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在健康男性运动员切入动作的早期站立阶段,地面反作用力驱动胫骨旋转力矩,摩擦力矩对其产生对抗作用。

The counteracting effect of the friction moment against the tibial rotational moment driven by the ground reaction force in an early stance phase of cutting maneuver among healthy male athletes.

机构信息

Department of Health and Sports Sciences, Graduate School of Medicine, Osaka University, 1-17 Machikaneyama-cho 560-0043, Toyonaka, Osaka, Japan.

Department of Sports Medical Biomechanics, Graduate School of Medicine, Osaka University, 2-2 Yamada-oka 565-0871, Suita, Osaka, Japan.

出版信息

J Sports Sci. 2022 Sep;40(18):2072-2084. doi: 10.1080/02640414.2022.2133392. Epub 2022 Oct 28.

Abstract

The ground reaction force (GRF) is known to produce tibial internal rotation loading associated with the stress in the anterior cruciate ligament (ACL). However, it is unclear whether the friction moment (FM; the moment due to horizontal shoe-floor friction, acting around the vertical axis at the GRF acting point) facilitates or restrains the effect of GRF-driven tibial rotation loading during cutting. The 45° cutting motions with forefoot/rearfoot strikes were captured simultaneously with GRF and FM data from 23 healthy males. The FM- and GRF-driven tibial rotation moments were calculated. Time-series correlation between FM- and GRF-driven tibial rotation moments and the orientation relationship among those moment vectors was investigated. The FM-driven tibial rotation moment negatively correlated with the GRF-driven one within the first 10% of stance phase. The peak regression slope value was -0.34 [SD 0.33] for forefoot and -1.64 [SD 1.76] for rearfoot strikes, showing significant difference from zero (SPM one-sample t-test, p<0.05). The FM-driven tibial "external" rotation moment counteracted the GRF-driven tibial "internal" rotation moment within first 10% of the stance phase in most trials, suggesting that the FM-driven tibial rotation moment potentially diminishes the effect of GRF-driven one and may reduce ACL injury risk during cutting.

摘要

地面反作用力(GRF)已知会产生与前交叉韧带(ACL)内的应力相关的胫骨内旋负荷。然而,目前尚不清楚摩擦矩(FM;由于水平鞋-地板摩擦作用在 GRF 作用点处的垂直轴周围产生的力矩)是否有利于或限制 GRF 驱动的胫骨旋转负荷在切割过程中的作用。从 23 名健康男性中同时捕获了前足/后足着地的 45°切割运动以及 GRF 和 FM 数据。计算了 FM 和 GRF 驱动的胫骨旋转力矩。研究了 FM-和 GRF 驱动的胫骨旋转力矩之间的时间序列相关性以及这些力矩矢量之间的方位关系。在站立阶段的前 10%内,FM 驱动的胫骨旋转力矩与 GRF 驱动的胫骨旋转力矩呈负相关。前足着地的峰值回归斜率值为-0.34[SD 0.33],后足着地的峰值回归斜率值为-1.64[SD 1.76],与零值有显著差异(SPM 单样本 t 检验,p<0.05)。在大多数试验中,FM 驱动的胫骨“外旋”力矩在站立阶段的前 10%内抵消了 GRF 驱动的胫骨“内旋”力矩,这表明 FM 驱动的胫骨旋转力矩可能会降低 GRF 驱动的胫骨旋转力矩的作用,并可能降低切割过程中 ACL 受伤的风险。

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