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躯体感觉皮层第 6 层 GABA 能中间神经元对局部、跨层和跨柱抑制的解剖学相关性。

Anatomical Correlates of Local, Translaminar, and Transcolumnar Inhibition by Layer 6 GABAergic Interneurons in Somatosensory Cortex.

机构信息

Digital Neuroanatomy, Max Planck Florida Institute for Neuroscience, Jupiter, FL, USA.

Cellular Neurosurgery Research Group, Department of Neurosurgery, Technical University of Munich, Munich, Germany.

出版信息

Cereb Cortex. 2018 Aug 1;28(8):2763-2774. doi: 10.1093/cercor/bhx156.

DOI:10.1093/cercor/bhx156
PMID:28981591
Abstract

In the vibrissal area of rodent somatosensory cortex, information on whisker stimulation is processed by neuronal networks in a corresponding cortical column. To understand how sensory stimuli are represented in a column, it is essential to identify cell types constituting these networks. Layer 6 (L6) comprises 25% of all neurons in a column. In rats, 430 of these are inhibitory interneurons (INs). Little is known about the axon projection of L6 INs with reference to columnar and laminar organization. We quantified axonal projections of L6 INs (n = 68) with reference to columns and layers in somatosensory cortex of rats. We found distinct projection types differentially targeting layers of a cortical column. The majority of L6 INs did not show a column-specific innervation, densely projecting to neighboring columns as well as the home column. However, a small fraction targeted granular and supragranular layers, where axon projections were confined to the home column. We also quantified putative innervation of pyramidal cells as a functional correlate of axonal distribution. Electrophysiological properties were not correlated to axon projection. The quantitative data on axonal projections and electrophysiological properties of L6 INs can guide future studies investigating cortical processing of sensory information at the single cell level.

摘要

在啮齿动物体感皮层的触须区域,神经元网络以相应的皮层柱处理关于触须刺激的信息。为了了解感觉刺激在一个柱中是如何被表示的,识别构成这些网络的细胞类型是至关重要的。第 6 层(L6)占柱中所有神经元的 25%。在大鼠中,这些神经元中有 430 个是抑制性中间神经元(INs)。关于 L6 INs 的轴突投射与柱和层组织的关系,人们知之甚少。我们参照大鼠体感皮层的柱和层,量化了 L6 INs(n=68)的轴突投射。我们发现不同的投射类型可以有区别地靶向皮层柱的层。大多数 L6 INs 没有表现出特定于柱的神经支配,而是密集地投射到相邻的柱以及自身所在的柱。然而,一小部分 INs 靶向颗粒层和超颗粒层,其轴突投射仅限于自身所在的柱。我们还量化了作为轴突分布功能相关的锥体神经元的假定神经支配。电生理特性与轴突投射没有相关性。L6 INs 的轴突投射和电生理特性的定量数据可以指导未来在单细胞水平上研究皮质对感觉信息的处理。

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