首页> 外文会议>2010 5th International Symposium on Health Informatics and Bioinformatics (HIBIT) >Stochastic simulation of large biochemical systems by approximate Gillespie algorithm
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Stochastic simulation of large biochemical systems by approximate Gillespie algorithm

机译:大型生化系统的随机模拟近似Gillespie算法。

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In recent years the fast innovations for the development of new methods and algorithms in system biology enable the biologists to analyze and interpret the complex biochemical structures. One of the speedy development has been seen in mathematical methods for generating these complex systems on the computer. These techniques help the researcher to ask biologically interesting questions and test their expectations before starting their biological experiments. There are a number of methods which can approximately simulate the biochemical systems in a computationally efficient way. In this study we present two applications of a recently developed simulation technique, called the approximate Gillespie, for approximately producing large systems with realistic complexity. We evaluate the performance of the new algorithm by comparing its simulation results with the ones generated from the well-known exact simulation technique, namely the Gillespie method.
机译:近年来,系统生物学新方法和算法开发的快速创新使生物学家能够分析和解释复杂的生化结构。在用于在计算机上生成这些复杂系统的数学方法中,已经看到了快速的发展之一。这些技术可帮助研究人员在开始生物学实验之前提出生物学上有趣的问题并测试他们的期望。有许多方法可以以计算有效的方式近似模拟生化系统。在这项研究中,我们介绍了一种最新开发的仿真技术的两种应用,称为近似Gillespie,用于近似生产具有现实复杂性的大型系统。我们通过将其仿真结果与由众所周知的精确仿真技术(即Gillespie方法)生成的仿真结果进行比较,来评估新算法的性能。

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