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家兔上丘深层传入纤维对外侧后-丘脑枕复合体反复抑制的控制

Control of recurrent inhibition of the lateral posterior-pulvinar complex by afferents from the deep layers of the superior colliculus of the rabbit.

作者信息

Zhu J J, Lo F S

机构信息

Shanghai Brain Research Institute, Chinese Academy of Sciences, China.

出版信息

J Neurophysiol. 1998 Sep;80(3):1122-31. doi: 10.1152/jn.1998.80.3.1122.

Abstract

We investigated the effect of stimulation of the deep layers of the superior colliculus (SC) on the recurrent inhibition of the lateral posterior-pulvinar complex (LP) in anesthetized rabbits. Intracellular recordings from 23 relay cells in LP showed that they responded to SC stimulation with a long-lasting (140.2 +/- 19.6 ms; mean +/- SD) inhibitory postsynaptic potential (IPSP), which sometimes was followed by a rebound burst of spikes. The same SC stimulation evoked a burst of spikes in extracellular recordings from 31 recurrent inhibitory interneurons in the LP-cortical pathway, which were located in the ventral part of the visual sector of the thalamic reticular nucleus. The mean latency of the burst in reticular cells was 1.6 ms shorter than that of the IPSP in LP relay cells, suggesting that the IPSP in LP cells was mediated by these reticular cells. Intracellular recordings from nine reticular cells showed that the burst of spikes evoked by SC stimulation resulted from an excitatory postsynaptic potential that was always followed by a long-lasting (143.3 +/- 24.0 ms) IPSP. Stimulation of the contralateral predorsal bundle, the main output pathway of deep SC neurons, elicited similar responses in LP cells or reticular neurons with latencies longer than those from SC stimulation. The latency difference between the responses to predorsal bundle and SC stimulation is equal to the antidromic conduction time of predorsal bundle fibers, suggesting that the inhibition in LP originates from the activation of predorsal bundle-projecting neurons. The response characteristics of the inhibitory circuit of LP and of the lateral geniculate nucleus to SC stimulation are strikingly similar, implying that a similar circuit is used by predorsal bundle-projecting neurons to control the recurrent inhibition in both lateral geniculate nucleus and LP. Because the predorsal bundle-projecting neurons are believed to be involved in the initiation of saccadic eye movements, we suggest that the inhibitory circuits may play an important role in modulating ascending visual information during saccadic eye movements.

摘要

我们研究了刺激麻醉兔上丘深层对丘脑后外侧-丘脑枕复合体(LP)的反馈抑制的影响。对LP中23个中继细胞进行的细胞内记录显示,它们对SC刺激的反应是产生一个持续时间较长(140.2±19.6毫秒;平均值±标准差)的抑制性突触后电位(IPSP),有时随后会出现一阵突发放电。同样的SC刺激在LP-皮质通路中31个反馈抑制性中间神经元的细胞外记录中诱发了一阵突发放电,这些中间神经元位于丘脑网状核视觉区的腹侧部分。网状细胞中突发放电的平均潜伏期比LP中继细胞中IPSP的潜伏期短1.6毫秒,这表明LP细胞中的IPSP是由这些网状细胞介导的。对9个网状细胞进行的细胞内记录显示,SC刺激诱发的突发放电是由一个兴奋性突触后电位引起的,该电位总是随后跟着一个持续时间较长(143.3±24.0毫秒)的IPSP。刺激对侧背前束,即深层SC神经元的主要输出通路,在LP细胞或网状神经元中引发了类似的反应,但其潜伏期比SC刺激引发的反应潜伏期长。对背前束和SC刺激的反应之间的潜伏期差异等于背前束纤维的逆向传导时间,这表明LP中的抑制作用源于背前束投射神经元的激活。LP和外侧膝状体抑制性回路对SC刺激的反应特征非常相似,这意味着背前束投射神经元使用类似的回路来控制外侧膝状体和LP中的反馈抑制。由于背前束投射神经元被认为参与扫视眼动的起始,我们认为抑制性回路可能在扫视眼动期间调节上行视觉信息方面发挥重要作用。

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