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乙酰胆碱抑制猫外侧膝状核中已确定的中间神经元。

Acetylcholine inhibits identified interneurons in the cat lateral geniculate nucleus.

作者信息

McCormick D A, Pape H C

机构信息

Section of Neuroanatomy, Yale University School of Medicine, New Haven, Connecticut 06510.

出版信息

Nature. 1988 Jul 21;334(6179):246-8. doi: 10.1038/334246a0.

Abstract

The transmission of visual information from retina to cortex through the dorsal lateral geniculate nucleus (LGNd) is controlled by non-retinal inputs. Enhanced visually evoked responses in cat LGNd relay cells during periods of increased alertness have been attributed in large part to increased rate of acetylcholine (ACh) release by fibres ascending from the brainstem reticular formation. ACh can modulate geniculate visual responses in vivo, but comparatively little is known about the underlying ionic mechanisms of these cholinergic actions. Although direct excitation of LGNd relay neurons has been shown in vitro, the situation is complicated because cholinergic axons form numerous and complex synapses not only with relay cells, but also with inhibitory interneurons, and electrical activation of the brainstem cholinergic neurons reduces inhibitory postsynaptic potentials in the LGNd. We report here that morphologically characterized interneurons in the cat LGNd possess distinctive electrophysiological properties in comparison with those of relay cells and are inhibited by ACh through a muscarinic receptor-mediated increase in potassium conductance. Together the direct excitation of relay cells and inhibition of intrageniculate interneurons allow the ascending cholinergic system to exert a powerful facilitatory influence over the transfer of visual information to the cerebral cortex.

摘要

视觉信息从视网膜经背侧外侧膝状体核(LGNd)向皮层的传递受非视网膜输入的控制。猫LGNd中继细胞在警觉性提高期间视觉诱发反应增强,这在很大程度上归因于从脑干网状结构上行的纤维释放乙酰胆碱(ACh)的速率增加。ACh可在体内调节膝状体视觉反应,但对这些胆碱能作用的潜在离子机制了解相对较少。尽管在体外已显示LGNd中继神经元可被直接兴奋,但情况较为复杂,因为胆碱能轴突不仅与中继细胞形成大量复杂的突触,还与抑制性中间神经元形成突触,并且脑干胆碱能神经元的电激活会降低LGNd中的抑制性突触后电位。我们在此报告,与中继细胞相比,猫LGNd中形态学特征明确的中间神经元具有独特的电生理特性,并且通过毒蕈碱受体介导的钾电导增加而被ACh抑制。中继细胞的直接兴奋和膝状体内中间神经元的抑制共同使得上行胆碱能系统对视觉信息向大脑皮层的传递施加强大的促进作用。

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