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A methodological approach for using high-level Petri Nets to model the immune system response

机译:使用高级Petri网建模免疫系统反应的方法学方法

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摘要

BackgroundMathematical and computational models showed to be a very important support tool for the comprehension of the immune system response against pathogens. Models and simulations allowed to study the immune system behavior, to test biological hypotheses about diseases and infection dynamics, and to improve and optimize novel and existing drugs and vaccines.Continuous models, mainly based on differential equations, usually allow to qualitatively study the system but lack in description; conversely discrete models, such as agent based models and cellular automata, permit to describe in detail entities properties at the cost of losing most qualitative analyses. Petri Nets (PN) are a graphical modeling tool developed to model concurrency and synchronization in distributed systems. Their use has become increasingly marked also thanks to the introduction in the years of many features and extensions which lead to the born of “high level” PN.
机译:背景数学和计算模型被证明是理解针对病原体的免疫系统反应的非常重要的支持工具。通过模型和仿真可以研究免疫系统的行为,测试有关疾病和感染动力学的生物学假设以及改进和优化新药和现有药物及疫苗。连续模型(主要基于微分方程式)通常可以对系统进行定性研究,但是缺乏描述;相反,离散模型(例如基于代理的模型和细胞自动机)允许以丢失最定性分析为代价来详细描述实体属性。 Petri Nets(PN)是一种图形化建模工具,旨在对分布式系统中的并发和同步进行建模。由于多年来引入的许多功能和扩展导致“高级” PN的诞生,它们的使用也变得越来越明显。

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