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Guaranteed Quality Triangulation of Molecular Skin Surfaces

机译:分子皮肤表面的质量保证三角剖分

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We present an efficient algorithm to mesh the macromolecules surface model represented by the skin surface defined by Edelsbrunner. Our algorithm overcomes several challenges residing in current surface meshing methods. First, we guarantee the mesh quality with a provable lower bound of 21. on its minimum angle. Second, we ensure the triangulation is homeomorphic to the original surface. Third, we improve the efficiency of constructing the Restricted Delaunay Triangulation(RDT) of smooth surfaces. We achieve this by constructing the RDT using the advancing front method without computing the Delaunay tetrahedrization of the sample points on the surfaces. The difficulty of handling the front collision problem is tackled by employing the Morse theory. In particular, we construct the Morse-Smale complex to simplify the topological changes of the front. Our implementation results suggest that the algorithm decrease the time of generating high quality homeomorphic skin mesh from hours to a few minutes.
机译:我们提出了一种有效的算法来网格化由Edelsbrunner定义的皮肤表面代表的大分子表面模型。我们的算法克服了当前曲面网格划分方法中存在的几个挑战。首先,我们保证网格质量在最小角度上的可证明下界为21。其次,我们确保三角剖分与原始曲面是同胚的。第三,我们提高了构建光滑表面的受限Delaunay三角剖分(RDT)的效率。我们通过使用先进的前端方法构造RDT而无需计算表面上采样点的Delaunay四面体化来实现这一目标。通过使用莫尔斯理论解决了前部碰撞问题的难度。特别是,我们构造了Morse-Smale复合体以简化前部的拓扑变化。我们的实施结果表明,该算法将生成高质量同胚皮肤网格的时间从数小时减少到了几分钟。

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