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选择性群体速率编码:γ振荡在选择性注意中的一种可能的计算作用。

Selective population rate coding: a possible computational role of gamma oscillations in selective attention.

作者信息

Masuda Naoki

机构信息

Graduate School of Information Science and Technology, University of Tokyo, Bunkyo, Tokyo 113-8656, Japan.

出版信息

Neural Comput. 2009 Dec;21(12):3335-62. doi: 10.1162/neco.2009.09-08-857.

Abstract

Selective attention is often accompanied by gamma oscillations in local field potentials and spike field coherence in brain areas related to visual, motor, and cognitive information processing. Gamma oscillations are implicated to play an important role in, for example, visual tasks including object search, shape perception, and speed detection. However, the mechanism by which gamma oscillations enhance cognitive and behavioral performance of attentive subjects is still elusive. Using feedforward fan-in networks composed of spiking neurons, we examine a possible role for gamma oscillations in selective attention and population rate coding of external stimuli. We implement the concept proposed by Fries ( 2005 ) that under dynamic stimuli, neural populations effectively communicate with each other only when there is a good phase relationship among associated gamma oscillations. We show that the downstream neural population selects a specific dynamic stimulus received by an upstream population and represents it by population rate coding. The encoded stimulus is the one for which gamma rhythm in the corresponding upstream population is resonant with the downstream gamma rhythm. The proposed role for gamma oscillations in stimulus selection is to enable top-down control, a neural version of time division multiple access used in communication engineering.

摘要

选择性注意通常伴随着局部场电位中的伽马振荡以及与视觉、运动和认知信息处理相关脑区中的锋电位场相干性。伽马振荡被认为在例如包括物体搜索、形状感知和速度检测等视觉任务中发挥重要作用。然而,伽马振荡增强注意力集中的受试者的认知和行为表现的机制仍然难以捉摸。我们使用由脉冲神经元组成的前馈扇入网络,研究伽马振荡在选择性注意和外部刺激的群体速率编码中的可能作用。我们实现了弗里斯(2005年)提出的概念,即在动态刺激下,只有当相关伽马振荡之间存在良好的相位关系时,神经群体才能有效地相互通信。我们表明,下游神经群体选择上游群体接收到的特定动态刺激,并通过群体速率编码来表征它。编码的刺激是相应上游群体中的伽马节律与下游伽马节律共振的刺激。所提出的伽马振荡在刺激选择中的作用是实现自上而下的控制,这是通信工程中使用的时分多址接入的神经版本。

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