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The gearing function of running shoe longitudinal bending stiffness

机译:跑鞋纵向弯曲刚度的齿轮功能

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摘要

The purpose of the present study was to investigate whether altered longitudinal bending stiffness (LBS) levels of the midsole of a running shoe lead to a systematic change in lower extremity joint lever arms of the ground reaction force (GRF). Joint moments and GRF lever arms in the sagittal plane were determined from 19 male subjects running at 3.5. m/s using inverse dynamics procedures. LBS was manipulated using carbon fiber insoles of 1.9. mm and 3.2. mm thickness. Increasing LBS led to a significant shift of joint lever arms to a more anterior position. Effects were more pronounced at distal joints. Ankle joint moments were not significantly increased in the presence of higher GRF lever arms when averaged over all subjects. Still, two individual strategies (1: increase ankle joint moments while keeping push-off times almost constant, 2: decrease ankle joint moments and increase push-off times) could be identified in response to increased ankle joint lever arms that might reflect individual differences between subjects with respect to strength capacities or anthropometric characteristics. The results of the present study indicate that LBS systematically influences GRF lever arms of lower extremity joints during the push-off phase in running. Further, individual responses to altered LBS levels could be identified that could aid in finding optimum LBS values for a given individual.
机译:本研究的目的是调查跑鞋中底的纵向弯曲刚度(LBS)的变化是否导致地面反作用力(GRF)的下肢关节杠杆臂的系统改变。矢状面的关节力矩和GRF杠杆臂是由19位男性受试者(以3.5分奔跑)确定的。 m / s使用逆动力学程序。使用1.9的碳纤维鞋垫操纵LBS。毫米和3.2。毫米厚度。 LBS的增加导致关节杠杆臂明显移至更靠前的位置。在远端关节处效果更明显。当将GRF杠杆臂较高的受试者平均时,踝关节力矩不会明显增加。仍然可以确定两种单独的策略(1:增加踝关节力矩,同时保持下推时间几乎恒定; 2:减少踝关节力矩和增加下推时间),以应对可能反映出个体差异的踝关节杠杆臂增加受试者在强度能力或人体测量学特征方面的差异。本研究的结果表明,LBS在跑步的下推阶段会系统性地影响下肢关节的GRF杠杆臂。此外,可以识别出对改变的LBS水平的个体反应,这有助于找到给定个体的最佳LBS值。

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