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Multiscale Analysis of Biological Systems

机译:生物系统的多尺度分析

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It is argued that multiscale approaches are necessary for an explanatory modeling of biological systems. A first step, besides common to the multiscale modeling of physical and living systems, is a bottom-up integration based on the notions of effective parameters and minimal models. Top-down effects can be accounted for in terms of effective constraints and inputs. Biological systems are essentially characterized by an entanglement of bottom-up and top-down influences following from their evolutionary history. A self-consistent multiscale scheme is proposed to capture the ensuing circular causality. Its differences with standard mean-field self-consistent equations and slow-fast decompositions are discussed. As such, this scheme offers a way to unravel the multilevel architecture of living systems and their regulation. Two examples, genome functions and biofilms, are detailed.
机译:有人认为,多尺度方法对于生物学系统的解释性建模是必要的。除了对物理和生命系统进行多尺度建模外,第一步是基于有效参数和最小模型概念的自下而上的集成。自上而下的影响可以用有效的约束和投入来解释。生物系统的基本特征是,自其进化史以来,自下而上和自上而下的影响相互纠缠。提出了一个自洽的多尺度方案来捕获随后的循环因果关系。讨论了它与标准均值场自洽方程和慢速快速分解的区别。这样,该方案提供了一种方法来阐明生命系统的多级体系结构及其调节。详细说明了两个例子,即基因组功能和生物膜。

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