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犬颈迷走神经和结状神经节的传入投射

Afferent projections of the cervical vagus and nodose ganglion in the dog.

作者信息

Chernicky C L, Barnes K L, Ferrario C M, Conomy J P

出版信息

Brain Res Bull. 1984 Sep;13(3):401-11. doi: 10.1016/0361-9230(84)90090-x.

Abstract

The distribution within the brain stem of the afferent projections of the cervical vagus and the nodose ganglion was studied with horseradish peroxidase (HRP) and HRP-wheat germ agglutinin conjugate. Two to eight days after application of tracer into the cervical vagosympathetic trunk or the nodose ganglion the brain stems and ganglia were perfused and processed by the tetramethyl benzidine method. Vagal afferent fibers entered the lateral medulla as a distinct bundle spatially separate from the vagal efferent rootlets which were caudal and ventral to the afferents. Labeled axons in the solitary tract began to enter the nucleus tractus solitarii (nTS) 4.5 mm anterior to obex and were seen throughout the ipsilateral nTS as far as 3.5 mm caudal to obex. Label density varied within the nTS, with heaviest labeling in the dorsal and dorsolateral portions. Label was also seen in the ipsilateral area postrema (ap) and dorsal motor nucleus of the vagus. Labeled fibers crossed in the commissural portions of ap and nTS to enter the contralateral ap and nTS.

摘要

采用辣根过氧化物酶(HRP)和HRP-小麦胚凝集素复合物研究了颈迷走神经和结状神经节传入投射在脑干内的分布。将示踪剂注入颈迷走交感干或结状神经节2至8天后,对脑干和神经节进行灌注,并采用四甲基联苯胺法进行处理。迷走传入纤维作为一个明显的束进入延髓外侧,在空间上与位于传入纤维尾侧和腹侧的迷走传出小根分开。孤束中的标记轴突在闩前方4.5毫米处开始进入孤束核(nTS),并在同侧nTS中一直可见到闩尾侧3.5毫米处。nTS内的标记密度各不相同,背侧和背外侧部分的标记最重。在同侧最后区(ap)和迷走神经背运动核中也可见到标记。标记纤维在ap和nTS的连合部分交叉,进入对侧的ap和nTS。

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