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A&A for modelling and engineering simulations in Systems Biology

机译:系统生物学中的建模和工程仿真的A&A

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Systems Biology (SB) promotes a system-level understanding of biological systems, and requires modelling and simulation tools for analysing biological systems dynamics. The articulation of Multiagent Systems (MASs) in terms of multiple, distributed and autonomous computational entities makes MAS a seemingly fit paradigm in SB. In this paper we adopt the Agents and Artefacts (A&A) metamodel where the notions of agent, artefact and workspace are taken as the basic bricks for MASs as the ontological foundation for our Multiagent-based Simulation (MABS) framework, and discuss how this impacts on SB. After recasting the A&A abstractions within the domain and design models, we specialise A&A within the SB context, and show an operational model based on the TuCSoN agent coordination infrastructure, upon which our simulation framework is implemented. As a case study, we model the well-studied metabolic pathway of glycolysis, and present some results of the simulation.
机译:系统生物学(SB)促进了对生物系统的系统级理解,并需要用于分析生物系统动力学的建模和仿真工具。多代理系统(MAS)在多个,分布式和自治计算实体方面的清晰表达使MAS成为SB中看似合适的范例。在本文中,我们采用“代理与人工制品”(A&A)元模型,其中将代理,人工制品和工作区的概念作为MAS的基础砖,作为我们基于多代理的仿真(MABS)框架的本体论基础,并讨论了这种影响如何在SB。在域和设计模型中重塑了A&A抽象之后,我们在SB上下文中专门研究A&A,并展示了基于TuCSoN代理协调基础结构的运营模型,并在此模型上实现了我们的仿真框架。作为案例研究,我们对糖酵解代谢途径进行了深入研究,并给出了一些模拟结果。

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