Design and Validation of Multichannel Wireless Wearable SEMG System for Real-Time Training Performance Monitoring
Разработка и валидация многоканальной беспроводной носимой системы sEMG для мониторинга эффективности тренировок в режиме реального времени
2019-09-09
SCID: 54.1/upf7nrf2
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%MVCHaar wavelet filter with threshold cuttingmoving RMSmultichannel wireless wearable sEMGreal-time training performance monitoring
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Abstract (AI)
Monitoring of training performance and physical activity has become indispensable these days for athletes. Wireless technologies have started to be widely used in the monitoring of muscle activation, in the sport performance of athletes, and in the examination of training efficiency. The monitorability of performance simultaneously in the process of training is especially a necessity for athletes at the beginner level to carry out healthy training in sports like weightlifting and bodybuilding. For this purpose, a new system consisting of 4 channel wireless wearable SEMG circuit and analysis software has been proposed to detect dynamic muscle contractions and to be used in real-time training performance monitoring and analysis. The analysis software, the Haar wavelet filter with threshold cutting, can provide performance analysis by using the methods of moving RMS and %MVC. The validity of the data obtained from the system was investigated and compared with a biomedical system. In this comparison, 90.95% ± 3.35 for left biceps brachii (BB) and 90.75% ± 3.75 for right BB were obtained. The output of the power and %MVC analysis of the system was tested during the training of the participants at the gym, and the training efficiency was measured as 96.87% ± 2.74.
Key Findings
1
A new 4-channel wireless wearable sEMG circuit and analysis software was developed for real-time training performance monitoring.
2
During gym training tests, the system measured training efficiency (power and %MVC analysis) as 96.87% ± 2.74.
3
The analysis software uses a Haar wavelet filter with threshold cutting and computes moving RMS and %MVC for performance analysis.
4
The system is intended to detect dynamic muscle contractions and support real-time monitoring, especially for beginner athletes in weightlifting and bodybuilding.
5
Validation against a biomedical system showed agreement of 90.95% ± 3.35 for left biceps brachii and 90.75% ± 3.75 for right biceps brachii.
Research Object
4-channel wireless wearable SEMG system (circuit and analysis software) for detecting dynamic muscle contractions during training
Research Subject
Real-time monitoring and validation of training performance metrics (power, %MVC, moving RMS) and system validity compared to a biomedical reference during athletic training
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2019-09-09
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