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Calcaneus stress fractures: A finite element analysis

机译:Callaneus应力骨折:有限元分析

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Shock absorption strategies targeted at reducing ground reaction forces during impact have been unsuccessful in decreasing stress fracture development in the calcaneus. We hypothesize that the critical loads on the calcaneus are instead due to muscles forces. We performed a finite element analysis to estimate the time-evolution of stresses in the calcaneus during single support phase of a self-paced walk. Local stresses were found to be higher than the yield stress and located at the interface between the calcaneus and the Achilles' tendon. This supports the hypothesis that stress fractures are likely to be the effect of muscles forces rather than the impact of the foot to the ground.
机译:在抗冲击期间减少地面反应力的减震策略在降低钙化中的应力骨折发育时不成功。我们假设表示计算的临界载荷是由于肌肉力量。我们进行了有限的元素分析,以估计自花枢散步的单个支撑阶段在钙盘中应力的时间演变。发现局部应力高于屈服应力并位于钙纳斯和achilles肌腱之间的界面处。这支持假设,即应力骨折可能是肌肉力量的影响而不是脚对地面的影响。

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