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无结构网络拓扑结构由特权神经元产生基于秩序的表征。

Unstructured network topology begets order-based representation by privileged neurons.

作者信息

Bauermeister Christoph, Keren Hanna, Braun Jochen

机构信息

Institute of Biology, Otto-von-Guericke University, Leipziger Str. 44, Haus 91, 39120, Magdeburg, Germany.

Center for Behavioral Brain Sciences, Leipziger Str. 44, 39120, Magdeburg, Germany.

出版信息

Biol Cybern. 2020 Feb;114(1):113-135. doi: 10.1007/s00422-020-00819-9. Epub 2020 Feb 27.

Abstract

How spiking activity reverberates through neuronal networks, how evoked and spontaneous activity interacts and blends, and how the combined activities represent external stimulation are pivotal questions in neuroscience. We simulated minimal models of unstructured spiking networks in silico, asking whether and how gentle external stimulation might be subsequently reflected in spontaneous activity fluctuations. Consistent with earlier findings in silico and in vitro, we observe a privileged subpopulation of 'pioneer neurons' that, by their firing order, reliably encode previous external stimulation. We also confirm that pioneer neurons are 'sensitive' in that they are recruited by small fluctuations of population activity. We show that order-based representations rely on a 'chain' of pioneer neurons with different degrees of sensitivity and thus constitute an emergent property of collective dynamics. The forming of such representations is greatly favoured by a broadly heterogeneous connection topology-a broad 'middle class' in degree of connectedness. In conclusion, we offer a minimal model for the representational role of pioneer neurons, as observed experimentally in vitro. In addition, we show that broadly heterogeneous connectivity enhances the representational capacity of unstructured networks.

摘要

脉冲活动如何在神经网络中回荡,诱发活动与自发活动如何相互作用并融合,以及这些组合活动如何表征外部刺激,是神经科学中的关键问题。我们在计算机上模拟了无结构脉冲网络的最小模型,探究温和的外部刺激是否以及如何随后反映在自发活动波动中。与早期计算机模拟和体外实验结果一致,我们观察到一个特殊的“先锋神经元”亚群,它们通过放电顺序可靠地编码先前的外部刺激。我们还证实先锋神经元是“敏感的”,因为它们会被群体活动的微小波动所招募。我们表明基于顺序的表征依赖于具有不同敏感程度的先锋神经元“链”,因此构成了集体动力学的一种涌现特性。这种表征的形成在很大程度上得益于广泛异质的连接拓扑结构——连接程度上广泛的“中产阶级”。总之,我们提供了一个关于先锋神经元表征作用的最小模型,正如在体外实验中所观察到的那样。此外,我们表明广泛异质的连接性增强了无结构网络的表征能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3978/7062672/9c5ba994dc47/422_2020_819_Fig1_HTML.jpg

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