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Effects of prophylactic ankle and knee braces on leg stiffness during hopping

机译:预防性踝关节和膝盖支架对跳跃过程中腿部僵硬的影响

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摘要

During human movement, the leg can be represented as a mechanical spring, with its stiffness potentially contributing to sports performance and injury prevention. Although many individuals perform athletic activities with joint stabilizers, little is known about the effects of prophylactic lower extremity braces on leg stiffness. The objective of this study was to investigate the effect of ankle and/or knee braces on leg stiffness measured during one-legged hopping at a range of frequencies. Thirteen male participants performed one-legged hopping with their dominant leg at frequencies of 2.2, 2.6, and 3.0 Hz. All participants were randomly tested under the following four brace conditions: 1) no brace (control), 2) prophylactic ankle brace, 3) prophylactic knee brace, and 4) prophylactic ankle and knee braces. Based on a spring–mass model, leg stiffness was calculated using data from an accelerometer. It was found that leg stiffness increased with increasing hopping frequency for each brace condition. However, there were no significant differences in leg stiffness among the four brace conditions at the three hopping frequencies. Since some level of leg stiffness is needed for optimal athletic performance and training, these results suggest that ankle and knee braces do not significantly interfere with dynamic hopping activities.
机译:在人体运动过程中,腿部可以表示为机械弹簧,其刚度可能有助于运动表现和预防伤害。尽管许多人使用关节稳定器进行体育活动,但对于预防性下肢矫正器对腿部僵硬的影响知之甚少。这项研究的目的是调查在一定频率下单脚跳动过程中脚踝和/或膝盖支撑对腿部僵硬的影响。 13位男性参与者的优势腿以2.2、2.6和3.0 Hz的频率进行了单腿跳跃。在以下四种支撑条件下对所有参与者进行了随机测试:1)无支撑(对照),2)预防性踝支架,3)预防性膝支架,和4)预防性脚踝和膝盖支架。根据弹簧质量模型,使用加速度计的数据计算腿部僵硬度。已经发现,对于每种支撑情况,腿部刚度都随着跳跃频率的增加而增加。但是,在三个跳跃频率下的四个支撑条件下,腿部僵硬度没有显着差异。由于最佳的运动表现和训练需要一定程度的腿部僵硬,因此这些结果表明,脚踝和膝盖支架不会显着干扰动态跳跃活动。

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