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胼胝体对猫上丘单个神经元视觉感受野的重要性。

Importance of corpus callosum for visual receptive fields of single neurons in cat superior colliculus.

作者信息

Antonini A, Berlucchi G, Marzi C A, Sprague J M

出版信息

J Neurophysiol. 1979 Jan;42(1 Pt 1):137-52. doi: 10.1152/jn.1979.42.1.137.

Abstract
  1. Section of the posterior two-thirds of the corpus callosum eliminates almost completely the response of superior colliculus (SC) neurons to stimulation of the contralateral eye in split-chiasm cats. On the contrary, the responsiveness of SC neurons to stimulation of the contralateral eye is not abolished by a transection of the posterior and tectal commissures leaving the corpus callosum intact. The callosal section also reduces the number of SC receptive fields abutting the vertical meridian in the ipsilateral eye of split-chiasm cats. 2. In cats with intact optic pathways, a similar callosal section abolishes the SC representation of the ipsilateral visual field in the ipsilateral eye and also reduces the number of receptive fields adjoining the vertical meridian in the same eye. In the contralateral eye, the SC representation of the ipsilateral visual field is reduced in extension to about one-fifth of that seen in cats with intact commissures. 3. The results suggest that the corpus callosum is the main pathway for cross-midline communication of visual information at not only the cortical, but also the midbrain level. The corpus callosum may subserve this function because it contains uninterrupted crossed corticotectal projections or because it transmits visual information from one hemisphere to contralateral cortical areas projecting ipsilaterally to SC. The latter hypothesis is more likely but, in any case, the findings imply that the lack of interhemispheric transfer of visual learning in cats with a chiasmatic and callosal section may depend on a midline disconnection of both subcortical and cortical visual centers. 4. The corpus callosum is also responsible for the representation of the ipsilateral visual field of the ipsilateral eye in the cat SC. The SC representation of the ipsilateral visual field in the contralateral eye is due, in minimal part, to direct retinotectal connections from temporal retina and, for the largest part, to the corpus callosum. 5. Finally, the corpus callosum contributes to the representation of the contralateral visual field near the vertical meridian of the temporal retina in both split-chiasm and normal cats. This is probably due to the scarcity of direct retinotectal projections from this part of the retina and to their supplementation by corticotectal neurons influenced by the callosal afferents.
摘要
  1. 切断胼胝体后三分之二几乎完全消除了交叉视交叉猫中脑上丘(SC)神经元对同侧眼刺激的反应。相反,切断后连合和顶盖连合而保留胼胝体完整,并不会消除SC神经元对同侧眼刺激的反应。切断胼胝体还减少了交叉视交叉猫同侧眼中邻近视网膜垂直子午线的SC感受野数量。2. 在视通路完整的猫中,类似的胼胝体切断会消除同侧眼中同侧视野的SC表征,也会减少同一眼中邻近视网膜垂直子午线的感受野数量。在对侧眼中,同侧视野的SC表征范围缩小至完整连合猫所见的约五分之一。3. 结果表明,胼胝体不仅是视觉信息在皮质水平,也是在中脑水平跨中线交流的主要通路。胼胝体可能发挥这一功能,是因为它包含不间断的交叉皮质-顶盖投射,或者是因为它将视觉信息从一个半球传递到向同侧SC投射的对侧皮质区域。后一种假设更有可能,但无论如何,这些发现意味着,交叉视交叉和胼胝体切断的猫缺乏视觉学习的半球间传递可能取决于皮质下和皮质视觉中枢的中线断开。4. 胼胝体还负责猫SC中同侧眼同侧视野的表征。对侧眼中同侧视野的SC表征,至少部分是由于来自颞侧视网膜的直接视网膜-顶盖连接,而大部分是由于胼胝体。5. 最后,在交叉视交叉猫和正常猫中,胼胝体都有助于颞侧视网膜垂直子午线附近对侧视野的表征。这可能是由于该部分视网膜的直接视网膜-顶盖投射稀少,以及受胼胝体传入影响的皮质-顶盖神经元对其进行补充所致。

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