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锥体神经元的形态学、电生理学和功能输入连接性是初级体感皮层中真正的第Va层的特征。

Morphology, electrophysiology and functional input connectivity of pyramidal neurons characterizes a genuine layer va in the primary somatosensory cortex.

作者信息

Schubert D, Kötter R, Luhmann H J, Staiger J F

机构信息

C. & O. Vogt Institute for Brain Research, University of Düsseldorf, POB 101007, D-40001 Düsseldorf, Germany.

出版信息

Cereb Cortex. 2006 Feb;16(2):223-36. doi: 10.1093/cercor/bhi100. Epub 2005 May 4.

Abstract

Cortical layer V classically has been subdivided into sublayers Va and Vb on cytoarchitectonic grounds. In the analysis of cortical microcircuits, however, layer Va has largely been ignored. The purpose of this study was to investigate pyramidal neurons of layer Va in view of their potential role in integrating information from lemniscal and paralemniscal sources. For this we combined detailed electrophysiological and morphological characterization with mapping of intracortical functional connectivity by caged glutamate photolysis in layer Va of rat barrel cortex in vitro. Electrophysiological characterization revealed pyramidal cells of the regular spiking as well as the intrinsically burst firing type. However, all layer Va pyramidal neurons displayed uniform morphological properties and comparable functional input connectivity patterns. They received most of their excitatory and inhibitory inputs from intracolumnar sources, especially from layer Va itself, but also from layer IV. Those two layers were also the main origin for transcolumnar excitatory inputs. Layer Va pyramidal neurons thus may predominantly integrate information intralaminarly as well as from layer IV. The functional connectivity maps clearly distinguish layer Va from layer Vb pyramidal cells, and suggest that layer Va plays a unique role in intracortical processing of sensory information.

摘要

传统上,根据细胞结构,皮质第五层被细分为第五层a亚层和第五层b亚层。然而,在皮质微电路分析中,第五层a亚层在很大程度上被忽视了。本研究的目的是鉴于第五层a亚层锥体细胞在整合来自lemniscal和paralemniscal来源信息方面的潜在作用,对其进行研究。为此,我们在体外大鼠桶状皮质第五层a亚层中,将详细的电生理和形态学特征与通过笼状谷氨酸光解进行的皮质内功能连接映射相结合。电生理特征显示了规则放电以及内在爆发式放电类型的锥体细胞。然而,所有第五层a亚层的锥体细胞都表现出一致的形态学特性和相当的功能性输入连接模式。它们的大部分兴奋性和抑制性输入来自柱内来源,特别是来自第五层a亚层本身,但也来自第四层。这两层也是跨柱兴奋性输入的主要来源。因此,第五层a亚层的锥体细胞可能主要在层内以及从第四层整合信息。功能连接图谱清楚地将第五层a亚层与第五层b亚层的锥体细胞区分开来,并表明第五层a亚层在皮质内感觉信息处理中发挥独特作用。

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