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17区的损伤会使枭猴的MT区失活。

Area 17 lesions deactivate area MT in owl monkeys.

作者信息

Kaas J H, Krubitzer L A

机构信息

Department of Psychology, Vanderbilt University, Nashville, TN 37240.

出版信息

Vis Neurosci. 1992 Sep-Oct;9(3-4):399-407. doi: 10.1017/s0952523800010804.

DOI:10.1017/s0952523800010804
PMID:1390397
Abstract

The middle temporal visual area, MT, is one of three major targets of the primary visual cortex, area 17, in primates. We assessed the contribution of area 17 connections to the responsiveness of area MT neurons to visual stimuli by first mapping the representation of the visual hemifield in MT of anesthetized owl monkeys with microelectrodes, ablating an electrophysiologically mapped part of area 17, and then immediately remapping MT. Before the lesions, neurons at recording sites throughout MT responded vigorously to moving slits of light and other visual stimuli. In addition, the relationship of receptive fields to recording sites revealed a systematic representation of the contralateral visual hemifield in MT, as reported previously for owl monkeys and other primates. The immediate effect of removing part of the retinotopic map in area 17 by gentle aspiration was to selectively deactivate the corresponding part of the visuotopic map in MT. Lesions of dorsomedial area 17 representing central and paracentral vision of the lower visual quadrant deactivated neurons in caudomedial MT formerly having receptive fields in the central and paracentral lower visual quadrant. Most neurons at recording sites throughout other parts of MT had normal levels of responsiveness to visual stimuli, and receptive-field locations that closely matched those before the lesion. However, neurons at a few sites along the margin of the deactivated zone of cortex had receptive fields that were slightly displaced from the region of vision affected by the lesion into other parts of the visual field, suggesting some degree of plasticity in the visual hemifield representation in MT.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

颞中区(MT)是灵长类动物初级视皮层17区的三个主要靶区之一。我们通过以下方式评估17区连接对MT区神经元视觉刺激反应性的贡献:首先用微电极绘制麻醉的夜猴MT区的视觉半视野表征,切除电生理图谱上的17区部分区域,然后立即重新绘制MT区图谱。在损伤前,MT区各记录位点的神经元对移动的光缝和其他视觉刺激反应强烈。此外,感受野与记录位点的关系揭示了MT区对侧视觉半视野的系统表征,这与之前对夜猴和其他灵长类动物的报道一致。通过轻柔抽吸去除17区部分视网膜拓扑图的即时效应是选择性地使MT区相应的视觉拓扑图部分失活。代表下视觉象限中央和旁中央视觉的背内侧17区损伤,使MT区尾内侧先前在中央和旁中央下视觉象限有感受野的神经元失活。MT区其他部位各记录位点的大多数神经元对视觉刺激的反应水平正常,感受野位置与损伤前紧密匹配。然而,在失活皮层区边缘的少数位点的神经元,其感受野从受损伤影响的视觉区域略有偏移到视野的其他部分,这表明MT区视觉半视野表征存在一定程度的可塑性。(摘要截断于250字)

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