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Computer simulation of stress distribution in the metatarsals at different inversion landing angles using the finite element method

机译:用有限元方法对different骨不同反转着陆角应力分布的计算机模拟

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摘要

Metatarsal fracture is one of the most common foot injuries, particularly in athletes and soldiers, and is often associated with landing in inversion. An improved understanding of deformation of the metatarsals under inversion landing conditions is essential in the diagnosis and prevention of metatarsal injuries. In this work, a detailed three-dimensional (3D) finite element foot model was developed to investigate the effect of inversion positions on stress distribution and concentration within the metatarsals. The predicted plantar pressure distribution showed good agreement with data from controlled biomechanical tests. The deformation and stresses of the metatarsals during landing at different inversion angles (normal landing, 10 degree inversion and 20 degree inversion angles) were comparatively studied. The results showed that in the lateral metatarsals stress increased while in the medial metatarsals stress decreased with the angle of inversion. The peak stress point was found to be near the proximal part of the fifth metatarsal, which corresponds with reported clinical observations of metatarsal injuries.
机译:tar骨骨折是最常见的脚部受伤之一,尤其是在运动员和士兵中,通常与倒立着陆有关。在诊断和预防of骨损伤中,必须更好地了解in骨在反转着陆条件下的变形。在这项工作中,详细的三维(3D)有限元脚模型被开发来研究反转位置对stress骨内应力分布和集中度的影响。预测的足底压力分布与受控生物力学测试数据显示出良好的一致性。比较研究了不同着陆角(正常着陆,10度反向和20度反向)着陆时the骨的变形和应力。结果表明,lateral骨外侧应力随内翻角的增加而减小。发现峰值应力点在第五meta骨的近端附近,这与报道的clinical骨损伤的临床观察结果一致。

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