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第二个离散条件刺激对外侧膝状核细胞反应的调制:家兔上丘的影响

Modulations of the lateral geniculate nucleus cell responses by a second discrete conditioning stimulus: implications of the superior colliculus in rabbits.

作者信息

Molotchnikoff S, Delaunais D, Casanova C

出版信息

Exp Brain Res. 1986;62(2):321-8. doi: 10.1007/BF00238851.

Abstract

This study analyzes the interactions between two discrete stimuli located in the visual field of the rabbit at the lateral geniculate level. Single unit recordings were carried out simultaneously from the superior colliculus (SC) and lateral geniculate nucleus (LGN) in anesthetized and paralyzed rabbits. A first conditioning stimulus (most often a moving target) was positioned in the receptive field of the collicular cell to ensure activation of the retino-collicular path. A second test stimulus was introduced into the receptive field of the LGN cell. The presentation of this latter stimulus was timed so as to fire the geniculate cell at various delays after the collicular neuron had responded to its own stimulus. The spontaneous firing of each cell was unaffected by the stimulus appropriate to the complementary unit. The conditioning collicular stimulus produced increases or decreases in geniculate responses. This modulation may eventually reduce the direction specificity of a geniculate unit. The fluctuations of the geniculate responses peaked 200 to 300 ms after collicular cells had responded. In a separate series of experiments the influence of the conditioning stimulus on geniculate responses was abolished when the SC was locally inactivated. These results suggest that the well documented colliculo-geniculate system mediates the interactions of several stimuli in the visual field. The outcome of this processing results in a modulation of geniculate responses.

摘要

本研究分析了位于兔视野中两个离散刺激在外侧膝状体水平的相互作用。在麻醉和麻痹的兔中,同时从上丘(SC)和外侧膝状体核(LGN)进行单单位记录。第一个条件刺激(最常见的是移动目标)置于丘细胞的感受野中,以确保视网膜 - 丘脑通路的激活。第二个测试刺激被引入LGN细胞的感受野。后一种刺激的呈现时间被设定为在丘神经元对其自身刺激做出反应后的不同延迟时间激发膝状体细胞。每个细胞的自发放电不受互补单元适当刺激的影响。条件性丘刺激会使膝状体反应增加或减少。这种调制最终可能会降低膝状体单元的方向特异性。膝状体反应的波动在丘细胞做出反应后200至300毫秒达到峰值。在另一系列实验中,当SC局部失活时,条件刺激对膝状体反应的影响被消除。这些结果表明,有充分记录的丘脑 - 膝状体系统介导了视野中几种刺激的相互作用。这种处理的结果导致膝状体反应的调制。

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