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在模拟吸引子网络中记忆检索期间嵌套的θ波到γ波振荡以及精确的时空放电

Nested theta to gamma oscillations and precise spatiotemporal firing during memory retrieval in a simulated attractor network.

作者信息

Herman Pawel Andrzej, Lundqvist Mikael, Lansner Anders

机构信息

KTH Royal Institute of Technology and Stockholm University, Department of Computational Biology, Sweden.

出版信息

Brain Res. 2013 Nov 6;1536:68-87. doi: 10.1016/j.brainres.2013.08.002. Epub 2013 Aug 9.

DOI:10.1016/j.brainres.2013.08.002
PMID:23939226
Abstract

Nested oscillations, where the phase of the underlying slow rhythm modulates the power of faster oscillations, have recently attracted considerable research attention as the increased phase-coupling of cross-frequency oscillations has been shown to relate to memory processes. Here we investigate the hypothesis that reactivations of memory patterns, induced by either external stimuli or internal dynamics, are manifested as distributed cell assemblies oscillating at gamma-like frequencies with life-times on a theta scale. For this purpose, we study the spatiotemporal oscillatory dynamics of a previously developed meso-scale attractor network model as a correlate of its memory function. The focus is on a hierarchical nested organization of neural oscillations in delta/theta (2-5Hz) and gamma frequency bands (25-35Hz), and in some conditions even in lower alpha band (8-12Hz), which emerge in the synthesized field potentials during attractor memory retrieval. We also examine spiking behavior of the network in close relation to oscillations. Despite highly irregular firing during memory retrieval and random connectivity within each cell assembly, we observe precise spatiotemporal firing patterns that repeat across memory activations at a rate higher than expected from random firing. In contrast to earlier studies aimed at modeling neural oscillations, our attractor memory network allows us to elaborate on the functional context of emerging rhythms and discuss their relevance. We provide support for the hypothesis that the dynamics of coherent delta/theta oscillations constitute an important aspect of the formation and replay of neuronal assemblies. This article is part of a Special Issue entitled Neural Coding 2012.

摘要

嵌套振荡是指潜在慢节律的相位调制更快振荡的功率,最近它吸引了大量研究关注,因为已表明跨频振荡增加的相位耦合与记忆过程相关。在此,我们研究这样一个假设:由外部刺激或内部动力学诱导的记忆模式再激活表现为以类伽马频率振荡且寿命处于theta尺度的分布式细胞集合。为此,我们研究一个先前开发的中尺度吸引子网络模型的时空振荡动力学,将其作为记忆功能的相关因素。重点在于delta/theta(2 - 5Hz)和伽马频段(25 - 35Hz)中神经振荡的分层嵌套组织,在某些情况下甚至包括更低的阿尔法频段(8 - 12Hz),这些在吸引子记忆检索过程中合成的场电位中出现。我们还研究网络的放电行为与振荡的紧密关系。尽管在记忆检索期间放电高度不规则且每个细胞集合内连接随机,但我们观察到精确的时空放电模式,这些模式在记忆激活中重复出现的速率高于随机放电预期。与早期旨在模拟神经振荡的研究不同,我们的吸引子记忆网络使我们能够详细阐述新兴节律的功能背景并讨论其相关性。我们为以下假设提供支持:相干delta/theta振荡的动力学构成神经元集合形成和重放的一个重要方面。本文是名为《神经编码2012》特刊的一部分。

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