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首页> 外文期刊>Journal of Computational Neuroscience >Local cortical circuit model inferred from power-law distributed neuronal avalanches
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Local cortical circuit model inferred from power-law distributed neuronal avalanches

机译:从幂律分布神经元雪崩推断出局部皮质回路模型

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摘要

How cortical neurons process information crucially depends on how their local circuits are organized. Spontaneous synchronous neuronal activity propagating through neocortical slices displays highly diverse, yet repeat-able, activity patterns called "neuronal avalanches". They obey power-law distributions of the event sizes and lifetimes, presumably reflecting the structure of local circuits developed in slice cultures. However, the explicit network structure underlying the power-law statistics remains unclear. Here, we present a neuronal network model of pyramidal and inhibitory neurons that enables stable propagation of avalanche-like spiking activity. We demonstrate a neuronal wiring rule that governs the formation of mutually overlapping cell assemblies during the development of this network. The resultant network comprises a mixture of feedforward chains and recurrent circuits, in which neuronal avalanches are stable if the former structure is predominant. Interestingly, the recurrent synaptic connections formed by this wiring rule limit the number of cell assemblies embeddable in a neuron pool of given size. We investigate how the resultant power laws depend on the details of the cell-assembly formation as well as on the inhibitory feedback. Our model suggests that local cortical circuits may have a more complex topological design than has previously been thought.
机译:皮质神经元如何处理信息至关重要地取决于其局部回路的组织方式。通过新皮质切片传播的自发同步神经元活动显示出高度多样但可重复的活动模式,称为“神经雪崩”。它们服从事件大小和生命周期的幂律分布,大概反映了切片文化中发展的局部电路的结构。但是,幂律统计基础的显式网络结构仍然不清楚。在这里,我们介绍了锥体和抑制性神经元的神经元网络模型,能够使雪崩样尖峰活动的稳定传播。我们展示了一种神经元的布线规则,该规则在此网络的开发过程中控制相互重叠的细胞组件的形成。最终的网络包含前馈链和递归回路的混合物,如果前者占主导地位,则神经元雪崩是稳定的。有趣的是,由这种布线规则形成的复发性突触连接限制了可嵌入给定大小的神经元池中的细胞组件的数量。我们研究所得的功率定律如何取决于细胞组装形成的细节以及抑制性反馈。我们的模型表明,局部皮层回路的拓扑设计可能比以前认为的要复杂。

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