Chickarmane Vijay, Paladugu Sri R, Bergmann Frank, Sauro Herbert M
Keck Graduate Institute, Claremont, CA 91711, USA.
Bioinformatics. 2005 Sep 15;21(18):3688-90. doi: 10.1093/bioinformatics/bti603. Epub 2005 Aug 4.
Biochemical networks often yield interesting behavior such as switching, oscillation and chaotic dynamics. This article describes a tool that is capable of searching for bifurcation points in arbitrary ODE-based reaction networks by directing the user to regions in the parameter space, where such interesting dynamical behavior can be observed.
We have implemented a genetic algorithm that searches for Hopf bifurcations, turning points and bistable switches. The software is implemented as a Systems Biology Workbench (SBW) enabled module and accepts the standard SBML model format. The interface permits a user to choose the parameters to be searched, admissible parameter ranges, and the nature of the bifurcation to be sought. The tool will return the parameter values for the model for which the particular behavior is observed.
The software, tutorial manual and test models are available for download at the following website: http:/www.sys-bio.org/ under the bifurcation link. The software is an open source and licensed under BSD.
生化网络常常呈现出有趣的行为,如切换、振荡和混沌动力学。本文描述了一种工具,它能够通过引导用户找到参数空间中可观察到此类有趣动力学行为的区域,来搜索任意基于常微分方程(ODE)的反应网络中的分岔点。
我们实现了一种遗传算法,用于搜索霍普夫分岔、转折点和双稳开关。该软件作为一个启用了系统生物学工作台(SBW)的模块来实现,并接受标准的系统生物学标记语言(SBML)模型格式。该界面允许用户选择要搜索的参数、可接受的参数范围以及要寻找的分岔性质。该工具将返回观察到特定行为的模型的参数值。
该软件、教程手册和测试模型可在以下网站下载:http:/www.sys-bio.org/ ,在分岔链接下。该软件是开源的,遵循BSD许可。