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大鼠视觉皮层第5层的锥体神经元。I. 细胞形态、内在电生理特性和轴突靶点之间的相关性。

Pyramidal neurons in layer 5 of the rat visual cortex. I. Correlation among cell morphology, intrinsic electrophysiological properties, and axon targets.

作者信息

Kasper E M, Larkman A U, Lübke J, Blakemore C

机构信息

University Laboratory of Physiology, Oxford University, United Kingdom.

出版信息

J Comp Neurol. 1994 Jan 22;339(4):459-74. doi: 10.1002/cne.903390402.

Abstract

Previous work has established two structure/function correlations for pyramidal neurons of layer 5 of the primary visual cortex of the rat. First, cells projecting to the superior colliculus have thick apical dendrites with a florid terminal arborization in layer 1, whereas those projecting to the visual cortex of the opposite hemisphere have thinner apical dendrites that terminate below layer 1, without a terminal tuft (e.g., Hallman et al.: J Comp Neurol 272:149, '90). Second, intracellular recording combined with dye injection has revealed two classes of cells: the first has a thick, tufted apical dendrite and fires a distinctive initial burst of two or more impulses, of virtually fixed, short interspike interval, in response to current injection; and the other, with a slender apical dendrite lacking a terminal tuft, tends to have a longer membrane time constant and higher input resistance, and does not fire characteristic bursts (e.g., Larkman and Mason: J Neurosci 10:1407, '90). The present study combined intracellular recording in isolated slices of rat visual cortex and injection of carboxyfluorescein, to reveal soma-dendritic morphology, with prior injection of rhodamine-conjugated microspheres into the superior colliculus or contralateral visual cortex to label neurons according to the target of their axons. This permitted a complete correlation of morphology, intrinsic electrophysiological properties, and identity of the projection target for individual pyramidal cells. Neurons retrogradely labeled from the opposite visual cortex were found in all layers except layer 1 while those labeled from the superior colliculus lay exclusively in layer 5. Within layer 5 interhemispheric cells were more concentrated in the lower half of the layer but extensively overlapped the distribution of corticotectal cells. Every cell studied that projected to the superior colliculus was of the bursting type and had a thick apical dendrite with a terminal tuft. Every cell in this study projecting to the opposite visual cortex was a "nonburster" and had a slender apical dendrite with fewer oblique branches that ended without a terminal tuft, usually in the upper part of layer 2/3. Interhemispheric cells also had rounder, less conical somata and generally had fewer basal dendrites than corticotectal neurons. Many cells with the physiological and morphological characteristics of interhemispheric cells were not back-labeled from the opposite visual cortex, implying that pyramidal cells of this type can have other projection targets (e.g., other cortical sites in the ipsilateral hemisphere).(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

以往的研究已经确立了大鼠初级视觉皮层第5层锥体神经元的两种结构/功能相关性。第一,投射至上丘的细胞具有粗大的顶树突,在第1层有丰富的终末分支,而投射至对侧半球视觉皮层的细胞顶树突较细,在第1层下方终止,没有终末簇(例如,哈尔曼等人:《比较神经学杂志》272:149,1990年)。第二,细胞内记录结合染料注射揭示了两类细胞:第一类具有粗大的、有簇状顶树突,对电流注射有独特的两个或更多脉冲的初始爆发,脉冲间间隔几乎固定且短;另一类顶树突细长,没有终末簇,往往具有更长的膜时间常数和更高的输入电阻,且不产生特征性爆发(例如,拉克曼和梅森:《神经科学杂志》10:1407,1990年)。本研究将大鼠视觉皮层离体切片中的细胞内记录与羧基荧光素注射相结合,以揭示胞体-树突形态,同时事先将罗丹明偶联微球注射到上丘或对侧视觉皮层,根据轴突的靶标标记神经元。这使得能够完整地关联单个锥体细胞的形态、内在电生理特性和投射靶标。从对侧视觉皮层逆行标记的神经元在除第1层外的所有层均有发现,而从上丘标记的神经元仅位于第5层。在第5层内,半球间细胞在下半层更为集中,但与皮质-上丘细胞的分布有广泛重叠。每一个投射至上丘的被研究细胞都是爆发型的,且有一个带有终末簇的粗大顶树突。本研究中每一个投射至对侧视觉皮层的细胞都是“非爆发型”的,有一个细长的顶树突,斜向分支较少,在没有终末簇的情况下终止,通常在第2/3层上部。半球间细胞的胞体也更圆,锥度更小,且基底树突通常比皮质-上丘神经元少。许多具有半球间细胞生理和形态特征的细胞并未从对侧视觉皮层反向标记,这意味着这种类型的锥体细胞可能有其他投射靶标(例如,同侧半球的其他皮质位点)。(摘要截取自400词)

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