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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Development and validation of a computational model to study the effect of foot constraint on ankle injury due to external rotation.
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Development and validation of a computational model to study the effect of foot constraint on ankle injury due to external rotation.

机译:计算模型的开发和验证,以研究脚约束对由于外旋引起的脚踝受伤的影响。

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摘要

Recent studies, using two different manners of foot constraint, potted and taped, document altered failure characteristics in the human cadaver ankle under controlled external rotation of the foot. The posterior talofibular ligament (PTaFL) was commonly injured when the foot was constrained in potting material, while the frequency of deltoid ligament injury was higher for the taped foot. In this study an existing multibody computational modeling approach was validated to include the influence of foot constraint, determine the kinematics of the joint under external foot rotation, and consequently obtain strains in various ligaments. It was hypothesized that the location of ankle injury due to excessive levels of external foot rotation is a function of foot constraint. The results from this model simulation supported this hypothesis and helped to explain the mechanisms of injury in the cadaver experiments. An excessive external foot rotation might generate a PTaFL injury for a rigid foot constraint, and an anterior deltoid ligament injury for a pliant foot constraint. The computational models may be further developed and modified to simulate the human response for different shoe designs, as well as on various athletic shoe-surface interfaces, so as to provide a computational basis for optimizing athletic performance with minimal injury risk.
机译:最近的研究使用两种不同的脚部约束方式(盆栽和绑扎),证明了在脚的外部旋转受控制的情况下,人类尸体踝关节的破坏特征发生了变化。当足部受灌封材料约束时,后腓距韧带(PTaFL)普遍受伤,而用脚绑住的脚三角肌韧带损伤的频率更高。在这项研究中,对现有的多体计算建模方法进行了验证,以包括脚部约束的影响,确定外部脚部旋转下关节的运动学,从而获得各种韧带的应变。假设由于过度的外部脚旋转水平而导致的脚踝受伤的位置是脚约束的函数。该模型仿真的结果支持了这一假设,并有助于解释尸体实验中的损伤机制。足部外旋过度可能会导致足部僵硬而造成PTaFL损伤,而足部弯曲会产生前三角韧带损伤。可以进一步开发和修改计算模型,以模拟针对不同鞋子设计以及在各种运动鞋-表面界面上的人的反应,从而为以最小的伤害风险优化运动表现提供计算基础。

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