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内嗅皮层层间连接的电生理特征:海马-内嗅皮层系统中折返的关键环节

Electrophysiological characterization of interlaminar entorhinal connections: an essential link for re-entrance in the hippocampal-entorhinal system.

作者信息

Kloosterman Fabian, Van Haeften Theo, Witter Menno P, Lopes Da Silva Fernando H

机构信息

Swammerdam Institute of Life Sciences, Section Neurobiology, University of Amsterdam, Graduate School of Neurosciences Amsterdam, Amsterdam, The Netherlands.

出版信息

Eur J Neurosci. 2003 Dec;18(11):3037-52. doi: 10.1111/j.1460-9568.2003.03046.x.

Abstract

The hippocampal formation communicates with the neocortex mainly through the adjacent entorhinal cortex. Neurons projecting to the hippocampal formation are found in the superficial layers of the entorhinal cortex and are largely segregated from the neurons receiving hippocampal output, which are located in deep entorhinal layers. We studied the communication between deep and superficial entorhinal layers in the anaesthetized rat using field potential recordings, current source density analysis and single unit measurements. We found that subiculum stimulation was able to excite entorhinal neurons in deep layers. This response was followed by current sinks in superficial layers. Both responses were subject to frequency dependent facilitation, but not depression. Selective blockade of deep layer responses also abolished subsequent superficial layer responses. This clearly demonstrates a functional deep-to-superficial layer communication in the entorhinal cortex, which can be triggered by hippocampal output. This pathway may provide a means by which processed hippocampal output is integrated or compared with new incoming information in superficial entorhinal layers, and it constitutes an important link in the process of re-entrance of activity in the hippocampal-entorhinal network, which may be important for consolidation of memories or retaining information for short periods.

摘要

海马结构主要通过相邻的内嗅皮质与新皮质进行交流。投射至海马结构的神经元位于内嗅皮质的浅层,且在很大程度上与接收海马输出的神经元相分离,后者位于内嗅皮质深层。我们使用场电位记录、电流源密度分析和单单位测量方法,研究了麻醉大鼠内嗅皮质深层与浅层之间的交流。我们发现,刺激海马下脚能够兴奋深层的内嗅皮质神经元。此反应之后浅层出现电流汇。两种反应均表现出频率依赖性易化,但无抑制现象。选择性阻断深层反应也会消除随后的浅层反应。这清楚地证明了内嗅皮质中存在从深层到浅层的功能性交流,其可由海马输出触发。该通路可能提供了一种方式,通过此方式经过处理的海马输出在内嗅皮质浅层与新传入的信息进行整合或比较,并且它构成了海马 - 内嗅网络活动再进入过程中的一个重要环节,这对于记忆巩固或短期内保留信息可能很重要。

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