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Modelling and simulating in systems biology: an approach based on multi-agent systems

机译:系统生物学中的建模与仿真:一种基于多主体系统的方法

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摘要

Systems Biology is an innovative way of doing biology recently raised in bio-informatics contexts, characterised by the study of biological systems as complex systems with a strong focus on the system level and on the interaction dimension. In other words, the objective is to understand biological systems as a whole, putting on the foregroundudnot only the study of the individual parts as standalone parts, but also of their interaction and of the global properties that emerge at the system level by means of the interaction among the parts. udThis thesis focuses on the adoption of multi-agent systems (MAS) as a suitable paradigm for Systems Biology, for developing models and simulation of complex biological systems. Multi-agent system have been recently introduced in informatics context as a suitabe paradigm for modelling and engineering complex systems. Roughly speaking, a MAS can be conceived as a set of autonomous and interacting entities, called agents, situated in some kind of nvironment, where they fruitfully interact and coordinate so as to obtain a coherent global system behaviour. The claim of this work is that the general properties of MAS make them an effective approach for modelling and buildingudsimulations of complex biological systems, following the methodological principles identified by Systems Biology. In particular, the thesis focuses on cell populations as biological systems.udIn order to support the claim, the thesis introduces and describes (i) a MAS-based model conceived for modelling the dynamics of systems of cells interacting inside cell environment called niches. (ii) a computational tool, developed for implementing the models and executing the simulations. The tool is meant to work as a kind of virtual laboratory, on top of which kinds of virtual experiments can be performed, characterised by the definition and execution of specific models implemented as MASs, so as to support the validation, falsification and improvement of the models through the observation and udanalysis of the simulations. A hematopoietic stem cell system is taken as reference case study for formulating a specific model and executing virtual experiments.
机译:系统生物学是一种在生物信息学背景下新近发展起来的生物学创新方法,其特征是将生物系统研究为复杂的系统,并着重于系统水平和相互作用维度。换句话说,我们的目标是从整体上理解生物系统,不仅要研究作为独立部分的各个部分,而且要研究它们之间的相互作用以及通过系统手段在系统级别出现的全局特性。各部分之间的交互作用。 ud本论文重点讨论采用多代理系统(MAS)作为系统生物学的合适范例,以开发复杂生物系统的模型和仿真。最近在信息学领域引入了多智能体系统,作为对复杂系统进行建模和工程设计的合适范例。粗略地讲,MAS可以被视为位于某种环境中的一组称为代理的自治且交互的实体,它们在其中进行有效的交互和协调,以获得一致的全局系统行为。这项工作的主张是,MAS的一般属性使其成为遵循系统生物学确定的方法原理的复杂生物系统建模和建模的有效方法。为了支持这一主张,本文介绍并描述了(i)基于MAS的模型,该模型旨在对称为环境的细胞环境中相互作用的细胞系统动力学进行建模。 (ii)为实现模型和执行仿真而开发的计算工具。该工具旨在作为一种虚拟实验室,可以在其上执行各种虚拟实验,其特征是定义和执行作为MAS实施的特定模型,以支持对模型的验证,伪造和改进。通过观察和模拟分析得出模型。以造血干细胞系统为参考案例研究,以建立特定模型并进行虚拟实验。

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    Montagna Sara;

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