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Inhomogeneous, orthotropic material model for the cortical structure of long bones modelled on the basis of clinical CT or density data

机译:基于临床CT或密度数据建模的长骨皮质结构的非均质正交各向异性材料模型

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For the simulation of stabilisation systems in femoral fractures with finite elements three factors are essential: (1) the geometry of the bone, (2) the loading of the acting muscle forces in combination with the body weight and (3) the inhomogeneously distributed orthotropic behaviour of the bone material must be known.rnThis study will focus on the third condition.rnA technique is presented for transferring the density distributions gained from clinical computer tomographies to inhomogeneous, orthotropic material distributions suitable for finite element calculations.rnFirst, the algorithm for determining the orthotropy directions from the local variation of the density field is explained phenomenologically. Subsequently, a function for setting up the orthotropic elasticity matrices from the absolute CT field values is derived. Finally, the validation procedure for the cortical bone is presented in principle.
机译:为了用有限元模拟股骨骨折的稳定系统,必须考虑三个因素:(1)骨的几何形状;(2)与体重结合的作用肌肉力的负荷;(3)正交各向异性的非均匀分布必须了解骨材料的行为。rn本研究将集中在第三个条件上。rn提出了一种将从临床计算机体层摄影术中获得的密度分布转换为适用于有限元计算的正交各向异性材料分布的技术。rn首先,确定算法从密度场局部变化的正交各向异性方向从现象学上进行解释。随后,导出用于根据绝对CT场值设置正交各向异性弹性矩阵的函数。最后,原则上提出了皮质骨的验证程序。

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