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保持分子表面拓扑的三角剖分流形网格方法。

Triangulated manifold meshing method preserving molecular surface topology.

机构信息

Center for System Biology, Department of Mathematics, Soochow University, Suzhou 215006, China.

出版信息

J Mol Graph Model. 2012 Sep;38:411-8. doi: 10.1016/j.jmgm.2012.09.006. Epub 2012 Oct 10.

Abstract

Generation of manifold mesh is an urgent issue in mathematical simulations of biomolecule using boundary element methods (BEM) or finite element method (FEM). Defects, such as not closed mesh, intersection of elements and missing of small structures, exist in surface meshes generated by most of the current meshing method. Usually the molecular surface meshes produced by existing methods need to be revised carefully by third party software to ensure the surface represents a continuous manifold before being used in a BEM and FEM calculations. Based on the trace technique proposed in our previous work, in this paper, we present an improved meshing method to avoid intersections and preserve the topology of the molecular Gaussian surface. The new method divides the whole Gaussian surface into single valued pieces along each of x, y, z directions by tracing the extreme points along the fold curves on the surface. Numerical test results show that the surface meshes produced by the new method are manifolds and preserve surface topologies. The result surface mesh can also be directly used in surface conforming volume mesh generation for FEM type simulation.

摘要

流形网格的生成是使用边界元方法(BEM)或有限元方法(FEM)对生物分子进行数学模拟的一个紧迫问题。当前大多数网格生成方法生成的表面网格存在缺陷,例如网格不封闭、元素交叉和小结构缺失。通常,现有方法生成的分子表面网格需要通过第三方软件进行仔细修改,以确保表面在用于 BEM 和 FEM 计算之前表示连续的流形。基于我们之前工作中提出的迹线技术,本文提出了一种改进的网格生成方法,以避免交叉并保持分子高斯曲面的拓扑结构。该新方法通过沿着表面上的折叠曲线追踪极值点,沿 x、y 和 z 方向将整个高斯曲面划分为单值片。数值测试结果表明,新方法生成的曲面网格是流形并保持曲面拓扑结构。所得曲面网格也可直接用于有限元类型模拟的曲面贴合体网格生成。

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