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猫视觉皮层中眼优势带的整体模式。

The overall pattern of ocular dominance bands in cat visual cortex.

作者信息

Anderson P A, Olavarria J, Van Sluyters R C

机构信息

School of Optometry, University of California, Berkeley 94720.

出版信息

J Neurosci. 1988 Jun;8(6):2183-200. doi: 10.1523/JNEUROSCI.08-06-02183.1988.

Abstract

This study describes the overall arrangement of geniculocortical input representing the system of cortical ocular dominance bands in layer IV of striate cortex in the adult cat. The pattern of ocular dominance bands was revealed by transneuronal transport of the intraocularly injected tracer wheat germ agglutinin conjugated to horseradish peroxidase (WGA-HRP). Our data indicate that this procedure does not damage the retina and that it results in relatively uniform uptake and transport of the tracer. Using previously published techniques (Olavarria and Van Sluyters, 1983, 1985), both cortical hemispheres of each cat were unfolded, flattened and tangentially sectioned. Analysis of the WGA-HRP labeling patterns in these sections revealed a relatively continuous network of irregularly branching bands in layer IV of area 17 in both hemispheres. Because of a systematic difference in the level of interband labeling, ocular dominance bands appear less distinct in the hemisphere contralateral to the injected eye. There is also a tendency for interband labeling to be greater in cortical regions that represent the more peripheral aspects of the binocular portion of the visual field. The width of an individual ocular dominance band in the cat fluctuates, so that it appears to be made up of a series of uniformly sized, roughly circular beads of label. The diameter of these beads averages 667 micron, and preliminary counts indicate that there are 650-675 beads in each striate cortex. Contrary to earlier suggestions, in 4 out of 6 hemispheres analyzed quantitatively there was no tendency for ocular dominance bands to be oriented along a preferred axis in cat striate cortex, including an axis orthogonal to the border between areas 17 and 18. Ocular dominance bands in area 18 appear to be broader than those in area 17, and they seem to have a greater tendency to be oriented orthogonal to the 17/18 border than those in area 17. Compared with the ocular dominance pattern in monkey striate cortex, the ocular dominance pattern in the cat is much less regular. In general, cat ocular dominance bands appear to fluctuate more in width, to change direction more often, and to be less likely to run orthogonal to the 17/18 border. The greater regularity of the primate ocular dominance pattern may be related to differences in the way in which the visual hemifield is mapped onto the striate cortex in these 2 species.

摘要

本研究描述了成年猫纹状皮层IV层中代表皮层眼优势带系统的膝状皮层输入的整体排列。通过向眼内注射与辣根过氧化物酶结合的示踪剂小麦胚芽凝集素(WGA-HRP)的跨神经元运输,揭示了眼优势带的模式。我们的数据表明,该程序不会损害视网膜,并且它导致示踪剂的摄取和运输相对均匀。使用先前发表的技术(奥拉瓦里亚和范·斯勒特斯,1983年,1985年),对每只猫的两个皮层半球进行展开、扁平化并进行切线切片。对这些切片中WGA-HRP标记模式的分析揭示了两个半球17区IV层中一个相对连续的、不规则分支带的网络。由于带间标记水平的系统差异,在注射眼对侧的半球中,眼优势带显得不太明显。在代表视野双眼部分更周边区域的皮层区域,带间标记也有更大的趋势。猫中单个眼优势带的宽度波动,因此它似乎由一系列大小均匀、大致圆形的标记珠组成。这些珠的直径平均为667微米,初步计数表明每个纹状皮层中有650 - 675个珠。与早期的观点相反,在定量分析的6个半球中的4个中,猫纹状皮层中的眼优势带没有沿着首选轴排列的趋势,包括与17区和18区边界正交的轴。18区的眼优势带似乎比17区的更宽,并且它们似乎比17区的眼优势带更倾向于与17/18边界正交排列。与猴纹状皮层中的眼优势模式相比,猫中的眼优势模式不太规则。一般来说,猫的眼优势带在宽度上似乎波动更大,更频繁地改变方向,并且不太可能与17/18边界正交。灵长类动物眼优势模式更大的规则性可能与这两个物种中视觉半视野映射到纹状皮层的方式差异有关。

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