原猴灵长类眼纹状皮层优势结构域和细胞色素氧化酶斑点的模式

J. Olavarria, H. Qi, V. Casagrande, J. Kaas
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引用次数: 0

摘要

以往对加拉戈斯V1区眼优势柱(ODCs)的解剖研究并未对V1区不同皮质层眼特异性输入的整体切向排列进行研究。同样,使用光学成像的固有信号的研究并没有提供关于第4层和更深层的odc模式的信息,因为这种技术主要检测浅层神经元的活动模式。在本研究中,我们展示了眼内注射跨神经元示踪剂WGA-HRP后皮层层ODCs的模式,并将这些模式与扁平皮层切向切片上的CO斑点阵列联系起来。在颗粒上V1的切片中,WGA-HRP标记显示为一系列不同的斑块,很可能代表先前研究显示的斑块状细胞输入到第3层。在第4层,WGA-HRP标记形成相互连接的条带,其整体排列类似于猫odc的模式。HRP和CO标记模式的比较显示,在粒上层,几乎所有的CO斑点都与WGA-HRP标记的斑块重叠。由于只有一只眼睛注射了WGA-HRP,这些数据表明CO团接受来自两只眼睛的输入。此外,在第4层中,CO blob不一定以odc为中心,而是经常跨越左列和右列之间的边界。我们的研究结果为眼特异性输入在galago V1皮层层间的分布和相关性提供了新的信息,并支持了在猕猴中看到的ODCs和CO斑点之间的对齐并不是灵长类动物V1的普遍特征的观点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Patterns of Ocular Dominance Domains and Cytochrome Oxidase Blobs in Striate Cortex of The Prosimian Primate Galago
Previous anatomical studies of ocular dominance columns (ODCs) in V1 of galagos did not investigate the overall tangential arrangement of eye-specific input in different cortical layers of V1. Likewise, studies using optical imaging of intrinsic signals have not provided information on the pattern of ODCs in layer 4 and deeper layers because this technique detects mostly activity patterns of neurons in the superficial layers. Here we demonstrate the patterns of ODCs across the cortical layers following intraocular injections of the transneuronal tracer WGA-HRP, and correlate these patterns with the array of CO blobs in tangential sections of the flattened cortex. In sections through supragranular V1, the WGA-HRP labeling appears as an array of distinct patches that most likely represent the patchy koniocellular input to layer 3 shown by previous studies. In layer 4, WGA-HRP labeling forms interconnected bands whose overall arrangement resembles the pattern of ODCs in cats. Comparison of the HRP and CO labeling patterns revealed that in supragranular layers, virtually all CO blobs overlap with WGA-HRP labeled patches. Since only one eye was injected with WGA-HRP, these data suggest that CO blobs receive input from both eyes. Moreover, in layer 4, CO blobs are not necessarily centered on ODCs, but often span the borders between left and right columns. Our results provide new information on the distribution and correlation of eye specific input across cortical layers in galago V1, and support the view that the alignment between ODCs and CO blobs seen in macaques is not a general feature of primate V1.
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