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Unstable Modes and Order Parameters of Bistable Signaling Pathways at Saddle-Node Bifurcations: A Theoretical Study Based on Synergetics

机译:鞍座节点分岔的双稳态信令路径的不稳定模式和顺序参数:基于协同学的理论研究

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摘要

Mathematical modeling has become an indispensable part of systems biology which is a discipline that has become increasingly popular in recent years. In this context, our understanding of bistable signaling pathways in terms of mathematical modeling is of particular importance because such bistable components perform crucial functions in living cells. Bistable signaling pathways can act as switches or memory functions and can determine cell fate. In the present study, properties of mathematical models of bistable signaling pathways are examined from the perspective of synergetics, a theory of self-organization and pattern formation founded by Hermann Haken. At the heart of synergetics is the concept of so-called unstable modes or order parameters that determine the behavior of systems as a whole close to bifurcation points. How to determine these order parameters for bistable signaling pathways at saddle-node bifurcation points is shown. The procedure is outlined in general and an explicit example is worked out in detail.
机译:数学建模已成为系统生物学不可或缺的一部分,这是近年来越来越受欢迎的学科。在这种情况下,我们对数学建模方面对双稳态信令途径的理解特别重要,因为这种双稳态组件在活细胞中执行至关重要的功能。双稳态信令路径可以充当开关或存储器功能,可以确定单元格命运。在本研究中,从协同措施的角度检查了双稳态信号传导途径的数学模型的性质,是赫尔曼哈克创立的自组织和模式形成的理论。在Synergetics的核心,是所谓的不稳定模式或订单参数的概念,可以确定系统的行为作为完整的近距离分数。如何确定如何确定鞍节点分叉点处的双稳信令路径的这些订单参数。该过程一般概述,详细介绍了明确的示例。

著录项

  • 作者

    Till D. Frank;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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