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A new method to determine trabecular bone elastic properties and loading using micromechanical finite-element models

机译:用微机械有限元模型确定小梁骨弹性特性和载荷的新方法

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摘要

textabstractThe apparent mechanical behavior of trabecular bone depends on properties at the tissue or trabecular level. Many investigators have attempted to determine trabecular tissue properties and loading. However, accuracy and applicability of all methods reported are limited. The small size of the trabeculae and a possible size effect are complicating factors when using traditional testing methods on single trabeculae. Other methods reported, using models that describe the trabecular structure, are of limited value because they consider bone as a repetitive structure in order to describe a reasonably large region of bone. The present study introduces a new finite-element method strategy that enables analysis of reasonably large regions of trabecular bone in full detail. The method uses three-dimensional serial reconstruction techniques to construct a large-scale FE model, by directly converting voxels to elements. A 5 mm cube of trabecular bone was modeled in this way, resulting in a FE model that consists of 296,679 elements. Special strategies were developed to solve the set of equations that results from the FE approach. Using this model in combination with experimental apparent data taken from the literature, the upper and lower boundaries for the tissue modulus were calculated to be 10.1 and 2.23 GPa, respectively. From the local stress and strain distributions it was concluded that the deformation mode of the trabeculae in the present cube was predominantly in bending. It was concluded that the method developed offers new perspectives for the study of trabecular bone.
机译:小梁骨的表观机械行为取决于组织或小梁水平的特性。许多研究者已经尝试确定小梁组织的性质和负荷。但是,报告的所有方法的准确性和适用性均受到限制。当在单个小梁上使用传统的测试方法时,小梁的小尺寸和可能的尺寸效应是复杂的因素。报道的使用描述小梁结构模型的其他方法的价值有限,因为它们将骨骼视为重复结构以描述相当大的骨骼区域。本研究介绍了一种新的有限元方法策略,该策略可以对小梁的较大区域进行详细分析。该方法使用三维序列重建技术,通过将体素直接转换为元素来构建大规模有限元模型。用这种方法对一个5毫米的小梁骨进行建模,从而得到包含296,679个元素的有限元模型。开发了特殊策略来解决由有限元方法产生的方程组。使用该模型并结合从文献中获得的实验表观数据,计算出的组织模量的上限和下限分别为10.1 GPa和2.23 GPa。从局部应力和应变分布可以得出结论,本立方体中的小梁的变形模式主要是弯曲。结论是,所开发的方法为小梁骨的研究提供了新的见解。

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