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成年猫的单侧麻痹性斜视会引起沿视觉中线的眼间视差的可塑性变化:胼胝体的作用。

Unilateral paralytic strabismus in the adult cat induces plastic changes in interocular disparity along the visual midline: contribution of the corpus callosum.

作者信息

Milleret C, Buser P, Watroba L

机构信息

Laboratoire de Physiologie de la Perception et de l'Action, UMR CNRS--Collège de France, Paris.

出版信息

Vis Neurosci. 2005 May-Jun;22(3):325-43. doi: 10.1017/S0952523805223088.

Abstract

Neurones activated through the corpus callosum (CC) in the cat visual cortex are known to be almost entirely located at the 17/18 border. They are orientation selective and display receptive fields (RFs) distributed along the central vertical meridian of the visual field ("visual midline"). Most of these cells are binocular, and many of them are activated both from the contralateral eye through the CC, and from the ipsilateral eye via the direct retino-geniculo-cortical (GC) pathway. These two pathways do not carry exactly the same information, leading to interocular disparity between pairs of RFs along the visual midline. Recently, we have demonstrated that a few weeks of unilateral paralytic strabismus surgically induced at adulthood does not alter the cortical distribution of these units but leads to a loss of their orientation selectivity and an increase of their RF size, mainly toward the ipsilateral hemifield when transcallosally activated (Watroba et al., 2001). To investigate interocular disparity, here we compared these RF changes to those occurring in the same neurones when activated through the ipsilateral direct GC route. The 17/18 transition zone and the bordering medial region within A17 were distinguished, as they display different interhemispheric connectivity. In these strabismics, some changes were noticed, but were basically identical in both recording zones. Ocular dominance was not altered, nor was the spatial distribution of the RFs with respect to the visual midline, nor the amplitude of position disparity between pairs of RFs. On the other hand, strabismus induced a loss of orientation selectivity regardless of whether neurones were activated directly or through the CC. Both types of RFs also widened, but in opposite directions with respect to the visual midline. This led to changes in incidences of the different types of position disparity. The overlap between pairs of RFs also increased. Based on these differences, we suggest that the contribution of the CC to binocular vision along the midline in the adult might be modulated through several intrinsic cortical mechanisms.

摘要

已知猫视觉皮层中通过胼胝体(CC)激活的神经元几乎完全位于17/18边界处。它们具有方向选择性,并显示出沿视野中央垂直子午线(“视觉中线”)分布的感受野(RFs)。这些细胞大多数是双眼的,其中许多细胞通过CC从对侧眼激活,也通过直接的视网膜-膝状体-皮层(GC)通路从同侧眼激活。这两条通路携带的信息并不完全相同,导致沿视觉中线的RF对之间存在眼间差异。最近,我们已经证明,成年期手术诱发的几周单侧麻痹性斜视不会改变这些单元的皮层分布,但会导致它们的方向选择性丧失以及RF大小增加,当通过胼胝体激活时主要朝向同侧半视野(Watroba等人,2001年)。为了研究眼间差异,在这里我们将这些RF变化与通过同侧直接GC途径激活时同一神经元中发生的变化进行了比较。区分了17/18过渡区和A17内相邻的内侧区域,因为它们显示出不同的半球间连接性。在这些斜视患者中,注意到了一些变化,但在两个记录区域基本相同。眼优势没有改变,RF相对于视觉中线的空间分布没有改变,RF对之间的位置差异幅度也没有改变。另一方面,斜视导致方向选择性丧失,无论神经元是直接激活还是通过CC激活。两种类型的RF也都变宽了,但相对于视觉中线方向相反。这导致了不同类型位置差异发生率的变化。RF对之间的重叠也增加了。基于这些差异,我们认为成年期CC对沿中线双眼视觉的贡献可能通过几种内在的皮层机制进行调节。

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