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ODEion——一个用于常微分方程结构识别的软件模块。

ODEion--a software module for structural identification of ordinary differential equations.

作者信息

Gennemark Peter, Wedelin Dag

机构信息

Mathematical Sciences, University of Gothenburg, Gothenburg, Sweden , Department of Mathematics, Uppsala University, Uppsala, Sweden.

出版信息

J Bioinform Comput Biol. 2014 Feb;12(1):1350015. doi: 10.1142/S0219720013500157. Epub 2013 Nov 12.

Abstract

In the systems biology field, algorithms for structural identification of ordinary differential equations (ODEs) have mainly focused on fixed model spaces like S-systems and/or on methods that require sufficiently good data so that derivatives can be accurately estimated. There is therefore a lack of methods and software that can handle more general models and realistic data. We present ODEion, a software module for structural identification of ODEs. Main characteristic features of the software are: • The model space is defined by arbitrary user-defined functions that can be nonlinear in both variables and parameters, such as for example chemical rate reactions. • ODEion implements computationally efficient algorithms that have been shown to efficiently handle sparse and noisy data. It can run a range of realistic problems that previously required a supercomputer. • ODEion is easy to use and provides SBML output. We describe the mathematical problem, the ODEion system itself, and provide several examples of how the system can be used. Available at: http://www.odeidentification.org.

摘要

在系统生物学领域,用于常微分方程(ODEs)结构识别的算法主要集中在诸如S - 系统等固定模型空间,和/或需要足够好的数据以便能够准确估计导数的方法上。因此,缺乏能够处理更一般模型和实际数据的方法及软件。我们展示了ODEion,一个用于ODEs结构识别的软件模块。该软件的主要特征如下:• 模型空间由任意用户定义函数定义,这些函数在变量和参数上都可以是非线性的,例如化学反应速率。• ODEion实现了计算效率高的算法,这些算法已被证明能有效处理稀疏和有噪声的数据。它可以运行一系列以前需要超级计算机才能处理的实际问题。• ODEion易于使用并提供SBML输出。我们描述了数学问题、ODEion系统本身,并提供了几个该系统如何使用的示例。可在以下网址获取:http://www.odeidentification.org

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