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猫视觉皮层中长距离水平连接的功能特异性:一项互相关研究。

Functional specificity of a long-range horizontal connection in cat visual cortex: a cross-correlation study.

作者信息

Schwarz C, Bolz J

机构信息

Friedrich-Miescher-Labor der Max-Planck-Gesellschaft, Tübingen, Germany.

出版信息

J Neurosci. 1991 Oct;11(10):2995-3007. doi: 10.1523/JNEUROSCI.11-10-02995.1991.

Abstract

Anatomical investigations of the visual cortex revealed a regular set of interlaminar connections and long-range horizontal connections. An important component of the intrinsic cortical circuit is the projection from layer 5 to layer 6 over long horizontal distances. Previous work has shown that when layer 5 is locally inactivated, layer 6 cells lose their response in a segment of their receptive fields corresponding to the blocked area in layer 5. It has therefore been proposed that the long receptive fields characteristic of layer 6 cells might be generated by concatenating layer 5 cells with similar orientation preferences. In the present study, we used cross-correlation analysis to examine both source and target cells of the interlaminar connection from layer 5 to layer 6. We found correlated firing between cells separated by up to 4.2 mm, the longest horizontal distance studied. The occurrence of correlated firing depended on the functional properties and on the topographic position of the cells in layer 5 and layer 6. Interactions were only observed if the cells had matching orientation tuning and similar eye preference and if the layer 5 cells lay within the summation area of the layer 6 cells. Both simple and complex cells in layer 6 fired in synchrony with layer 5 cells. In layer 5, mainly standard complex cells, but very few special complex cells, participated in correlated firing with layer 6 cells. These results suggest that cells in layer 6 receive their input from cooriented, coaxially aligned standard complex cells in layer 5. This topographic arrangement and the length summation properties of standard complex cells in layer 5 are well suited to generate long receptive fields in layer 6. Thus, our experiments provide evidence for the functional specialization of a particular component of cortical circuitry.

摘要

对视皮层的解剖学研究揭示了一组规则的层间连接和长程水平连接。内在皮质回路的一个重要组成部分是从第5层到第6层的长水平距离投射。先前的研究表明,当第5层局部失活时,第6层细胞在其感受野中对应于第5层中被阻断区域的部分会失去反应。因此,有人提出,第6层细胞特有的长感受野可能是由具有相似方向偏好的第5层细胞串联产生的。在本研究中,我们使用互相关分析来检查从第5层到第6层的层间连接的源细胞和靶细胞。我们发现,相隔长达4.2毫米(所研究的最长水平距离)的细胞之间存在相关放电。相关放电的发生取决于细胞的功能特性以及它们在第5层和第6层中的地形位置。只有当细胞具有匹配的方向调谐和相似的眼优势,并且第5层细胞位于第6层细胞的总和区域内时,才会观察到相互作用。第6层中的简单细胞和复杂细胞都与第5层细胞同步放电。在第5层中,主要是标准复杂细胞,但只有极少数特殊复杂细胞参与了与第6层细胞的相关放电。这些结果表明,第6层中的细胞从第5层中具有共方向、同轴排列的标准复杂细胞接收输入。第5层中标准复杂细胞的这种地形排列和长度总和特性非常适合在第6层中产生长感受野。因此,我们的实验为皮质回路特定组成部分的功能特化提供了证据。

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