...
首页> 外文期刊>Footwear science >Effects of basketball court construction and shoe stiffness on countermovement jump landings
【24h】

Effects of basketball court construction and shoe stiffness on countermovement jump landings

机译:篮球场结构和鞋的刚度对反跳动作着陆的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Foot-ground contact upon landing from a jump results in an impulsive impact force. Parameters of impact including vertical ground reaction force (vGRF), loading rate, tibial acceleration, and impact attenuation have been associated with lower limb injury risk. Differences in shoe stiffness and surface construction may influence impact loading and attenuation, but evidence is limited. The purpose of this study was to quantify the influence of basketball court surface construction and shoe midsole stiffness on ground reaction force, joint work, and acceleration measures during countermovement jump landings. Twenty-nine male collegiate and high school basketball players performed maximal countermovement jumps in each of three basketball shoes and on three wood court surfaces with varying compressive stiffness. Peak vGRF, vertical instantaneous loading rate, tibial and head acceleration, impact attenuation, and joint work at the ankle and knee were quantified. No differences in peak vGRF, loading rate, impact attenuation, or knee joint work were observed between surface or shoe conditions (p ≥ 0.056). Eccentric ankle work was lowest on the stiff-est surface (p ≤ 0.014). Peak resultant tibial acceleration in the time domain and axial tibial high frequency signal power magnitude in the frequency domain were lowest in the most compliant shoe (p = 0.005 and p = 0.046, respectively). The few significant findings for shoe stiffness and the somewhat counterintuitive finding for surface suggest that shoe and surface stiffness have minimal effects on parameters associated with impact during countermovement jump landings.
机译:跳跃着陆时脚与地面的接触会产生冲击力。冲击参数包括垂直地面反作用力(vGRF),负荷率,胫骨加速度和冲击衰减与下肢受伤风险相关。鞋的刚度和表面结构的差异可能会影响冲击载荷和衰减,但证据有限。这项研究的目的是量化篮球运动场表面结构和鞋底夹层刚度对反向移动跳跃着陆过程中地面反作用力,联合作业和加速措施的影响。 29名大学男生和高中篮球运动员在三把篮球鞋中的每一个中以及在三个具有变化的压缩刚度的木球场表面上都进行了最大的反跳动作。量化了峰值vGRF,垂直瞬时负荷率,胫骨和头部的加速度,冲击衰减以及脚踝和膝盖的关节活动。在地面或鞋子状况之间,未观察到峰值vGRF,负荷率,冲击衰减或膝关节功的差异(p≥0.056)。在最坚硬的表面上,偏心踝关节活动最低(p≤0.014)。在最顺应的鞋中,在时域中产生的峰值胫骨加速度和在频域中产生的轴向胫骨高频信号功率幅度最低(分别为p = 0.005和p = 0.046)。鞋的刚度的一些重要发现以及表面的反直觉的发现表明,鞋和表面的刚度对与反运动跳跃着陆期间与冲击相关的参数的影响最小。

著录项

  • 来源
    《Footwear science》 |2019年第3期|171-179|共9页
  • 作者单位

    Human Performance Laboratory Faculty of Kinesiology University of Calgary Calgary Canada McCaig Institute for Bone and Joint Health University of Calgary Calgary Canada;

    Human Performance Laboratory Faculty of Kinesiology University of Calgary Calgary Canada McCaig Institute for Bone and Joint Health University of Calgary Calgary Canada Biomedical Engineering Graduate Program University of Calgary Calgary Canada;

    Human Performance Laboratory Faculty of Kinesiology University of Calgary Calgary Canada;

    Human Performance Laboratory Faculty of Kinesiology University of Calgary Calgary Canada Biomedical Engineering Graduate Program University of Calgary Calgary Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biomechanics; wearable sensors; shock attenuation; basketball; joint energy absorption; lower extremity;

    机译:生物力学可穿戴式传感器;冲击衰减篮球;联合能量吸收;下肢;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号