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连续跳跃试验对起跳和著地时跖趾关节、踝关节和膝关节生物力学的影响。

Effect of consecutive jumping trials on metatarsophalangeal, ankle, and knee biomechanics during take-off and landing.

机构信息

Guangdong Provincial Engineering Technology Research Center for Sports Assistive Devices, Guangzhou Sport University, Guangzhou, People's Republic of China.

Department of Kinesiology, Shenyang Sport University, Shenyang, People's Republic of China.

出版信息

Eur J Sport Sci. 2021 Jan;21(1):53-60. doi: 10.1080/17461391.2020.1733671. Epub 2020 Mar 3.

Abstract

This study examined the differences in single and consecutive jumps on ground reaction forces (GRF) as well as metatarsophalangeal (MTP), ankle and knee kinematics and kinetics during jumping take-off and landing. Eighteen basketball players performed countermovement jumps in both single and consecutive movement sessions. Synchronised force platform and motion capture systems were used to measure biomechanical variables during take-off and landing. Paired -tests (or Wilcoxon signed-rank tests) were performed to examine any significant differences regarding mean and coefficient of variation in each of the variables tested. A Holm-Bonferroni correction was applied to -values to control the false discovery rate of 5%. The findings indicated that consecutive jumps had lower jump height, take-off velocity and landing impact. During take-off, consecutive jumps demonstrated larger peak MTP and ankle extension velocities, knee extension moments as well as larger values for ankle and knee power generation; During landing, the consecutive jumps had larger peak MTP flexion angle, joint velocities (MTP, ankle and knee), and peak knee flexion moments and power absorption. Additionally, consecutive jumps had higher within-trial reliability (i.e. smaller CV) for peak MTP flexion angle at landing (< 0.05), but lower reliability (i.e. higher CV) for peak knee flexion velocity and power absorption at landing. These results suggest that the consecutive jump trials led to distinct movement kinematics and higher loading responses in jump take-off and landing.

摘要

本研究旨在探讨单脚跳和连续跳在起跳和著地过程中地面反作用力(GRF)以及跖趾关节(MTP)、踝关节和膝关节运动学和动力学的差异。18 名篮球运动员分别在单脚和连续跳动作中完成了反跳。同步力量平台和运动捕捉系统用于测量起跳和著地过程中的生物力学变量。采用配对检验(或 Wilcoxon 符号秩检验)检验每个测试变量的平均值和变异系数是否存在显著差异。采用 Holm-Bonferroni 校正对 t 值进行校正,以控制假发现率为 5%。研究结果表明,连续跳的跳跃高度、起跳速度和著地冲击力较低。在起跳过程中,连续跳表现出更大的 MTP 和踝关节伸展速度峰值、膝关节伸展力矩以及更大的踝关节和膝关节功率输出值;在著地过程中,连续跳的 MTP 跖屈角度、关节速度(MTP、踝关节和膝关节)以及最大膝关节屈曲力矩和功率吸收峰值更大。此外,连续跳在著地时 MTP 跖屈角度的峰值(<0.05)具有更高的试验内可靠性(即较小的 CV),但在著地时膝关节屈曲速度和功率吸收的可靠性较低(即较高的 CV)。这些结果表明,连续跳试验导致了起跳和著地过程中明显的运动学特征和更高的负荷反应。

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