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Cortical Dynamics in Presence of Assemblies of Densely Connected Weight-Hub Neurons

机译:密集连接的重量枢纽神经元存在的皮质动力学。

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摘要

Experimental measurements of pairwise connection probability of pyramidal neurons together with the distribution of synaptic weights have been used to construct randomly connected model networks. However, several experimental studies suggest that both wiring and synaptic weight structure between neurons show statistics that differ from random networks. Here we study a network containing a subset of neurons which we call weight-hub neurons, that are characterized by strong inward synapses. We propose a connectivity structure for excitatory neurons that contain assemblies of densely connected weight-hub neurons, while the pairwise connection probability and synaptic weight distribution remain consistent with experimental data. Simulations of such a network with generalized integrate-and-fire neurons display regular and irregular slow oscillations akin to experimentally observed up/down state transitions in the activity of cortical neurons with a broad distribution of pairwise spike correlations. Moreover, stimulation of a model network in the presence or absence of assembly structure exhibits responses similar to light-evoked responses of cortical layers in optogenetically modified animals. We conclude that a high connection probability into and within assemblies of excitatory weight-hub neurons, as it likely is present in some but not all cortical layers, changes the dynamics of a layer of cortical microcircuitry significantly.
机译:锥体神经元的成对连接概率的实验测量以及突触权重的分布已用于构建随机连接的模型网络。但是,一些实验研究表明,神经元之间的布线和突触权重结构均显示出与随机网络不同的统计数据。在这里,我们研究的网络包含一个神经元子集,我们称其为重轮毂神经元,其特征是强烈的内突触。我们提出了一种兴奋性神经元的连接结构,该结构包含密集连接的重量-枢纽神经元的集合,而成对的连接概率和突触重量分布与实验数据保持一致。这种具有广义积分并发射神经元的网络的仿真显示规则和不规则的缓慢振荡,类似于实验观察到的皮质神经元活动中的上/下状态转换,且具有成对的尖峰相关性分布。此外,在存在或不存在装配结构的情况下对模型网络的刺激显示的响应类似于光遗传学修饰动物中皮质层的光诱发响应。我们得出的结论是,兴奋性重量枢纽神经元组件内部和内部的连接可能性很高,因为它可能存在于某些但不是全部皮质层中,但会显着改变皮质微电路层的动力学。

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