The influence of the basin structure of Boolean networks on their long range correlated dynamics

Peng Xu, Xianghong Wang, Wenbin Liu
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引用次数: 3

Abstract

It has been known for quite some time that the 1 / f dynamics play a vital role in living organisms. Recently we studied the long-range correlated dynamics of Boolean networks, and found that some networks could present the 1 / f dynamics while others couldn't. An important question is what kind of networks can generate such dynamics? In this paper, we investigate this issue based on the attractor structure of Boolean networks. We find that multiple attractor networks prefer to generate the 1 / f dynamics and systems with large basin entropy tend to sustain such dynamics in a wide noise range. Models for eight real genetic networks also partially support these observations.
布尔网络盆地结构对其远程相关动力学的影响
人们很早就知道,1 / f动力学在生物体中起着至关重要的作用。近年来,我们对布尔网络的远程相关动力学进行了研究,发现一些网络可以呈现1 / f动态,而另一些网络则不能。一个重要的问题是,什么样的网络可以产生这样的动态?本文基于布尔网络的吸引子结构研究了这一问题。我们发现,多吸引子网络倾向于产生1 / f动态,而具有大流域熵的系统倾向于在宽噪声范围内维持这种动态。八个真实遗传网络的模型也部分支持这些观察结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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