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3D reconstruction of a spinal motion segment from 2D medical images: objective quantification of the geometric accuracy of the FE mesh generation procedure

机译:从2D医学图像重建脊柱运动段的3D:有限元网格生成过程的几何精度的客观量化

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摘要

The Finite Element (FE) Analysis is an essential tool to study the biomechanical behaviour of the spine, and particularly of the intervertebral disc (IVD). The 3D reconstruction of a patient-oriented IVD has numerous obstacles. Difficulties arise mainly due to the complexity and dimensions of the IVD’s constituent structures. The lack of detailed data in conventional imaging techniques causes further problems in the IVD finite element mesh generation and analysis. The accuracy of the FE computation increases if the geometry of model resembles, for instance, the natural smoothness of real anatomical structure. Accounting to this, the main idea of this work is to evaluate the impact of the reconstruction parameters by comparing the final 3D geometrical reconstruction by finite elements with an initial well-defined geometry of a given anatomical structure, and to develop the procedures for the 3D mesh generation from 2D medical imaging.
机译:有限元(FE)分析是研究脊柱,尤其是椎间盘(IVD)的生物力学行为的重要工具。面向患者的IVD的3D重建存在许多障碍。出现困难的主要原因是IVD组成结构的复杂性和规模。常规成像技术中缺乏详细数据会导致IVD有限元网格生成和分析出现更多问题。如果模型的几何形状类似于实际解剖结构的自然光滑度,则FE计算的准确性会提高。考虑到这一点,这项工作的主要思想是通过比较有限元素的最终3D几何重建与给定解剖结构的初始明确定义的几何来评估重建参数的影响,并开发3D程序从2D医学成像生成网格。

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