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首页> 外文期刊>Human movement science >Ankle dorsiflexion range of motion is associated with kinematic but not kinetic variables related to bilateral drop-landing performance at various drop heights
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Ankle dorsiflexion range of motion is associated with kinematic but not kinetic variables related to bilateral drop-landing performance at various drop heights

机译:脚踝背屈的运动范围与运动而不是与双边落地性能有关的运动而非动态变量相关联

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摘要

Limited evidence is available concerning ankle dorsiflexion range of motion (DF ROM) and its relationship with landing performance from varying drop heights. The aim of this investigation was to determine the relationship between ankle DF ROM and both kinetic and kinematic variables measured during bilateral drop-landings from 50%, 100% and 150% of countermovement jump height. Thirty-nine participants were measured for their ankle DF ROM using the weight-bearing lunge test, after which five bilateral drop-landings were performed from 50%, 100% and 150% of maximal countermovement jump height. Normalized peak vertical ground reaction force (vGRF), time to peak vGRF and loading rate was calculated for analysis, alongside sagittal-plane initial contact angles, peak angles and joint displacement for the hip, knee and ankle. Frontal-plane projection angles were also calculated. Ankle DF ROM was not related to normalized peak vGRF, time to peak vGRF or loading rate (P > 0.05), regardless of the drop height. However, at drop heights of 100% and 150% of countermovement jump height, there were numerous significant (P < 0.05) moderate to large correlations between ankle DF ROM and initial contact angles (r = -0.34 to -0.40) and peak angles (r = -0.42 to -0.52) for the knee and ankle joint. Knee joint displacement (r = 0.39-0.47) and frontal-plane projection angle (r = 0.37-0.40) had a positive relationship with ankle DF ROM, which was consistent across all drop heights. Ankle DF ROM influences coordination strategies that allow for the management of vGRF during bilateral drop-landings, with alterations in alignment for the knee and ankle joints at both initial contact and peak angles.
机译:有限的证据可以有关脚踝背屈的运动范围(DF ROM)及其与不同跌落高度的着陆性能的关系。该调查的目的是确定踝关节DF ROM和在双侧下落过程中测量的动力学和运动变量的关系,从50%,100%和150%的对手跳跃高度。使用负重卷弓试验测量三十九次参与者,之后,50%,100%和150%的最大逆温高度的50%,100%和150%进行了50%。归一化峰值垂直接地反作用力(VGRF),计算峰值VGRF的时间和装载速率,用于分析,以及臀部,膝关节和踝关节的矢状平面初始接触角,峰值角和关节位移。还计算了前面平面投影角度。踝DF ROM与标准化峰VGRF无关,峰值VGRF或装载速率(P> 0.05),无论下降高度如何。然而,在100%和150%的对策跳跃高度的下降高度,在脚踝DF ROM和初始接触角(r = -0.34至-0.40)和峰角(膝盖和踝关节r = -0.42至-0.52)。膝关节位移(R = 0.39-0.47)和前面平面投影角度(R = 0.37-0.40)与脚踝DF ROM具有正相关的关系,这在所有下降高度上一致。脚踝DF ROM影响允许在双边落地期间管理VGRF的协调策略,改变膝关节和踝关节在初始接触和峰值角度的变化。

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