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A theoretical model to predict distribution of the fabric tensor and apparent density in cancellous bone

机译:预测松质骨中织物张量分布和表观密度的理论模型

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The adaptation of cancellous bone to mechanical forces is well recognized. Theoretical models for predicting cancellous bone architecture have been developed and have mainly focused on the distribution of trabecular mass or the apparent density. The purpose of this study was to develop a theoretical model which can simultaneously predict the distribution of trabecular orthotropy/orientation, as represented by the fabric tensor, along with apparent density. Two sets of equations were derived under the assumption that cancellous bone is a biological self-optimizing material which tends to minimize strain energy. The first set of equations provide the relationship between the fabric tensor and stress tensor, and have been verified to be consistent with Wolff's law of trabecular architecture, that is, the principal directions of the fabric tensor coincide with the principal stress trajectories. The second set of equations yield the apparent density from the stress tensor, which was shown to be identical to those obtained based on local optimization with strain energy density of true bone tissue at; the objective function. These two sets of equations, together with elasticity field equations, provide a complete mathematical formulation for the adaptation of cancellous bone. [References: 26]
机译:松质骨对机械力的适应性是公认的。已经开发出预测松质骨结构的理论模型,并且主要集中在小梁骨质量分布或表观密度上。这项研究的目的是建立一个理论模型,该模型可以同时预测以织物张量表示的小梁正交各向异性/方向的分布以及表观密度。假设松质骨是一种生物自优化材料,倾向于使应变能最小化,则推导了两组方程。第一组方程提供了织物张量和应力张量之间的关系,并且已被证明与小梁建筑的沃尔夫定律是一致的,也就是说,织物张量的主方向​​与主应力轨迹一致。第二组方程从应力张量得出表观密度,这与基于局部优化的真实骨组织的应变能密度为时得到的密度相同。目标函数。这两套方程以及弹性场方程为松质骨的适应提供了完整的数学公式。 [参考:26]

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