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首页> 外文期刊>Medicine and science in sports and exercise >Lower Extremity Stiffness Predicts Ground Reaction Force Loading Rate in Heel Strike Runners
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Lower Extremity Stiffness Predicts Ground Reaction Force Loading Rate in Heel Strike Runners

机译:下肢僵硬预测鞋跟罢工跑步者的地面反作用力负载率

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Purpose High vertical ground reaction force (vGRF) loading rates are thought to contribute to lower extremity injuries in runners. Given that elevated lower extremity stiffness has been reported to be associated with increased GRFs, the purpose of the current study was to determine if overall lower extremity stiffness, individual joint angular excursions and/or torsional stiffness are predictive of the average vGRF loading rate during running. Methods Forty heel strike runners (20 men and 20 women) ran overground at a speed of 3.4 m center dot s(-1). Average vGRF loading rate, lower extremity stiffness, and hip, knee, and ankle joint excursions and torsional stiffness from initial contact to the first peak of the vGRF were quantified. Stepwise multiple linear regression was performed to determine the best predictor(s) of average vGRF loading rate. Results Lower extremity stiffness was found to the best predictor of average vGRF loading rate (R-2 = 0.68, P < 0.001). The second variable that entered the stepwise regression model of average vGRF loading rate was knee joint excursion (Delta R-2 = 0.03, P = 0.023). Conclusions Increased lower extremity stiffness immediately after initial contact may expose heel strike runners to higher vGRF loading rates.
机译:目的,高垂直地反作用力(VGRF)装载率被认为有助于跑步者的下肢伤害。鉴于据报道,升高的下肢刚度与GRF增加相关,目前的研究目的是确定是否总体下肢刚度,单个关节角偏移和/或扭转刚度是在运行期间的平均VGRF装载速率的预测。方法以3.4米中心点S(-1)的速度,四十台脚跟撞击跑步者(20名男子和20名女性)RAN。量化了平均VGRF加载速率,下肢刚度和臀部,膝关节和踝关节偏移和扭转刚度与VGRF的第一峰的初始接触。执行逐步多元线性回归以确定平均VGRF加载速率的最佳预测器。结果对平均VGRF加载速率的最佳预测器(R-2 = 0.68,P <0.001),发现下肢刚度下降。进入平均VGRF加载率平均升降速率的逐步回归模型的第二变量是膝关节偏移(Delta R-2 = 0.03,P = 0.023)。结论初始接触后立即提高下肢刚度可能会使脚后跟撞击跑步者暴露给较高的VGRF加载率。

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