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Topology Aware Quad Dominant Meshing for Vascular Structures

机译:用于血管结构的拓扑感知四元主导网格划分

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We present a pipeline to generate high quality quad dominant meshes for vascular structures from a given volumetric image. As common for medical image segmentation we use a Level Set approach to separate the region of interest from the background. However in contrast to the standard method we control the topology of the deformable object - defined by the Level Set function - which allows us to extract a proper skeleton which represents the global topological information of the vascular structure. Instead of solving a complex global optimization problem to compute a quad mesh, we divide the problem and partition the complex model into junction and tube elements, employing the skeleton of the vascular structure. After computing quad meshes for the junctions using the Mixed Integer Quadrangulation approach, we re-mesh the tubes using an algorithm inspired by the well known Bresenham Algorithm for drawing lines which distributes irregular elements equally over the entire tube element.
机译:我们提出了一种从给定的体积图像生成用于血管结构的高质量四元主导网格的管道。与医学图像分割一样,我们使用“水平集”方法将感兴趣区域与背景分开。但是,与标准方法相反,我们控制可变形对象的拓扑(由“水平集”功能定义),该拓扑使我们能够提取适当的骨架,该骨架代表血管结构的全局拓扑信息。我们没有解决复杂的全局优化问题来计算四边形网格,而是使用血管结构的骨架将问题划分为复杂的模型,并将其划分为连接和管元素。在使用“混合整数四边形”方法计算了交点的四边形网格之后,我们使用了著名的Bresenham算法启发的算法来绘制网格线,从而在整个管单元上均匀分布不规则元素。

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