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Generation of Three-Dimensional Finite Element Meshes from CT Dataset of Human Femurs

机译:从人类股骨的CT数据集产生三维有限元网格

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Three-dimensional finite element meshes of human femur are generated using an automatic grid-based method for biomechanical analysis purpose. The meshing algorithm firstly preproceses the CT slices to extract geometrical information of the femur structure, and then organizes a tagged background grid based on the segmented imaging dataset. The surface triangular mesh is constructed by isosurface extraction, and grid cells inside the isosurface are decomposed into tetrahedral elements quickly using predefined tetrahedralizing stencils. With the background grid constructed in an octree data structure, graded mesh of the femur structure can be generated, resulting in finer tetrahedral elements constructed near the boundary and coarser ones insides. As compared to the uniformly sized method, the graded meshing method produces a lower number of elements and better computational efficiency.
机译:利用基于自动电网的生物力学分析方法产生人股骨的三维有限元丝网。网格算法首先预先提取CT切片以提取股骨结构的几何信息,然后基于分段的成像数据集组织标记的背景网格。表面三角网是通过IsoSurface提取构成的,并且在异位表面内部的网格细胞快速地用预定义的四向光刻模拟分解成四面体元素。利用在八叉数据结构中构造的背景网格,可以产生股骨结构的分级网,从而产生更精细的四面体元件,在边界和较粗糙的内侧构成。与均匀尺寸的方法相比,分级啮合方法产生较少数量的元件和更好的计算效率。

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