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Relationship between intrinsic connections and functional architecture revealed by optical imaging and in vivo targeted biocytin injections in primate striate cortex.通过光学成像和在灵长类动物纹状皮层中进行体内靶向生物素注射揭示的内在连接与功能结构之间的关系。
Proc Natl Acad Sci U S A. 1993 Nov 15;90(22):10469-73. doi: 10.1073/pnas.90.22.10469.

树鼩纹状皮层的方向选择性与水平连接的排列

Orientation selectivity and the arrangement of horizontal connections in tree shrew striate cortex.

作者信息

Bosking W H, Zhang Y, Schofield B, Fitzpatrick D

机构信息

Department of Neurobiology, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

J Neurosci. 1997 Mar 15;17(6):2112-27. doi: 10.1523/JNEUROSCI.17-06-02112.1997.

DOI:10.1523/JNEUROSCI.17-06-02112.1997
PMID:9045738
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6793759/
Abstract

Horizontal connections, formed primarily by the axon collaterals of pyramidal neurons in layer 2/3 of visual cortex, extend for millimeters parallel to the cortical surface and form patchy terminations. Previous studies have provided evidence that the patches formed by horizontal connections exhibit modular specificity, preferentially linking columns of neurons with similar response characteristics, such as preferred orientation. The issue of how these connections are distributed with respect to the topographic map of visual space, however, has not been resolved. Here we combine optical imaging of intrinsic signals with small extracellular injections of biocytin to assess quantitatively the specificity of horizontal connections with respect to both the map of orientation preference and the map of visual space in tree shrew V1. Our results indicate that horizontal connections outside a radius of 500 microm from the injection site exhibit not only modular specificity, but also specificity for axis of projection. Labeled axons extend for longer distances, and give off more terminal boutons, along an axis in the map of visual space that corresponds to the preferred orientation of the injection site. Inside of 500 microm, the pattern of connections is much less specific, with boutons found along every axis, contacting sites with a wide range of preferred orientations. The system of long-range horizontal connections can be summarized as preferentially linking neurons with co-oriented, co-axially aligned receptive fields. These observations suggest specific ways that horizontal circuits contribute to the response properties of layer 2/3 neurons and to mechanisms of visual perception.

摘要

水平连接主要由视觉皮层第2/3层锥体细胞的轴突侧支形成,它们平行于皮层表面延伸数毫米,并形成斑片状终末。先前的研究已提供证据表明,由水平连接形成的斑块具有模块特异性,优先连接具有相似反应特性(如偏好方向)的神经元柱。然而,这些连接相对于视觉空间地形图是如何分布的问题尚未得到解决。在这里,我们将内在信号的光学成像与生物胞素的小细胞外注射相结合,以定量评估树鼩初级视皮层中水平连接相对于方向偏好图和视觉空间图的特异性。我们的结果表明,在距注射部位500微米半径之外的水平连接不仅表现出模块特异性,还表现出投射轴特异性。标记的轴突沿着视觉空间图中与注射部位偏好方向相对应的轴延伸更长的距离,并发出更多的终末 boutons。在500微米以内,连接模式的特异性要低得多,在各个轴上都发现了boutons,它们与具有广泛偏好方向的位点接触。长程水平连接系统可概括为优先连接具有共定向、共轴对齐感受野的神经元。这些观察结果提示了水平回路对第2/3层神经元反应特性和视觉感知机制做出贡献的具体方式。