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伽马波段激活可预测联想记忆和皮质可塑性。

Gamma-band activation predicts both associative memory and cortical plasticity.

机构信息

Center for the Neurobiology of Learning and Memory, Department of Neurobiology and Behavior, University of California, Irvine, California 92697-3800, USA.

出版信息

J Neurosci. 2011 Sep 7;31(36):12748-58. doi: 10.1523/JNEUROSCI.2528-11.2011.

Abstract

Gamma-band oscillations are a ubiquitous phenomenon in the nervous system and have been implicated in multiple aspects of cognition. In particular, the strength of gamma oscillations at the time a stimulus is encoded predicts its subsequent retrieval, suggesting that gamma may reflect enhanced mnemonic processing. Likewise, activity in the gamma-band can modulate plasticity in vitro. However, it is unclear whether experience-dependent plasticity in vivo is also related to gamma-band activation. The aim of the present study was to determine whether gamma activation in primary auditory cortex modulates both the associative memory for an auditory stimulus during classical conditioning and its accompanying specific receptive field plasticity. Rats received multiple daily sessions of single tone/shock trace and two-tone discrimination conditioning, during which local field potentials and multiunit discharges were recorded from chronically implanted electrodes. We found that the strength of tone-induced gamma predicted the acquisition of associative memory 24 h later and ceased to predict subsequent performance once asymptote was reached. Gamma activation also predicted receptive field plasticity that specifically enhanced representation of the signal tone. This concordance provides a long-sought link between gamma oscillations, cortical plasticity, and the formation of new memories.

摘要

伽马波段振荡是神经系统中普遍存在的现象,与认知的多个方面有关。特别是,刺激被编码时的伽马振荡强度可以预测其随后的检索,这表明伽马可能反映了增强的记忆处理。同样,伽马波段的活动可以调节体外的可塑性。然而,尚不清楚体内依赖经验的可塑性是否也与伽马波段的激活有关。本研究的目的是确定初级听觉皮层中的伽马激活是否调节经典条件反射过程中对听觉刺激的联想记忆及其伴随的特定感受野可塑性。在单音/冲击痕迹和双音辨别条件反射的多个日常训练中,我们从慢性植入的电极记录局部场电位和多单位放电。我们发现,音诱导的伽马强度预测了 24 小时后联想记忆的获得,并且一旦达到渐近线,就不再预测随后的表现。伽马激活还预测了特定增强信号音表示的感受野可塑性。这种一致性为伽马振荡、皮质可塑性和新记忆形成之间提供了长期以来寻求的联系。

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