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首页> 外文期刊>Ecological restoration >Footwear insoles with higher frictional properties enhance performance by reducing in-shoe sliding during rapid changes of direction
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Footwear insoles with higher frictional properties enhance performance by reducing in-shoe sliding during rapid changes of direction

机译:具有更高摩擦性能的鞋类鞋垫通过在快速变化期间减少靴子滑动来增强性能

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摘要

A novel 3D motion capture analysis assessed the efficacy of insoles in maintaining the foot position on the midsole platform inside the shoe during rapid change of direction manoeuvres used in team sports. An insole (TI) with increased static (35%) and dynamic (49%) coefficient of friction compared to a regular insole (SI) was tested. Change of direction performance was faster (p < .001) and perceived to be faster (p < .001) in TI compared to SI. Participants utilised greater coefficient of friction in TI compared to SI during a complete turn, but not during a 20 degree side-cut. In-shoe foot sliding reduced across the forefoot and midfoot during the braking phase of the turn and in the rearfoot during the side-cut in TI. Greater in-shoe foot sliding occurred in the turn than the side-cut across all foot regions. Results provide guidance for athletic footwear design to help limit in-shoe foot sliding and improve change of direction performance.
机译:一种新型的3D运动捕获分析评估了鞋垫在队在团队运动方向运动的快速变化期间维持鞋内鞋底脚下平台上的脚位置的功效。 测试了与常规鞋底(Si)相比静态(35%)和动态(49%)摩擦系数增加的鞋垫(Ti)。 与SI相比,方向性能的变化更快(P <.001)并感知到TI中的速度更快(P <.001)。 与Si相比,参与者在完全转弯期间使用较大的TI系数,但在20度侧切割期间。 在侧面的制动阶段和在Ti的侧切割期间,在鞋子脚滑动横跨前掌和中足的减少。 鞋面滑动大于所有脚部地区的侧切口发生。 结果为运动鞋设计提供指导,有助于限制鞋脚滑动,提高方向性能变化。

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