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猕猴视觉皮层V2区中丘脑枕复合体与细胞色素氧化酶界定区之间的联系。

Connections between the pulvinar complex and cytochrome oxidase-defined compartments in visual area V2 of macaque monkey.

作者信息

Levitt J B, Yoshioka T, Lund J S

机构信息

Department of Visual Science, University of London, UK.

出版信息

Exp Brain Res. 1995;104(3):419-30. doi: 10.1007/BF00231977.

Abstract

We examined the distribution of pulvinar afferents to visual area V2 of macaque monkey cerebral cortex in relation to the distribution of the metabolic enzyme cytochrome oxidase (CO). V2 contains three sets of stripelike subregions that are marked by differential staining for CO, and which have different corticocortical connections. The pulvinar provides the major subcortical input to V2, and this input is known to be patchy. We were interested to determine how the pattern of pulvinar afferents relates to the layout of the three stripelike compartments that characterize V2. We made large injections of WGA-HRP into the pulvinar (labelling both the inferior and lateral divisions) and mapped the resulting orthograde terminal and retrograde cell label within V2. We observed pulvinar terminal label mainly in lower layer 3 (at the layer 4 border), with light label in layer 1 as well; terminal label in layers 3-4 was distributed in discrete patches with faint bridges of light label between. Comparison with adjacent sections stained for CO or Cat-301 showed that pulvinar terminal zones aligned precisely with regions of increased CO staining, and targeted both "thick" (Cat-301+) and "thin" CO-rich stripes, avoiding the pale stripes (which aligned with the faint bridges of terminal label). Retrogradely labelled cells were found in layers 5A and 6, but the bulk of the feedback to pulvinar arose from layer 6 rather than layer 5 (unlike V1, where feedback to pulvinar arises primarily from layer 5B). These results show that the increased CO staining in certain subregions of V2 is closely correlated with the presence of thalamic terminals from the pulvinar. Although we cannot rule out the possibility that different sets of pulvinar neurons project to different CO compartments in V2, the presence of a prominent thalamic input shared by the "thick" and "thin" CO stripes (which receive different V1 afferents and make different feedforward projections to other visual cortical areas) could underlie the preferential intrinsic interconnections shown to exist between these V2 subregions and suggests another potential source of integration between the two cortical visual streams.

摘要

我们研究了猕猴大脑皮层视觉区V2的丘脑枕传入纤维分布与代谢酶细胞色素氧化酶(CO)分布的关系。V2包含三组条纹状亚区,这些亚区通过CO的差异染色标记,并且具有不同的皮质-皮质连接。丘脑枕为V2提供主要的皮质下输入,并且已知这种输入是斑片状的。我们感兴趣的是确定丘脑枕传入纤维的模式如何与表征V2的三个条纹状区室的布局相关。我们将大量WGA-HRP注入丘脑枕(标记下侧和外侧部分),并绘制V2内由此产生的顺行终末和逆行细胞标记。我们观察到丘脑枕终末标记主要位于第3层下部(在第4层边界处),第1层也有少量标记;第3-4层的终末标记分布在离散的斑块中,之间有淡淡的标记桥。与用CO或Cat-301染色的相邻切片比较表明,丘脑枕终末区与CO染色增加的区域精确对齐,并靶向“厚”(Cat-301+)和“薄”的富含CO的条纹,避开淡条纹(其与终末标记的淡桥对齐)。在第5A层和第6层发现了逆行标记的细胞,但对丘脑枕的大部分反馈来自第6层而不是第5层(与V1不同,V1对丘脑枕的反馈主要来自第5B层)。这些结果表明,V2某些亚区中CO染色的增加与来自丘脑枕的丘脑终末的存在密切相关。虽然我们不能排除不同组的丘脑枕神经元投射到V2中不同CO区室的可能性,但“厚”和“薄”CO条纹(它们接受不同的V1传入纤维并对其他视觉皮层区域进行不同的前馈投射)共享的突出丘脑输入的存在可能是这些V2亚区之间存在的优先内在连接的基础,并暗示了两个皮层视觉流之间另一个潜在的整合来源。

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