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鼠桶状皮层投射神经元的单轴突水平形态分析。

Single-axon level morphological analysis of corticofugal projection neurons in mouse barrel field.

机构信息

Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics-Huazhong University of Science and Technology, Wuhan, 430074, China.

Key Laboratory for Biomedical Photonics of Ministry of Education, Department of Biomedical Engineering, Huazhong University of Science and Technology, Wuhan, 430074, China.

出版信息

Sci Rep. 2017 Jun 6;7(1):2846. doi: 10.1038/s41598-017-03000-8.

Abstract

Corticofugal projection neurons are key components in connecting the neocortex and the subcortical regions. In the barrel field, these neurons have various projection targets and play crucial roles in the rodent whisker sensorimotor system. However, the projection features of corticofugal projection neurons at the single-axon level are far from comprehensive elucidation. Based on a brain-wide positioning system with high-resolution imaging for Thy1-GFP M-line mice brains, we reconstructed and analyzed more than one hundred corticofugal projection neurons in both layer V and VI of barrel cortex. The dual-color imaging made it possible to locate the neurons' somata, trace their corresponding dendrites and axons and then distinguish the neurons as L5 type I/II or L6 type. The corticofugal projection pattern showed significant diversity across individual neurons. Usually, the L5 type I neurons have greater multi-region projection potential. The thalamus and the midbrain are the most frequent projection targets among the investigated multidirectional projection neurons, and the hypothalamus is particularly unique in that it only appears in multidirectional projection situations. Statistically, the average branch length of apical dendrites in multi-region projection groups is larger than that of single-region projection groups. This study demonstrated a single-axon-level analysis for barrel corticofugal projection neurons, which could provide a micro-anatomical basis for interpreting whisker sensorimotor circuit function.

摘要

皮质传出神经元是连接大脑新皮质和皮质下区域的关键组成部分。在桶状皮层中,这些神经元有各种投射目标,在啮齿动物胡须感觉运动系统中发挥着关键作用。然而,皮质传出投射神经元在单轴突水平的投射特征远未得到全面阐明。基于一种针对 Thy1-GFP M 线小鼠大脑的高分辨率成像的全脑定位系统,我们重建和分析了超过一百个来自桶状皮层的第 V 层和第 VI 层的皮质传出投射神经元。双色成像使得定位神经元胞体、追踪其相应的树突和轴突以及区分 L5 型 I/II 或 L6 型成为可能。单个神经元的皮质传出投射模式表现出显著的多样性。通常,L5 型 I 神经元具有更大的多区域投射潜力。丘脑和中脑是被研究的多向投射神经元中最常见的投射靶点,而下丘脑则特别独特,因为它只出现在多向投射情况下。统计分析表明,多区域投射组的树突分支长度的平均值大于单区域投射组。本研究对桶状皮层传出投射神经元进行了单轴突水平的分析,为解释胡须感觉运动回路功能提供了微观解剖学基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89b8/5460143/5b133193969f/41598_2017_3000_Fig1_HTML.jpg

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