基于非结构网格的离子通道连续体建模软件平台

Bin Tu, Shiyang Bai, Minxin Chen, Yan Xie, Linbo Zhang, B. Lu
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引用次数: 5

摘要

传统的连续体分子建模大多采用基于结构网格的有限差分或有限体积方法。非结构化网格只是偶尔使用,但越来越多的应用出现在分子模拟中。为了促进基于非结构化网格的生物分子系统的连续建模,我们正在开发一个软件平台,其中包含对这些方法特别有益的工具。这项工作描述了专门用于模拟典型的复杂分子过程的软件系统:离子通过由蛋白质和膜组成的三维通道系统进行运输。该平台包含三个部分:离子通道系统的网格化工具链,描述离子输运电扩散过程的泊松-能-普朗克方程的并行有限元求解器,以及连续统分子建模的可视化程序。平台中的网格划分工具链由一套网格生成工具组成,能够为离子通道系统生成高质量的表面和体积网格。本平台中的并行有限元求解器基于作者[1]开发的并行自适应有限元包PHG。作为平台的特色组件,一个新的可视化程序,VCMM,已经专门为连续体分子建模开发,重点是为基于非结构化网格的方法及其输出分析和可视化提供有用的工具。VCMM提供了一个图形用户界面,由三个模块组成:分子模块,网格模块
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A software platform for continuum modeling of ion channels based on unstructured mesh
Most traditional continuum molecular modeling adopted finite difference or finite volume methods which were based on a structured mesh (grid). Unstructured meshes were only occasionally used, but an increased number of applications emerge in molecular simulations. To facilitate the continuum modeling of biomolecular systems based on unstructured meshes, we are developing a software platform with tools which are particularly beneficial to those approaches. This work describes the software system specifically for the simulation of a typical, complex molecular procedure: ion transport through a three-dimensional channel system that consists of a protein and a membrane. The platform contains three parts: a meshing tool chain for ion channel systems, a parallel finite element solver for the Poisson–Nernst–Planck equations describing the electrodiffusion process of ion transport, and a visualization program for continuum molecular modeling. The meshing tool chain in the platform, which consists of a set of mesh generation tools, is able to generate high-quality surface and volume meshes for ion channel systems. The parallel finite element solver in our platform is based on the parallel adaptive finite element package PHG which wass developed by one of the authors [1]. As a featured component of the platform, a new visualization program, VCMM, has specifically been developed for continuum molecular modeling with an emphasis on providing useful facilities for unstructured mesh-based methods and for their output analysis and visualization. VCMM provides a graphic user interface and consists of three modules: a molecular module, a meshing module
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