Abstract
AbstractThe fatigue of running sportswear is reflected in the fatigue caused by the tightness of the tights on the skin surface of the limbs, trunk, and other parts during long-term running sports. However, the current research on the fatigue of running sportswear is not deep enough. Therefore, the purpose of this study is to study the mechanism of the fatigue of running sportswear based on BP neural network. This article first takes sportswear as the starting point and uses the surface myoelectricity index as a physiological quantity as a means to combine clothing with sports medicine and sports physiology, breaking the traditional shackles of subjective assessment of fatigue, and giving play to the advantages of interdisciplinary to expand the new direction of the apparel industry and, secondly, use muscle fatigue evaluation method to analyze the muscles of the lower leg under the pressure of sportswear to analyze the strength of the EMG signal and the number of participating sports units and the frequency of discharge synchronization. Experimental data shows that the AUC is 0.756 when wearing sports tights, the sensitivity and specificity are 72% and 19%, and the accuracy is 65%. The experimental results show that clothing pressure affects the fatigue of running sportswear based on BP neural network.
Publisher
Springer Science and Business Media LLC
Reference23 articles.
1. M. Lindquist Liljeqvist, R. Hultgren, T.C. Gasser, et al., Volume growth of abdominal aortic aneurysms correlates with baseline volume and increasing finite element analysis-derived rupture risk. J. Vasc. Surg. 63(6), 1434–1442 (2016) e3
2. S.O. Olajide, B.D. Arhatari, Progress on interacting fatigue, creep & hysteretic heating in polymer adhesively bonded composite joints. Int. J. Fat. 98(May), 68–80 (2017)
3. C. Chen, X. Chen, S. Guo, Experimental study on acoustic emission characteristic of fatigue crack growth of self-compacting concrete. Struct. Control Health Monit. 26(4), e2332.1–e2332.17 (2019)
4. I.G. Goryacheva, F.I. Stepanov, E.V. Torskaya, Fatigue wear modeling of elastomers. Physical Mesomechanics 22(1), 65–72 (2019)
5. M. Giandolini, G. Vernillo, P. Samozino, et al., Fatigue associated with prolonged graded running. Eur. J. Appl. Physiol. 116(10), 1859–1873 (2016)
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