College of Physical Education and Sports, Beijing Normal University, Beijing, China.
College of Physical Education and Sports, Beijing Normal University, Beijing, China.
Hum Mov Sci. 2024 Jun;95:103209. doi: 10.1016/j.humov.2024.103209. Epub 2024 Mar 19.
The jump smash is badminton's most aggressive technical manoeuvre, which is often the key to winning a match. This paper aims to explore the neuromuscular control strategies of advanced and beginner players when jumping smash in different ways. Collecting sEMG and kinematic data from 18 subjects with different motor experiences when jumping smash. Nonnegative Matrix Factorization and K-Means clustering were used to extract muscle synergies and exclude irrelevant combined synergies. Uncontrolled manifold analysis was then used to explore the association between synergies and shoulder stability. In addition, motor output at the spinal cord level was assessed by mapping sEMG to each spinal cord segment. The study found that advanced subjects could respond to different jump smash styles by adjusting the coordinated activation strategies of the upper-limb and postural muscles. Long-term training can induce a rapid decrease in the degree of co-variation of the synergies before contact with a shuttlecock to better cope with an upcoming collision. It is recommended that beginners should focus more on training the coordination of upper-limb muscles and postural muscles.
跳杀是羽毛球中最具攻击性的技术动作,往往是赢得比赛的关键。本文旨在探讨高级和初级运动员在不同跳杀方式下的神经肌肉控制策略。收集了 18 名具有不同运动经验的受试者在跳杀时的表面肌电(sEMG)和运动学数据。采用非负矩阵分解和 K-均值聚类方法提取肌肉协同作用,并排除不相关的组合协同作用。然后使用无控制流分析方法探讨协同作用与肩部稳定性之间的关系。此外,通过将 sEMG 映射到每个脊髓节段来评估脊髓水平的运动输出。研究发现,高级受试者可以通过调整上肢和姿势肌肉的协调激活策略来应对不同的跳杀方式。长期训练可以在与羽毛球接触之前迅速降低协同作用的共变程度,从而更好地应对即将到来的碰撞。建议初学者应更多地集中在上肢肌肉和姿势肌肉的协调训练上。