Title: Modelling and simulation analysis of training effect and electromyogram change of track and field athletes based on biomechanics

Authors: Xuejun Wang; Shunjiang Ma; Yunyan Zhang

Addresses: Sports Department, Guangxi University of Finance and Economics, Nanning 530007, Guangxi, China ' College of Physical Education, Hubei Engineering University, Xiaogan 432000, Hubei, China ' Sports Department, Guangxi University of Finance and Economics, Nanning 530007, Guangxi, China

Abstract: In view of the serious knee injuries of elite track and field athletes in China, this paper discusses the characteristics of knee injury of track and field athletes, the mechanism of knee injury and the relationship between specific actions and training methods from the perspective of medicine, biomechanics and training, so as to provide basis for coaches to improve their skills and training. Taking the serious knee injuries of Chinese elite track and field athletes as the research object, this paper discusses the characteristics and mechanism of knee injury and its relationship with special sports and training methods. The changes of bioelectricity during the activity of local neuromuscular system were guided, amplified, displayed and recorded by surface electromyography (iEMG--Integral EMG value) through surface electrodes on the skin surface. The results show that fast muscle movement unit is easy to fatigue, and the muscle working ability of fast muscle movement unit decreases after fatigue. It is suggested that in the future training, we should strengthen the training of lower limb support and buffering ability, and gradually improve the level of athletes' special strength.

Keywords: biomechanics; exercise training; sports injury; muscle fatigue; myoelectric signal.

DOI: 10.1504/IJNT.2022.128990

International Journal of Nanotechnology, 2022 Vol.19 No.6/7/8/9/10/11, pp.1058 - 1074

Received: 22 Mar 2021
Accepted: 20 Sep 2021

Published online: 13 Feb 2023 *

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