌肉疲劳。肌肉疲劳会导致肌肉的工作效率下降。心电图(ECG)是对身体表面心脏电活动的记录。肌电图是一种测量肌肉电活动的技术。本研究旨在通过监测心电和肌电信号来检测肌肉疲劳对心脏信号的影响。本研究方法采用最大心率法,采用一组前测后测的研究设计。自变量是做平板支撑时的心电信号,因变量是监测心电信号的结果。为了得到最大心率结果,受访者使用Karnoven公式并进行t检验。测试结果显示,运动前和运动后的差异有显著性意义(pValue <0.05)。当被调查者经历肌肉疲劳时,它显示出ECG信号形状变化的影响,其标志是运动伪影噪声的存在。结论是本研究的工具可以正确使用。本研究存在局限性,包括AD8232模块电路中的噪声和遥测显示,其中盒的宽度无法根据心电纸调整。建议进一步研究使用质量更好的元件,并使用Delphi界面替换显示器。
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Effect of Muscle Fatigue on EMG Signal and Maximum Heart Rate for Pre and Post Physical Activity
Sport is a physical activity that can optimize body development through muscle movement. Physical activity without rest with strong and prolonged muscle contractions results in muscle fatigue. Muscle fatigue that occurs causes a decrease in the work efficiency of muscles. Electrocardiography (ECG) is a recording of the heart's electrical activity on the body's surface. EMG is a technique for measuring electrical activity in muscles. This study aims to detect the effect of muscle fatigue on cardiac signals by monitoring ECG and EMG signals. This research method uses the Maximum Heart Rate with a research design of one group pre-test-post-test. The independent variable is the ECG signal when doing plank activities, while the dependent variable is the result of monitoring the ECG signal. To get the Maximum Heart Rate results, respondents use the Karnoven formula and perform the T-test. Test results show a significant value (pValue <0.05) in pre-exercise and post-exercise. When the respondent experiences muscle fatigue, it shows the effect of changes in the shape of the ECG signal which is marked by the presence of movement artifact noise. It concluded that the tools in this study can be used properly. This study has limitations including noise in the AD8232 module circuit and the display on telemetry where the width of the box cannot be adjusted according to the ECG paper.is  It recommended for further research to use components with better quality and replace the display using the Delphi interface.
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