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大鼠三叉神经主核上行投射中的单触须和多触须通道

Single- and multi-whisker channels in the ascending projections from the principal trigeminal nucleus in the rat.

作者信息

Veinante P, Deschênes M

机构信息

Centre de Recherche Université Laval-Robert Giffard, Hôpital Robert Giffard, Québec G1J 2G3, Canada.

出版信息

J Neurosci. 1999 Jun 15;19(12):5085-95. doi: 10.1523/JNEUROSCI.19-12-05085.1999.

DOI:10.1523/JNEUROSCI.19-12-05085.1999
PMID:10366641
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6782641/
Abstract

This study investigated the relationship between axonal projections and receptive field properties of whisker-sensitive cells in the principal trigeminal sensory nucleus of the rat. The labeling of small groups of trigeminothalamic axons with biotinylated dextran amine disclosed two broad classes of axons; a majority of fibers (68%; n = 107) project to a single barreloid of the ventral posteromedial nucleus, and the remaining group includes axons that innervate both the posterior group of the thalamus and the tectum. Additional terminal sites for axons of this latter group may include the pretectum, the zona incerta, the medial part of the medial geniculate nucleus, and the ventral posteromedial nucleus. Corresponding to these two classes of fibers, 67% of the cells in the principal trigeminal nucleus (n = 313) have single-whisker receptive fields, whereas the rest of the population have receptive fields composed of multiple whiskers. The tonic or phasic properties of the responses apparently bear no relation to the axonal projection patterns. Solid retrograde labeling of cells that project to the ventral posteromedial nucleus and intracellular staining revealed that single-whisker cells have small somata and narrow, barrelette-bounded dendritic trees. In contrast, multi-whisker neurons have large multipolar somata, expansive dendritic trees, and many respond antidromically to stimulation of the superior colliculus. Together, these results provide evidence for two main channels of vibrissal information: a single-whisker channel that links trigeminal barrelettes to their corresponding barreloids, and a multi-whisker channel that distributes principally in the posterior group and tectum.

摘要

本研究调查了大鼠三叉神经感觉主核中触须敏感细胞的轴突投射与感受野特性之间的关系。用生物素化葡聚糖胺标记小群三叉丘脑轴突,揭示了两类广泛的轴突;大多数纤维(68%;n = 107)投射到腹后内侧核的单个桶状小体,其余的一组包括支配丘脑后组和顶盖的轴突。后一组轴突的其他终末部位可能包括顶盖前区、未定带、内侧膝状核内侧部分和腹后内侧核。与这两类纤维相对应,三叉神经主核中67%的细胞(n = 313)具有单触须感受野,而其余细胞具有由多个触须组成的感受野。反应的紧张性或相位性特性显然与轴突投射模式无关。对投射到腹后内侧核的细胞进行的固态逆行标记和细胞内染色显示,单触须细胞具有小的胞体和狭窄的、由桶状小体界定的树突树。相比之下,多触须神经元具有大的多极胞体、广泛的树突树,并且许多神经元对上丘刺激产生逆行反应。总之,这些结果为触须信息的两个主要通道提供了证据:一个将三叉神经桶状小体与其相应的桶状小体相连的单触须通道,以及一个主要分布在丘脑后组和顶盖的多触须通道。