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在沙地表面跳跃会将足底表面的负荷重新分配到足中部区域,并降低峰值负荷。

Jumping on sand surfaces redistributes loading of the plantar surface to midfoot areas and reduces peak loading.

作者信息

Leuermann Erik, Eils Eric

机构信息

Institute of Sport and Exercise Sciences, University of Muenster, Muenster, Germany.

出版信息

Sports Biomech. 2025 Mar;24(3):509-523. doi: 10.1080/14763141.2022.2126795. Epub 2022 Sep 30.

DOI:10.1080/14763141.2022.2126795
PMID:36178703
Abstract

The purpose was to assess plantar mechanical loading on different surface conditions when performing jumps. Twenty subjects performed standardized drop jumps and countermovement jumps both in shoes and barefoot on a rigid surface and barefoot on a sand surface. Flexible insoles of the Pedar Mobile system (PedarX, Novel GmbH) were used for data collection. The foot was subdivided into eight regions where peak pressures and relative loads were derived. Significant differences were found for several foot areas for both, countermovement and drop jumps. For the sand surface, as compared to the rigid surface, peak pressures were significantly reduced in the hallux&2 toe, medial/lateral forefoot, and heel but were increased in the medial/lateral midfoot. The relative load shifted significantly from the forefoot to the midfoot area. Substantially different plantar pressure distribution patterns between conditions were observed in jumping. The switch from a rigid to a sand surface is associated with a lower mechanical loading, whereas switching back from sand to an indoor surface potentially increases this loading. Our results show that the observed pressure distribution patterns for different surfaces align with other tasks like playing soccer/running, are in a typical range for these sports and entail a comparable mechanical loading.

摘要

目的是评估进行跳跃时不同表面条件下的足底机械负荷。20名受试者在刚性表面上穿着鞋子和赤足进行标准化的纵跳和反向运动跳,以及在沙地表面赤足进行跳跃。使用Pedar Mobile系统(PedarX,Novel GmbH)的柔性鞋垫进行数据收集。足部被细分为八个区域,从中得出峰值压力和相对负荷。对于反向运动跳和纵跳,在几个足部区域都发现了显著差异。与刚性表面相比,在沙地表面,拇趾和第二趾、前脚掌内侧/外侧以及足跟的峰值压力显著降低,但中脚掌内侧/外侧的峰值压力增加。相对负荷从前脚掌显著转移到中脚掌区域。在跳跃过程中观察到不同条件下足底压力分布模式有很大差异。从刚性表面切换到沙地表面与较低的机械负荷相关,而从沙地表面切换回室内表面可能会增加这种负荷。我们的结果表明,观察到的不同表面的压力分布模式与足球/跑步等其他任务一致,处于这些运动的典型范围内,并且承受相当的机械负荷。

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