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Discrete event systems specification in systems biology - a discussion of stochastic pi calculus and DEVS

机译:系统生物学中的离散事件系统规范 - 随机PI微积分和开发的探讨

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The goal of systems biology is to analyze the behavior and interrelationships between entities of entire functional biological systems. Discrete event approaches are of particular interest if small numbers of entities, like DNA molecules, shall be modeled. Two general approaches toward discrete event modeling and simulation are presented. They provide rather different perspectives on the system to be modeled, as is illustrated based on a model of the Trypophan Operon. Whereas in Devs distinctions are emphasized, e.g. between system and its environment, between structural and non structural changes, between properties attributed to a system and the system itself, these distinctions become fluent in the compact description of the /spl pi/-calculus. However, both share the problem that in order to support a comfortable modeling, adaptations and extensions according to the concrete requirements of this challenging application area are needed.
机译:系统生物学的目标是分析整个功能生物系统的实体之间的行为和相互关系。如果少量实体,如DNA分子,则应建模离散事件方法特别感兴趣。提出了两种对离散事件建模和模拟的一般方法。它们在要建模的系统上提供相当不同的观点,如基于Troypophan操纵子的模型所示。虽然在DEVS中,E.在系统及其环境之间,在结构和非结构性变化之间,在归因于系统和系统本身之间的属性之间,这些区别在于/ SPL PI / -Calculus的紧凑描述变得流畅。然而,两者都分享了根据需要根据这一具有挑战性应用领域的具体要求的舒适建模,适应和延伸的问题。

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