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暹罗猫大脑皮层17区和18区与上丘之间双眼相互作用的差异。

Differences in binocular interactions between cortical areas 17 and 18 and superior colliculus of Siamese cats.

作者信息

Antonini A, Berlucchi G, Di Stefano M, Marzi C A

出版信息

J Comp Neurol. 1981 Aug 20;200(4):597-611. doi: 10.1002/cne.902000409.

Abstract

In Siamese cats most retinal projections are crossed and almost all neurons in cortical areas 17 and 18 respond exclusively to the contralateral eye. However, neurons in visual areas in the suprasylvian sulci (LSA) can be activated from both eyes, since the input from the ipsilateral eye is relayed to them by the corpus callosum (Marzi et al., '80). This study shows that the superior colliculus (SC) is also the site of binocular interactions in Siamese cats with a predominantly monocular organization of areas 17 and 18. In 8 unanesthetized, brainstem-sectioned Siamese cats, identified as "Boston" on the basis of the pattern of visual field representation in areas 17 and 18 (Hubel and Wiesel, '71; Shatz, '77a), only 25 out of 140 neurons in these areas could be driven from both eyes, whereas as many as 124 out of 143 SC neurons showed a clear binocular input. The input from each eye to the ipsilateral SC and the resulting binocular interactions in our Siamese cats might have depended on corticotectal projections from LSA. If so, since a posterior callosal section abolishes the input from each eye to ipsilateral LSA, the SC should similarly be affected by callosotomy. The posterior half of the corpus callosum was sectioned acutely in three Siamese cats after recording from SC; the input from the ipsilateral eye to SC was suppressed by this operation in one cat (which, however, also had an unintended interruption of the posterior, habenular, and anterior intertectal commissures), and drastically reduced in the other two. In a fourth cat, in which callosotomy was performed three weeks before recording from SC, the number of SC neurons responsive to the ipsilateral eye was significantly inferior to that of Siamese cats with an intact corpus callosum. These findings indicate the importance of the corpus callosum for ipsilateral eye-SC relations, as well as for SC binocularity, in Siamese cats. At the same time they imply that noncallosal routes can also transmit information from each eye to the ipsilateral SC in callosotomized Siamese cats.

摘要

在暹罗猫中,大多数视网膜投射是交叉的,而且视皮层17区和18区的几乎所有神经元仅对侧眼做出反应。然而,上薛氏沟(LSA)视觉区域的神经元可被双眼激活,因为同侧眼的输入通过胼胝体传递给它们(马尔齐等人,1980年)。本研究表明,上丘(SC)也是暹罗猫双眼相互作用的部位,其17区和18区主要为单眼组织。在8只未麻醉、脑干横断的暹罗猫中,根据17区和18区视野表征模式确定为“波士顿”型(休伯尔和维泽尔,1971年;沙茨,1977年a),这些区域的140个神经元中只有25个可被双眼驱动,而143个上丘神经元中多达124个显示出明确的双眼输入。在我们的暹罗猫中,每只眼睛对上丘同侧的输入以及由此产生的双眼相互作用可能依赖于来自上薛氏沟的皮质-上丘投射。如果是这样,由于胼胝体后段切断会消除每只眼睛对上丘同侧的输入,那么上丘同样也会受到胼胝体切开术的影响。在三只暹罗猫从上丘记录后,急性切断胼胝体后半部;在一只猫中,此操作抑制了同侧眼对上丘的输入(然而,这只猫还意外中断了后、缰核和前顶盖间连合),在另外两只猫中则大幅减少。在第四只猫中,在从上丘记录前三周进行了胼胝体切开术,对同侧眼有反应的上丘神经元数量明显少于胼胝体完整的暹罗猫。这些发现表明,胼胝体对暹罗猫同侧眼-上丘关系以及上丘双眼性很重要。同时,这也意味着在胼胝体切开的暹罗猫中,非胼胝体途径也可以将每只眼睛的信息传递到同侧上丘。

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