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重新注视时放电的丘脑神经元可能对视觉皮层的可塑性负责。

Thalamic units firing upon refixation may be responsible for plasticity in visual cortex.

作者信息

Schlag J, Schlag-Rey M

出版信息

Exp Brain Res. 1983;50(1):146-8. doi: 10.1007/BF00238241.

Abstract

In alert cat and monkey, a unit type recorded in the region of the thalamic internal medullary lamina seems to provide the extraretinal signal postulated by Singer (1982) to explain the development of mature receptive field properties in cortical visual neurons. These thalamic units are silent (or silenced) during saccades in all directions; they discharge as soon as the eyes assume a new position. The abolition of this discharge by thalamic lesion, or conversely, its elicitation by electrical stimulation could respectively prevent or facilitate plastic changes in visual cortical areas of kittens.

摘要

在警觉的猫和猴中,记录到的丘脑内髓板区域的一种神经元类型似乎提供了辛格(1982年)所假设的视网膜外信号,以解释皮质视觉神经元中成熟感受野特性的发育。这些丘脑神经元在各个方向的扫视过程中是沉默的(或被抑制);一旦眼睛到达新位置,它们就开始放电。丘脑损伤消除这种放电,或者相反,电刺激引发这种放电,分别可以阻止或促进小猫视觉皮质区域的可塑性变化。

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