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首页> 外文期刊>Journal of Mathematical Biology >Graph-theoretic methods for the analysis of chemical and biochemical networks. II. Oscillations in networks with delays
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Graph-theoretic methods for the analysis of chemical and biochemical networks. II. Oscillations in networks with delays

机译:图论方法用于化学和生化网络的分析。二。延迟网络中的振荡

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Delay-differential equations are commonly used to model genetic regulatory systems with the delays representing transcription and translation times. Equations with delayed terms can also be used to represent other types of chemical processes. Here we analyze delayed mass-action systems, i.e. systems in which the rates of reaction are given by mass-action kinetics, but where the appearance of products may be delayed. Necessary conditions for delay-induced instability are presented in terms both of a directed graph (digraph) constructed from the Jacobian matrix of the corresponding ODE model and of a species-reaction bipartite graph which directly represents a chemical mechanism. Methods based on the bipartite graph are particularly convenient and powerful. The condition for a delay-induced instability in this case is the existence of a subgraph of the bipartite graph containing an odd number of cycles of which an odd number are negative.
机译:时滞微分方程式通常用于模拟遗传调控系统,其中时延代表转录和翻译时间。具有延迟项的方程式也可以用于表示其他类型的化学过程。在这里,我们分析了延迟的质量作用系统,即其中反应速率由质量作用动力学给出的系统,但产品的出现可能会延迟。从相应的ODE模型的雅可比矩阵构造的有向图(有向图)和直接代表化学机理的物种反应二分图都提供了延迟诱发的不稳定性的必要条件。基于二部图的方法特别方便且功能强大。在这种情况下,延迟引起的不稳定性的条件是存在二分图的子图,其中该子图包含奇数个周期,其中奇数为负。

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