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Computational evaluation of foot biomechanical response to low energy Lisfranc ligament injury

机译:对低能量Lisfranc韧带损伤的足部生物力学反应的计算评估

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Lisfranc ligament is one of the important stabilizers of midfoot but clinically prone to be overlooked. Biomechanical contribution of this ligament to foot is still not being well understood and controversies exist. A three-dimensional finite element foot model was well developed in this paper. Biomechanical response of the intact foot to nominal whole body weight at normal static standing posture was calculated, and biomechanical alterations due to the Lisfranc ligament mutilation were reevaluated. Physical information such as morph of arches, ligament strains and bone stress were collected and analyzed. These data provided us knowledge about biomechanical alterations of inner foot contributed by Lisfranc ligament lesion. It was noticeable that Lisfranc ligament sectioning could cause almost one-fifth relative stress increase at the third metatarsal, and the effect of half Lisfranc ligament sectioning was also impressive. This study was helpful for an in-depth understanding of fundamental biomechanics related to low energy ligamentous injuries in midfoot sprains.
机译:Lisfranc韧带是中足的重要稳定剂之一,但在临床上容易被忽视。韧带对脚的生物力学贡献仍未被很好地理解,并且存在争议。三维有限元足模型在本文中得到了很好的发展。计算完整脚在正常静态站立姿势下对标称体重的生物力学响应,并重新评估因Lisfranc韧带切伤而引起的生物力学改变。收集并分析诸如弓形,韧带应变和骨应力等物理信息。这些数据为我们提供了有关Lisfranc韧带病变造成的内足生物力学改变的知识。值得注意的是,Lisfranc韧带切片可能在第三meta骨处引起近五分之一的相对应力增加,并且一半Lisfranc韧带切片的效果也令人印象深刻。这项研究有助于深入了解与中足扭伤的低能量韧带损伤相关的基本生物力学。

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