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Computational biomechanical analysis of postoperative inferior tibiofibular syndesmosis: a modified modeling method

机译:术后下胫腓联合的计算生物力学分析:一种改进的建模方法

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摘要

To analyze the biomechanical effect of syndesmotic screw through three and four cortices, a total of 12 finite element models simulating healthy ankles, tibiofibular syndesmosis injured ankles, and post-operative ankles by screw fixations through three or four cortices were built. A set of biomechanical data were obtained to find that screw fixation methods for inferior tibiofibular syndesmosis can help recover most of the biomechanical relations of the ankle especially the tricortical fixation, while the screw of quadricortical fixation bear more stress than the tricortical fixation. The modeling method for finite element models was also modified for saving more time and realizing personalized modeling for clinical application.
机译:为了分析穿过三个和四个皮质的下颌联合螺钉的生物力学效果,建立了总共12个有限元模型,它们模拟了健康的踝关节,胫腓骨联合损伤的踝关节以及通过三个或四个皮质的螺钉固定术后的踝关节。获得了一组生物力学数据,发现用于下胫腓联合的螺钉固定方法可以帮助恢复踝关节的大部分生物力学关系,尤其是三皮质固定,而四脚螺钉比三皮质固定承受更大的压力。还修改了有限元模型的建模方法,以节省更多时间并实现临床应用的个性化建模。

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