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带帽大鼠纹状皮层和纹外皮层的代谢活动:对侧和同侧眼输入。

Metabolic activity in striate and extrastriate cortex in the hooded rat: contralateral and ipsilateral eye input.

作者信息

Thurlow G A, Cooper R M

机构信息

Psychology Department, University of Calgary, Alberta, Canada.

出版信息

J Comp Neurol. 1988 Aug 22;274(4):595-607. doi: 10.1002/cne.902740408.

Abstract

The extent of changes in glucose metabolism resulting from ipsilateral and contralateral eye activity in the posterior cortex of the hooded rat was demonstrated by means of the C-14 2-deoxyglucose autoradiographic technique. By stimulating one eye with square wave gratings and eliminating efferent activation from the other by means of enucleation or intraocular TTX injection, differences between ipsilaterally and contralaterally based visual activity in the two hemispheres were maximized. Carbon-14 levels in layer IV of autoradiographs of coronal sections were measured and combined across sections to form right and left matrices of posterior cortex metabolic activity. A difference matrix, formed by subtracting the metabolic activity matrix of cortex contralateral to the stimulated eye from the ipsilateral "depressed" matrix, emphasized those parts of the visual cortex that received monocular visual input. The demarcation of striate cortex by means of cholinesterase stain and the examination of autoradiographs from sections cut tangential to the cortical surface aided in the interpretation of the difference matrices. In striate cortex, differences were maximal in the medial monocular portion, and the lateral or binocular portion was shown to be divided metabolically into a far lateral contralaterally dominant strip along the cortical representation of the vertical meridian, and a more medial region of patches of more or less contralaterally dominant binocular input. Lateral peristriate differences were less than those of striate cortex, and regions of greater and lesser monocular input could be distinguished. We did not detect differences between the two hemispheres in either anterior or medial peristriate areas, thus indicating either completely binocular input (which seems unlikely given the retinotopic organization of these regions), or a greater dependence than in the lateral peristriate on inputs that were not affected by the visual manipulations.

摘要

通过C-14 2-脱氧葡萄糖放射自显影技术,证明了有帽大鼠后皮质中同侧和对侧眼活动引起的葡萄糖代谢变化程度。通过用方波光栅刺激一只眼睛,并通过摘除眼球或眼内注射TTX消除另一只眼睛的传出激活,使两个半球中基于同侧和对侧的视觉活动差异最大化。测量冠状切片放射自显影片第IV层中的碳-14水平,并将各切片的测量结果合并,以形成后皮质代谢活动的左右矩阵。通过从同侧“抑制”矩阵中减去受刺激眼对侧皮质的代谢活动矩阵形成差异矩阵,突出了接受单眼视觉输入的视觉皮质部分。通过胆碱酯酶染色对纹状皮质进行划分,并检查与皮质表面相切的切片的放射自显影片,有助于对差异矩阵进行解释。在纹状皮质中,内侧单眼部分的差异最大,外侧或双眼部分在代谢上被分为沿垂直子午线皮质代表区的远外侧对侧优势带,以及内侧或多或少对侧优势双眼输入的斑块区域。外侧纹周差异小于纹状皮质,且可区分单眼输入较多和较少的区域。我们未检测到前纹周区或内侧纹周区在两个半球之间存在差异,这表明要么是完全的双眼输入(鉴于这些区域的视网膜拓扑组织,这似乎不太可能),要么是比外侧纹周区更依赖于不受视觉操作影响的输入。

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