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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >The effect of rotational stiffness on ankle tibiocalcaneal motion and ligament strain during external rotation
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The effect of rotational stiffness on ankle tibiocalcaneal motion and ligament strain during external rotation

机译:外旋时旋转刚度对踝关节胫骨跟骨运动和韧带应变的影响

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摘要

The rotational stiffness of footwear has been previously shown to have an effect on ankle kinematics and injury risk, but this relationship has not yet been modeled. The aim of this study was to derive equations from experimental data that were able to predict ankle kinematics under various torsional stiffness constraints and use these equations to estimate ligament strains. Three athletic tapes were tested for their ability to constrain the ankle during external rotation. Six subjects then performed a voluntary external foot rotation using the selected tape designs to constrain the ankle, as well as with no constraints. The motion of the calcaneus with respect to the tibia (tibiocalcaneal motion) from 0 degrees to 15 degrees of tibia rotation and predictive equations were determined to establish tibiocalcaneal rotation, eversion, and flexion as a function of gross tibia motion and tape stiffness. These predictive equations were then used to drive a computational model in which ankle ligament strains were determined at 15 degrees of tibia rotation and for ankle constraint stiffness ranging from 0 to 30Nm/deg. The three tapes provided significantly different constraint stiffnesses during external foot rotation. There was no statistical effect of ankle constraint on the dorsiflexion response of the ankle (p=0.461). In contrast, there was an effect of constraint stiffness on tibiocalcaneal external rotation (p<0.001) and tibiocalcaneal eversion (p<0.001). Results of the model simulation revealed the highest ligament strains in the anterior tibiotalar ligament and anterior tibiofibular ligament. Anterior tibiotalar ligament strain increased with increasing constraint stiffness, while there was little effect of constraint stiffness on anterior tibiofibular ligament strain. Results from this study could aid in the design of footwear, as well as the analysis of clinical injuries.
机译:先前已证明鞋类的旋转刚度会对脚踝运动学和受伤风险产生影响,但是这种关系尚未建模。这项研究的目的是从实验数据中得出方程,这些方程能够预测各种扭转刚度约束下的踝关节运动学,并使用这些方程来估算韧带应变。测试了三个运动胶带在外旋过程中约束脚踝的能力。然后,六名受试者使用所选的绑带设计进行了自愿的外部足部旋转,以约束脚踝,并且没有任何约束。确定从0度到15度胫骨旋转的跟骨相对于胫骨的运动(胫骨跟骨运动)和预测方程,以建立胫骨跟骨旋转,外翻和屈曲,作为胫骨总运动和带硬度的函数。这些预测方程式随后被用于驱动一个计算模型,其中在胫骨旋转15度时确定踝关节韧带应变,踝关节约束刚度的范围为0到30Nm / deg。在外脚旋转期间,这三个胶带提供了明显不同的约束刚度。踝关节约束对踝背屈反应无统计学影响(p = 0.461)。相反,约束刚度对胫骨跟骨外旋(p <0.001)和胫骨跟骨外翻(p <0.001)有影响。模型仿真结果显示,胫骨前韧带和胫腓前韧带的韧带应变最高。胫骨前韧带应变随着约束刚度的增加而增加,而约束刚度对胫腓前韧带应变的影响很小。这项研究的结果可能有助于鞋类设计以及临床损伤分析。

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