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内嗅皮层的所有层都接收前下托和旁下托的输入。

All layers of medial entorhinal cortex receive presubicular and parasubicular inputs.

机构信息

Kavli Institute for Systems Neuroscience, Centre for the Biology of Memory, Norwegian University of Science and Technology, NTNU, NO-7491 Trondheim, Norway.

出版信息

J Neurosci. 2012 Dec 5;32(49):17620-31. doi: 10.1523/JNEUROSCI.3526-12.2012.

DOI:10.1523/JNEUROSCI.3526-12.2012
PMID:23223285
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6621674/
Abstract

The medial entorhinal cortex (MEC), presubiculum (PrS), and parasubiculum (PaS) are interconnected components of the hippocampal-parahippocampal spatial-representation system. Principal cells in all layers of MEC show signs of directional tuning, overt in head direction cells present in all layers except for layer II, and covert in grid cells, which are the major spatially modulated cell type in layer II. Directional information likely originates in the head direction-vestibular system and PrS and PaS are thought to provide this information to MEC. Efferents from PaS and PrS show a selective laminar terminal distribution in MEC superficial layers II and III, respectively. We hypothesized that this anatomically determined laminar distribution does not preclude monosynaptic interaction with neurons located in deeper layers of MEC in view of the extensive apical dendrites from deeper cells reaching layers II and III. This hypothesis was tested in the rat using tilted in vitro slices in which origins and terminations of PrS and PaS fibers were maintained, as assessed using anterograde anatomical tracing. Based on voltage-sensitive dye imaging, multipatch single-cell recordings, and scanning photostimulation of caged glutamate, we report first that principal neurons in all layers of MEC receive convergent monosynaptic inputs from PrS and PaS and second, that elicited responses show layer-specific decay times and frequency-dependent facilitation. These results indicate that regardless of their selective laminar terminal distribution, PrS and PaS inputs may monosynaptically convey directional information to principal neurons in all layers of MEC through synapses on their extensive dendritic arbors.

摘要

内侧内嗅皮层(MEC)、前下托(PrS)和副下托(PaS)是海马-旁海马空间表示系统的相互连接的组成部分。MEC 所有层的主细胞都表现出方向调谐的迹象,除了 II 层之外,所有层都存在明显的头方向细胞,而隐蔽的网格细胞是 II 层中主要的空间调制细胞类型。方向信息可能起源于头方向-前庭系统,而 PrS 和 PaS 被认为向 MEC 提供这些信息。PaS 和 PrS 的传出纤维在 MEC 浅层的 II 和 III 层分别具有选择性的层状末端分布。我们假设,鉴于较深细胞的广泛顶树突可到达 II 和 III 层,这种解剖学确定的层状分布不会排除与 MEC 深层神经元的单突触相互作用。我们在大鼠中使用倾斜的体外切片测试了这一假设,在这种切片中,PrS 和 PaS 纤维的起源和终点得到了维持,如通过顺行解剖追踪进行评估。基于电压敏感染料成像、多通道单细胞记录和笼状谷氨酸的扫描光刺激,我们首先报告 MEC 所有层的主神经元均从 PrS 和 PaS 接收会聚的单突触输入,其次,诱发的反应表现出特定于层的衰减时间和频率依赖性易化。这些结果表明,无论它们的选择性层状末端分布如何,PrS 和 PaS 输入都可能通过在其广泛的树突上的突触,以单突触方式将方向信息传递到 MEC 的所有层的主神经元。