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Autologous nerve graft repair of different degrees of sciatic nerve defect: stress and displacement at the anastomosis in a three-dimensional fnite element simulation model

机译:不同程度坐骨神经缺损的自体神经移植修复:三维有限元模拟模型中吻合处的应力和位移

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In the repair of peripheral nerve injury using autologous or synthetic nerve grafting, the magnitude of tensile forces at the anastomosis affects its response to physiological stress and the ultimate success of the treatment. One-dimensional stretching is commonly used to measure changes in tensile stress and strain; however, the accuracy of this simple method is limited. Therefore, in the present study, we established three-dimensional finite element models of sciatic nerve defects repaired by autologous nerve grafts. Using PRO E 5.0 finite element simulation software, we calculated the maximum stress and displacement of an anastomosis under a 5 N load in 10-, 20-, 30-, 40-mm long autologous nerve grafts. We found that maximum displacement increased with graft length, consistent with specimen force. These findings indicate that three-dimensional finite element simulation is a feasible method for analyzing stress and displacement at the anastomosis after autologous nerve grafting.
机译:在使用自体或合成神经移植修复周围神经损伤中,吻合处的拉力大小会影响其对生理压力的反应以及治疗的最终成功。一维拉伸通常用于测量拉伸应力和应变的变化。但是,这种简单方法的准确性受到限制。因此,在本研究中,我们建立了自体神经移植修复的坐骨神经缺损的三维有限元模型。使用PRO E 5.0有限元模拟软件,我们计算了10毫米,20毫米,30毫米,40毫米长的自体神经移植物在5 N负载下吻合的最大应力和位移。我们发现最大位移随移植物长度的增加而增加,与标本力一致。这些发现表明,三维有限元模拟是一种分析自体神经移植后吻合处应力和位移的可行方法。

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