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内嗅周连接的突触激活模式。

Synaptic activation patterns of the perirhinal-entorhinal inter-connections.

作者信息

de Villers-Sidani E, Tahvildari B, Alonso A

机构信息

Department of Neurology and Neurosurgery, Montreal Neurological Institute, McGill University, 3801 University Street, H3A 2B4, Montréal, Québec, Canada.

出版信息

Neuroscience. 2004;129(1):255-65. doi: 10.1016/j.neuroscience.2004.07.044.

Abstract

Ample neuropsychological evidence supports the role of rhinal cortices in memory. The perirhinal cortex (PRC) represents one of the main conduits for the bi-directional flow of information between the entorhinal-hippocampal network and the cortical mantle, a process essential in memory formation. However, despite anatomical evidence for a robust reciprocal connectivity between the perirhinal and entorhinal cortices, neurophysiological understanding of this circuitry is lacking. We now present the results of a series of electrophysiological experiments in rats that demonstrate robust synaptic activation patterns of the perirhinal-entorhinal inter-connections. First, using silicon multi-electrode arrays placed under visual guidance in vivo we performed current source density (CSD) analysis of lateral entorhinal cortex (LEC) responses to PRC stimulation, which demonstrated a current sink in layers II-III of the LEC with a latency consistent with monosynaptic activation. To further substantiate and extend this conclusion, we developed a PRC-LEC slice preparation where CSD analysis also revealed a current sink in superficial LEC layers in response to PRC stimulation. Importantly, intracellular recording of superficial LEC layer neurons confirmed that they receive a major monosynaptic excitatory input from the PRC. Finally, CSD analysis of the LEC to PRC projection in vivo also allowed us to document robust feedback synaptic activation of PRC neurons to deep LEC layer activation. We conclude that a clear bidirectional pattern of synaptic interactions exists between the PRC and LEC that would support a dynamic flow of information subserving memory function in the temporal lobe.

摘要

大量神经心理学证据支持嗅周皮质在记忆中的作用。嗅周皮质(PRC)是内嗅-海马网络与皮质表层之间双向信息流的主要通道之一,这一过程在记忆形成中至关重要。然而,尽管有解剖学证据表明嗅周皮质和内嗅皮质之间存在强大的相互连接,但对该神经回路的神经生理学理解仍很缺乏。我们现在展示了一系列在大鼠身上进行的电生理实验结果,这些结果证明了嗅周-内嗅相互连接具有强大的突触激活模式。首先,我们在视觉引导下将硅多电极阵列植入大鼠体内,对外侧内嗅皮质(LEC)对PRC刺激的反应进行电流源密度(CSD)分析,结果显示LEC的II-III层出现电流汇集,其潜伏期与单突触激活一致。为了进一步证实和扩展这一结论,我们开发了一种PRC-LEC脑片标本,CSD分析同样显示,在PRC刺激下,LEC浅层出现电流汇集。重要的是,对LEC浅层神经元的细胞内记录证实,它们接受来自PRC的主要单突触兴奋性输入。最后,对体内LEC至PRC投射的CSD分析还使我们能够记录到PRC神经元对LEC深层激活的强大反馈突触激活。我们得出结论,PRC和LEC之间存在清晰的双向突触相互作用模式,这将支持颞叶中有助于记忆功能的动态信息流。

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