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Patchy distributions of myelin and vesicular glutamate transporter 2 align with cytochrome oxidase blobs and interblobs in the superficial layers of the primary visual cortex

机译:髓鞘和囊状谷氨酸转运蛋白2的斑片状分布与初级视觉皮层表层的细胞色素氧化酶斑点和斑点之间对齐

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摘要

Blobs are a modular component of the primary visual cortex (area 17) of all primates, but not of other mammals closely related to primates. They are characterized as an even distribution of patches, puffs, or blobs of dense cytochrome oxidase (CO) expression in layer III of area 17, and are now known to differ from surrounding, nonblob cortex in thalamic, intrinsic, and extrastriate connections. Previous studies have also recognized a blob-like pattern of myelin-dense patches in layer III of area 17 of primates, and more recently the vesicular glutamate transporter (VGLUT)-2 isoform of the VGLUT family has been found to selectively distribute to layer III patches in a similar blob-like pattern. Here, we sought to determine if the blob-like patterns all identify the same modular structures in area 17 of primates by staining alternate brain sections cut parallel to the surface of area 17 of a prosimian primate (Otolemur garnettii) for CO, myelin, and VGLUT2. By aligning the sections from the three preparations, we provide clear evidence that the three preparations all identify the same modular blob structures. The results provide a further understanding of the functional nature of the blobs by demonstrating that their higher level of CO activity is related to thalamic inputs from the lateral geniculate nucleus that use VGLUT2 as their main glutamate transporter, and via myelinated axons.
机译:斑点是所有灵长类动物的初级视觉皮层(区域17)的模块化组件,但与灵长类动物密切相关的其他哺乳动物则不是。它们的特征是在区域17的第III层中均匀分布着密集的细胞色素氧化酶(CO)表达的斑块,粉扑或斑点,并且现在已知其在丘脑,内在和外条纹连接方面与周围的非blob皮质不同。先前的研究还认识到灵长类动物区域17的III层中髓鞘密集斑块的斑点状模式,最近发现VGLUT家族的囊泡谷氨酸转运蛋白(VGLUT)-2亚型可选择性地分布到III层。以类似斑点状的图案进行修补。在这里,我们试图通过染色平行于Prosimian灵长类动物(Otolemur garnettii)17区的表面切开的交替大脑切片,来确定斑状图案是否在灵长类动物的17区中都识别出相同的模块化结构,从而确定CO,髓鞘和VGLUT2。通过对齐这三个准备工作的各个部分,我们提供了明确的证据,证明这三个准备工作都标识相同的模块化斑点结构。通过证明斑点的较高水平的CO活性与使用VGLUT2作为主要谷氨酸转运蛋白的外侧膝状核以及通过有髓轴突的丘脑输入有关,这些结果可进一步了解斑点的功能性质。

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