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A New Computational Efficient Approach for Trabecular Bone Analysis using Beam Models Generated with Skeletonized Graph Technique

机译:利用骨架化图技术生成的梁模型进行骨小梁分析的一种新的计算有效方法

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Micro-finite element (FE) analysis is a well established technique for the evaluation of the elastic properties of trabecular bone, but is limited in its application due to the large number of elements that it requires to represent the complex internal structure of the bone. In this paper, we present an alternative FE approach that makes use of a recently developed 3D-Line Skeleton Graph Analysis (LSGA) technique to represent the complex internal structure of trabecular bone as a network of simple straight beam elements in which the beams are assigned geometrical properties of the trabeculae that they represent. Since an enormous reduction of cputime can be obtained with this beam modeling approach, ranging from approximately 1,200 to 3,600 for the problems investigated here, we think that the FE modeling technique that we introduced could potentially constitute an interesting alternative for the evaluation of the elastic mechanical properties of trabecular bone.
机译:微有限元(FE)分析是一种用于评估小梁骨弹性特性的成熟技术,但由于它需要大量元素来表示骨骼的复杂内部结构,因此其应用受到限制。在本文中,我们提出了一种替代的有限元方法,该方法利用最近开发的3D线骨架图分析(LSGA)技术将小梁骨的复杂内部结构表示为简单的直梁元素网络,在其中分配了梁它们代表的小梁的几何特性。由于使用这种梁建模方法可以显着降低cputime的时间,对于此处研究的问题,其范围从大约1200到3600,因此我们认为,我们引入的有限元建模技术可能会成为评估弹性力学的有趣替代方法。小梁骨的特性。

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