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一级和高级丘脑中继核团对毒蕈碱激活反应的差异。

Differences in response to muscarinic activation between first and higher order thalamic relays.

作者信息

Varela C, Sherman S Murray

机构信息

Department of Neurobiology, The University of Chicago, Chicago, IL 60637, USA.

出版信息

J Neurophysiol. 2007 Dec;98(6):3538-47. doi: 10.1152/jn.00578.2007. Epub 2007 Oct 17.

Abstract

The mammalian thalamus is composed of two types of thalamocortical relay. First order relays receive information from subcortical sources and relay it to cortex, whereas higher order relays receive information from layer 5 of one cortical area and relay it to another. Recent reports suggest that modulatory inputs to first and higher order relays may differ. We used rat thalamic brain slices and whole cell recordings from relay cells in various first order (the lateral geniculate nucleus, the ventral posterior nucleus, and the ventral portion of the medial geniculate body) and higher order (the lateral posterior, the posterior medial nucleus, and the dorsal portion of the medial geniculate body) relays to explore their responses to activation of muscarinic receptors. We found that, whereas all first order relay cells show a depolarizing response to muscarinic activation, approximately 20% of higher order relay cells respond with hyperpolarization. The depolarization is accompanied by an overall increase in input resistance, whereas the hyperpolarization correlates with a decrease in resistance. Because activation of cholinergic brain stem afferents to thalamus increases with increasing behavioral vigilance, the findings suggest that increased vigilance will depolarize all first order and most higher order relay cells but will hyperpolarize a significant subset of higher order relay cells. Such hyperpolarization is expected to bias these relay cells to the burst firing mode, and so these results are consistent with evidence of more bursting among higher order than first order relay cells.

摘要

哺乳动物丘脑由两种丘脑皮质中继组成。一级中继从皮质下源接收信息并将其传递至皮质,而高级中继从一个皮质区域的第5层接收信息并将其传递至另一个皮质区域。最近的报告表明,对一级和高级中继的调制性输入可能不同。我们使用大鼠丘脑脑片以及来自各种一级(外侧膝状体核、腹后核和内侧膝状体腹侧部分)和高级(外侧后核、后内侧核和内侧膝状体背侧部分)中继中的中继细胞的全细胞记录,来探究它们对毒蕈碱受体激活的反应。我们发现,虽然所有一级中继细胞对毒蕈碱激活均表现出去极化反应,但约20%的高级中继细胞以超极化反应。去极化伴随着输入电阻的总体增加,而超极化与电阻降低相关。由于随着行为警觉性增加,丘脑胆碱能脑干传入纤维的激活也增加,这些发现表明警觉性增加会使所有一级和大多数高级中继细胞去极化,但会使相当一部分高级中继细胞超极化。预计这种超极化会使这些中继细胞偏向爆发式放电模式,因此这些结果与高级中继细胞比一级中继细胞有更多爆发式放电的证据一致。

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