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The diminishing role of hubs in dynamical processes on complex networks

机译:集线器在复杂网络动态过程中的作用逐渐减弱

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It is notoriously difficult to predict the behaviour of a complex self-organizing system, where the interactions among dynamical units form a heterogeneous topology. Even if the dynamics of each microscopic unit is known, a real understanding of their contributions to the macroscopic system behaviour is still lacking. Here, we develop information-theoretical methods to distinguish the contribution of each individual unit to the collective out-of-equilibrium dynamics. We show that for a system of units connected by a network of interaction potentials with an arbitrary degree distribution, highly connected units have less impact on the system dynamics when compared with intermediately connected units. In an equilibrium setting, the hubs are often found to dictate the long-term behaviour. However, we find both analytically and experimentally that the instantaneous states of these units have a short-lasting effect on the state trajectory of the entire system. We present qualitative evidence of this phenomenon from empirical findings about a social network of product recommendations, a protein-protein interaction network and a neural network, suggesting that it might indeed be a widespread property in nature.
机译:众所周知,很难预测复杂的自组织系统的行为,在该系统中,动力学单元之间的相互作用会形成异构拓扑。即使知道每个微观单元的动力学,仍然缺乏对它们对宏观系统行为的贡献的真正理解。在这里,我们开发了信息理论方法来区分每个单个单元对集体失衡动态的贡献。我们表明,对于由具有任意程度分布的相互作用势网络连接的单元系统,与中间连接的单元相比,高度连接的单元对系统动力学的影响较小。在平衡环境中,通常会发现轮毂决定了长期行为。但是,我们在分析和实验上都发现这些单元的瞬时状态对整个系统的状态轨迹具有短暂的影响。我们从有关产品推荐的社交网络,蛋白质-蛋白质相互作用网络和神经网络的经验发现中提供了这种现象的定性证据,表明它实际上可能确实是一种广泛的特性。

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