首页> 外文会议>International Conference on Computational Methods in Systems Biology(CMSB 2007); 20070920-21; Edinburgh(GB) >Stochastic Simulation of Biological Systems with Dynamical Compartment Structure
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Stochastic Simulation of Biological Systems with Dynamical Compartment Structure

机译:具有动态隔室结构的生物系统的随机模拟

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The Gillespie stochastic simulation algorithm represents one of the main physical abstractions exploited for the simulation of biological systems modeled by means of concurrent calculi. While the faithful modelling of bio-systems often requires multi-compartment semantics, the original Gillespie algorithm considers only one fixed-size volume. In this paper we introduce an extended formalisation of the above algorithm which preserves the original model but allows the stochastic simulation in presence of multiple compartments with dynamical structure and variable sizes. The presented algorithm can be then used as basis for simulating systems expressed in an extended version of the stochastic 7r-Calculus, the Sπ@ language, obtained by means of polyadic synchronisation. Despite of its conservativeness, Sπ@ is showed to allow flexible modelling of multiple compartments with dynamical structure and to provide increased biological faithfulness.
机译:Gillespie随机模拟算法代表了主要的物理抽象方法之一,该物理抽象方法被用于模拟通过并行计算进行建模的生物系统。尽管对生物系统进行忠实的建模通常需要多隔室的语义,但是原始的Gillespie算法仅考虑一个固定大小的体积。在本文中,我们介绍了上述算法的扩展形式化,该形式保留了原始模型,但允许在具有动态结构和可变大小的多个间隔的情况下进行随机模拟。然后,所提出的算法可以用作模拟以随机多元7r演算(Sπ语言)的扩展版本表示的系统的基础,该随机形式是通过多元同步获得的。尽管具有保守性,但显示Sπ@可以灵活地对具有动态结构的多个隔室进行建模,并提供增强的生物忠诚度。

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