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猫视觉皮层中兴奋性和抑制性侧向连接群体之间的方向特异性关系。

Orientation-specific relationship between populations of excitatory and inhibitory lateral connections in the visual cortex of the cat.

作者信息

Kisvárday Z F, Tóth E, Rausch M, Eysel U T

机构信息

Abteilung für Neurophysiologie, Medizinische Fakultät, Ruhr-Universität Bochum, Germany.

出版信息

Cereb Cortex. 1997 Oct-Nov;7(7):605-18. doi: 10.1093/cercor/7.7.605.

Abstract

The topography of lateral excitatory and lateral inhibitory connections was studied in relation to orientation maps obtained in areas 17 and 18. Small iontophoretic injections of biocytin were delivered to the superficial layers in regions where orientation selectivity had been mapped using electrode recordings of single- and multi-unit activity from various cortical depths. Biocytin revealed extensive patchy axonal projections of up to 3.5 mm in both areas while labelled somata occurred chiefly at the injection site, indicating that the labelling was primarily anterograde. Two types of boutons could be clearly distinguished: (i) putative excitatory boutons either en passant or having a short stalk and (ii) inhibitory boutons which were invariably of the basket-type. Three-dimensional reconstructions of all labelled boutons showed that the excitatory and the inhibitory networks had a distinctively different relationship to orientation maps. The overall distribution of connections showed that 53-59% of excitatory and 46-48% of inhibitory connections were at iso-orientation, +/-30 degrees; oblique-orientation, +/-(30-60) degrees, was shown by 30% of excitatory and 28-39% of inhibitory connections; cross-orientation was shown by 11-17% of excitatory and 15-24% of inhibitory connections. Although excitatory patches occupied mainly iso-orientation locations, interpatch regions representing chiefly non-iso-orientations (oblique + cross orientation) were also innervated. There was considerable overlap between the excitatory and inhibitory network. Nonetheless, inhibitory connections were more common than excitatory connections with non-iso-orientation locations. There was no significant difference between the orientation topography of area 17 and area 18 projections. The results suggest that in general the lateral connectivity system is not orientation specific, but shows a moderate iso-orientation preference for excitation and an even weaker iso-orientation preference for inhibition. The broad orientation spectrum of lateral connections could provide the basis for mechanisms that requiring different orientations, as for example in detecting orientation discontinuities.

摘要

研究了与17区和18区获得的方向图相关的外侧兴奋性和外侧抑制性连接的拓扑结构。将生物胞素通过微量离子电泳小剂量注射到使用来自不同皮层深度的单单位和多单位活动的电极记录绘制了方向选择性的区域的表层。生物胞素显示,在这两个区域中,轴突广泛呈斑片状投射,长度可达3.5毫米,而标记的胞体主要出现在注射部位,表明标记主要是顺行性的。可以清楚地区分两种类型的终扣:(i)要么是经过的假定兴奋性终扣,要么是有短柄的兴奋性终扣,以及(ii)总是篮状类型的抑制性终扣。对所有标记终扣的三维重建表明,兴奋性和抑制性网络与方向图具有明显不同的关系。连接的总体分布表明,53 - 59%的兴奋性连接和46 - 48%的抑制性连接处于等方向,±30度;30%的兴奋性连接和28 - 39%的抑制性连接呈斜向,±(30 - 60)度;11 - 17%的兴奋性连接和15 - 24%的抑制性连接呈交叉方向。尽管兴奋性斑块主要占据等方向位置,但主要代表非等方向(斜向 + 交叉方向)的斑块间区域也有神经支配。兴奋性和抑制性网络之间有相当大的重叠。尽管如此,抑制性连接在非等方向位置比兴奋性连接更常见。17区和18区投射的方向拓扑结构之间没有显著差异。结果表明,一般来说,外侧连接系统不是方向特异性的,但对兴奋表现出适度的等方向偏好,对抑制表现出更弱的等方向偏好。外侧连接的广泛方向谱可以为需要不同方向的机制提供基础,例如检测方向不连续性。

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