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使用虚拟细胞对任意几何形状进行非线性动力学分析。

Analysis of nonlinear dynamics on arbitrary geometries with the Virtual Cell.

作者信息

Schaff James C., Slepchenko Boris M., Choi Yung-Sze, Wagner John, Resasco Diana, Loew Leslie M.

机构信息

Center for Biomedical Imaging Technology, University of Connecticut Health Center, Farmington, Connecticut 06030.

出版信息

Chaos. 2001 Mar;11(1):115-131. doi: 10.1063/1.1350404.

Abstract

The Virtual Cell is a modeling tool that allows biologists and theorists alike to specify and simulate cell-biophysical models on arbitrarily complex geometries. The framework combines an intuitive, front-end graphical user interface that runs in a web browser, sophisticated server-side numerical algorithms, a database for storage of models and simulation results, and flexible visualization capabilities. In this paper, we present an overview of the capabilities of the Virtual Cell, and, for the first time, the detailed mathematical formulation used as the basis for spatial computations. We also present summaries of two rather typical modeling projects, in order to illustrate the principal capabilities of the Virtual Cell. (c) 2001 American Institute of Physics.

摘要

虚拟细胞是一种建模工具,它使生物学家和理论家能够在任意复杂的几何形状上指定和模拟细胞生物物理模型。该框架结合了一个在网页浏览器中运行的直观前端图形用户界面、复杂的服务器端数值算法、一个用于存储模型和模拟结果的数据库以及灵活的可视化功能。在本文中,我们概述了虚拟细胞的功能,并首次介绍了作为空间计算基础的详细数学公式。我们还介绍了两个相当典型的建模项目的总结,以说明虚拟细胞的主要功能。(c)2001年美国物理研究所。

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