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首页> 外文期刊>International journal for numerical methods in biomedical engineering >Evaluation of mesh morphing and mapping techniques in patient specific modelling of the human pelvis
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Evaluation of mesh morphing and mapping techniques in patient specific modelling of the human pelvis

机译:在骨盆患者特定模型中评估网格变形和贴图技术

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摘要

Robust generation of pelvic finite element models is necessary to understand variation in mechanical behaviour resulting from differences in gender, aging, disease and injury. The objective of this study was to apply and evaluate mesh morphing and mapping techniques to facilitate the creation and structural analysis of specimen-specific finite element (FE) models of the pelvis. A specimen-specific pelvic FE model (source mesh) was generated following a traditional user-intensive meshing scheme. The source mesh was morphed onto a computed tomography scan generated target surface of a second pelvis using a landmarked-based approach, in which exterior source nodes were shifted to target surface vertices, while constrained along a normal. A second copy of the morphed model was further refined through mesh mapping, in which surface nodes of the initial morphed model were selected in patches and remapped onto the surfaces of the target model. Computed tomography intensity-based material properties were assigned to each model. The source, target, morphed and mapped models were analyzed under axial compression using linear static FE analysis, and their strain distributions were evaluated. Morphing and mapping techniques were effectively applied to generate good quality and geometrically complex specimen-specific pelvic FE models. Mapping significantly improved strain concurrence with the target pelvis FE model.
机译:骨盆有限元模型的强大生成对于理解性别,年龄,疾病和伤害差异导致的机械行为变化是必要的。这项研究的目的是应用和评估网格变形和制图技术,以促进骨盆标本特定有限元(FE)模型的创建和结构分析。根据传统的用户密集网格划分方案,生成了标本特定的骨盆有限元模型(源网格)。使用基于界标的方法将源网格变形到计算机断层扫描生成的第二个骨盆的目标表面上,其中外部源节点在沿法线约束的情况下移动到目标表面顶点。通过网格映射进一步完善了变形模型的第二个副本,其中,初始变形模型的表面节点是在补丁中选择的,然后重新映射到目标模型的表面上。将基于计算机断层扫描强度的材料属性分配给每个模型。使用线性静态有限元分析在轴向压缩下分析了源模型,目标模型,变形模型和映射模型,并评估了它们的应变分布。有效地应用了变形和映射技术以生成高质量和几何形状复杂的标本特定的骨盆有限元模型。映射显着改善了目标骨盆FE模型的应变并发性。

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