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The Role of Model Integration in Complex Systems Modelling: An Example from Cancer Biology

机译:模型集成在复杂系统建模中的作用:以癌症生物学为例

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摘要

Model integration – the process by which different modelling efforts can be brought together to simulate the target system – is a core technology in the field of Systems Biology. In the work presented here model integration was addressed directly taking cancer systems as an example. An in-depth literature review was carried out to survey the model forms and types currently being utilised. This was used to formalise the main challenges that model integration poses, namely that of paradigm (the formalism on which a model is based), focus (the real-world system the model represents) and scale. A two-tier model integration strategy, including a knowledge-driven approach to address model semantics, was developed to tackle these challenges. In the first step a novel description of models at the level of behaviour, rather than the precise mathematical or computational basis of the model, is developed by distilling a set of abstract classes and properties. These can accurately describe model behaviour and hence describe focus in a way that can be integrated with behavioural descriptions of other models. In the second step this behaviour is decomposed into an agent-based system by translating the models into local interaction rules. The book provides a detailed and highly integrated presentation of the method, encompassing both its novel theoretical and practical aspects, which will enable the reader to practically apply it to their model integration needs in academic research and professional settings. The text is self-supporting. It also includes an in-depth current bibliography to relevant research papers and literature. The review of the current state of the art in tumour modelling provides added value.
机译:模型集成是系统生物学领域的一项核心技术,它是将不同的建模工作聚集在一起以模拟目标系统的过程。在这里介绍的工作中,直接以癌症系统为例,解决了模型集成问题。进行了深入的文献综述,以调查当前使用的模型形式和类型。这用于形式化模型集成带来的主要挑战,即范式(模型所基于的形式主义),焦点(模型所代表的现实系统)和规模挑战。为了解决这些挑战,开发了一种两层模型集成策略,其中包括解决模型语义的知识驱动方法。第一步,通过提炼一组抽象类和属性,开发了一种在行为层面上对模型的新颖描述,而不是模型的精确数学或计算基础。这些可以准确地描述模型行为,因此可以以可以与其他模型的行为描述集成的方式描述焦点。在第二步中,通过将模型转换为本地交互规则,将此行为分解为基于代理的系统。本书提供了该方法的详细且高度集成的介绍,涵盖了其新颖的理论和实践方面,这将使读者能够将其实际应用于学术研究和专业设置中的模型集成需求。文字是自给自足的。它还包括有关相关研究论文和文献的最新文献目录。对肿瘤建模的最新技术的回顾提供了附加价值。

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    Patel, Manish; Nagl, Sylvia;

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  • 年度 2010
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