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A domain separate method of developing orthogonal hexahedron finite element mesh model from CT/μCT slice image files

机译:从CT /μCT切片图像文件中开发正交六面体有限元网格模型的域分离方法

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The finite element (FE) analysis of bone structure starts with the construction of an accurate FE mesh models. The popular method to acquire a realistic geometry is using the commercial software Mimics which has powerful reconstruction ability from CT/μCT slice image files. Then a FE mesh model can be established based on the constructed geometry model with a meshing process. However, when an orthogonal hexahedron finite element mesh model was required under certain circumstances, the mainstream method is no longer sufficient. The generic method that directly transforming pixels into the orthogonal hexahedral element was relatively simple, but the direction was fixed, it must be perpendicular to the scan direction. Therefore, we propose a generic method which was called Domain Separate Method in response to this issue. The main idea of Domain Separated Method (DSM) was constructing a large enough pre-meshed domain with orthogonal hexahedron elements at first, then separated the hexahedron elements based on the STL model derived from Mimics. The separation process was proceed by implemented a self-coding intersection detection program with volume adjustment function. The numerical examples show that the DSM is efficient and accurate, and robust to scan orientation.
机译:骨骼结构的有限元(FE)分析始于构建精确的FE网格模型。一种流行的获取逼真的几何形状的方法是使用商业软件Mimics,该软件具有从CT /μCT切片图像文件进行强大的重建的能力。然后,可以基于所构造的几何模型并通过网格划分过程来建立有限元网格模型。但是,在某些情况下需要正交六面体有限元网格模型时,主流方法已不再足够。将像素直接转换为正交六面体元素的通用方法相对简单,但是方向是固定的,它必须垂直于扫描方向。因此,针对此问题,我们提出了一种通用方法,称为“域分离方法”。域分离法(DSM)的主要思想是首先构造一个足够大的,具有正交六面体元素的预网格域,然后基于源自Mimics的STL模型分离六面体元素。通过实施具有音量调节功能的自编码路口检测程序来进行分离过程。数值示例表明,DSM是高效且准确的,并且对扫描方向具有鲁棒性。

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