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将基于特征的正常/健康椎体几何形状的多块结构转变为脊柱侧弯椎体几何形状:个性化有限元模型的开发。

Morphing the feature-based multi-blocks of normative/healthy vertebral geometries to scoliosis vertebral geometries: development of personalized finite element models.

作者信息

Hadagali Prasannaah, Peters James R, Balasubramanian Sriram

机构信息

a Orthopedic Biomechanics Laboratory, School of Biomedical Engineering Science and Health Systems , Drexel University , Philadelphia , PA , USA.

出版信息

Comput Methods Biomech Biomed Engin. 2018 Mar;21(4):297-324. doi: 10.1080/10255842.2018.1448391. Epub 2018 Mar 12.

DOI:10.1080/10255842.2018.1448391
PMID:29528253
Abstract

Personalized Finite Element (FE) models and hexahedral elements are preferred for biomechanical investigations. Feature-based multi-block methods are used to develop anatomically accurate personalized FE models with hexahedral mesh. It is tedious to manually construct multi-blocks for large number of geometries on an individual basis to develop personalized FE models. Mesh-morphing method mitigates the aforementioned tediousness in meshing personalized geometries every time, but leads to element warping and loss of geometrical data. Such issues increase in magnitude when normative spine FE model is morphed to scoliosis-affected spinal geometry. The only way to bypass the issue of hex-mesh distortion or loss of geometry as a result of morphing is to rely on manually constructing the multi-blocks for scoliosis-affected spine geometry of each individual, which is time intensive. A method to semi-automate the construction of multi-blocks on the geometry of scoliosis vertebrae from the existing multi-blocks of normative vertebrae is demonstrated in this paper. High-quality hexahedral elements were generated on the scoliosis vertebrae from the morphed multi-blocks of normative vertebrae. Time taken was 3 months to construct the multi-blocks for normative spine and less than a day for scoliosis. Efforts taken to construct multi-blocks on personalized scoliosis spinal geometries are significantly reduced by morphing existing multi-blocks.

摘要

个性化有限元(FE)模型和六面体单元在生物力学研究中更受青睐。基于特征的多块方法用于开发具有六面体网格的解剖学精确的个性化FE模型。为了开发个性化FE模型,逐个手动构建大量几何形状的多块是很繁琐的。网格变形方法每次都能减轻在对个性化几何形状进行网格划分时的上述繁琐,但会导致单元翘曲和几何数据丢失。当将标准脊柱FE模型变形为受脊柱侧弯影响的脊柱几何形状时,这些问题会更加严重。避免因变形导致六面体网格失真或几何形状丢失问题的唯一方法是依靠手动为每个个体受脊柱侧弯影响的脊柱几何形状构建多块,这非常耗时。本文展示了一种从标准椎骨的现有多块半自动构建脊柱侧弯椎骨几何形状多块的方法。通过对标准椎骨的变形多块在脊柱侧弯椎骨上生成了高质量的六面体单元。构建标准脊柱的多块耗时3个月,而构建脊柱侧弯的多块耗时不到一天。通过对现有多块进行变形,在个性化脊柱侧弯脊柱几何形状上构建多块所花费的精力显著减少。

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