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单侧视束切断的急性和慢性成年猫完整半球及去传入半球的视皮层细胞特性

Properties of visual cortical cells of the intact and the deafferented hemisphere of unilateral optic tract sectioned acute and chronic adult cats.

作者信息

Podell M, Yinon U, Hammer A

出版信息

Exp Brain Res. 1984;55(1):91-6. doi: 10.1007/BF00240501.

Abstract

Single unit recording from visual cortex areas 17 and 18 and in the border region between them was performed on adult cats with unilateral optic tract section (OTX) either on the day of the operation (acute) or three to six months postoperatively (chronic). Visual activity from both hemispheres was analyzed with respect to the responsiveness level, the ocular dominance distribution and selectivity to orientation and direction. The results showed almost a complete absence of visual responsiveness in the deafferented hemisphere and a considerable reduction of responsiveness in the intact hemisphere. Following surgery an increase in visually responsive cells was found in the intact hemisphere as postoperative recovery continued. In addition, a reduction in the proportion of cells selective for orientation and direction was also found in the intact hemisphere of the OTX animals as compared to the control cats. Furthermore, cortical binocularity was not affected in the intact hemisphere of all OTX cats. We conclude that an almost total absence of interhemispheric callosal transfer of visual functions from the intact to the deafferented hemisphere is induced as a result of the unilateral OTX in adult cats. Moreover, the fact that the absence of cortical binocularity in the hemisphere receiving direct geniculate input was not disrupted, indicates the absence of callosal transfer from the deafferented to the intact hemisphere.

摘要

在成年猫身上进行了单单位记录,这些猫在手术当天(急性)或术后三到六个月(慢性)接受了单侧视束切断术(OTX),记录部位为视觉皮层17区和18区以及它们之间的边界区域。分析了来自两个半球的视觉活动,包括反应性水平、眼优势分布以及对方向和朝向的选择性。结果显示,去传入神经支配的半球几乎完全没有视觉反应,而完整半球的反应性则显著降低。随着术后恢复的持续,在完整半球中发现视觉反应细胞数量增加。此外,与对照猫相比,OTX动物完整半球中对方向和朝向具有选择性的细胞比例也有所降低。此外,所有OTX猫的完整半球中的皮层双眼性并未受到影响。我们得出结论,成年猫单侧OTX导致视觉功能几乎完全不存在从完整半球到去传入神经支配半球的半球间胼胝体传递。此外,接受直接膝状体输入的半球中皮层双眼性未被破坏这一事实,表明不存在从去传入神经支配半球到完整半球的胼胝体传递。

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