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牛头鲶鱼(Ictalurus nebulosus)脑干中面神经和迷走神经味觉系统的反射连接

Reflex connections of the facial and vagal gustatory systems in the brainstem of the bullhead catfish, Ictalurus nebulosus.

作者信息

Morita Y, Finger T E

出版信息

J Comp Neurol. 1985 Jan 22;231(4):547-58. doi: 10.1002/cne.902310411.

Abstract

The primary gustatory sensory nuclei in catfish are grossly divisible into a vagal lobe and a facial lobe. In this study, the reflex connections of each gustatory lobe were determined with horseradish peroxidase (HRP) tracing methods. In addition, in order to determine the loci and morphology of the other brainstem cranial nerve nuclei, HRP was applied to the trigeminal, facial, glossopharyngeal, or vagus nerve. The sensory fibers of the facial nerve terminate in the facial lobe. The facial lobe projects bilaterally to the posterior thalamic nucleus, superior secondary gustatory nucleus, and medial reticular formation of the rostral medulla. The facial lobe has reciprocal connections with the n. lobobulbaris, medial reticular formation of the rostral medulla, descending trigeminal nucleus, medial and lateral funicular nuclei, and the vagal lobe, ipsilaterally; and with the facial lobe contralaterally. In addition, the facial lobe receives inputs from the raphe nuclei, from a pretectal nucleus, and from perilemniscal neurons located immediately adjacent to the ascending gustatory lemniscal tract at the level of the trigeminal motor nucleus. The gustatory fibers of the vagus nerve terminate in the vagal lobe, while the general visceral sensory fibers terminate in a distinct general visceral nucleus. The vagal lobe projects ipsilaterally to the superior secondary gustatory nucleus, lateral reticular formation, and n. ambiguus; and bilaterally to the commissural nucleus of Cajal. The vagal lobe has reciprocal connections with the ipsilateral lobobulbar nucleus and facial lobe. In addition, the vagal lobe receives input from neurons of the medullary reticular formation and perilemniscal neurons of the pontine tegmentum. In summary, the facial gustatory system has connections consonant with its role as an exteroceptive system which works in correlation with trigeminal and spinal afferent systems. In contrast, the vagal gustatory system has connections (e.g., with the n. ambiguus) more appropriate to a system involved in control of swallowing. These differences in central connectivity mirror the reports on behavioral dissociation of the facial and vagal gustatory systems.

摘要

鲶鱼的主要味觉感觉核大致可分为迷走叶和面神经叶。在本研究中,采用辣根过氧化物酶(HRP)追踪法确定了每个味觉叶的反射连接。此外,为了确定其他脑干脑神经核的位置和形态,将HRP应用于三叉神经、面神经、舌咽神经或迷走神经。面神经的感觉纤维终止于面神经叶。面神经叶双侧投射至丘脑后核、上级次级味觉核和延髓头端的内侧网状结构。面神经叶与延髓球核、延髓头端的内侧网状结构、三叉神经降核、内侧和外侧索状核以及迷走叶同侧有相互连接;与对侧的面神经叶也有相互连接。此外,面神经叶还接受来自中缝核、顶盖前核以及位于三叉神经运动核水平紧邻上升味觉丘系束的围丘系神经元的输入。迷走神经的味觉纤维终止于迷走叶,而一般内脏感觉纤维终止于一个独特的一般内脏核。迷走叶同侧投射至上级次级味觉核、外侧网状结构和疑核;双侧投射至 Cajal 连合核。迷走叶与同侧的延髓球核和面神经叶有相互连接。此外,迷走叶接受来自延髓网状结构神经元和脑桥被盖围丘系神经元的输入。总之,面神经味觉系统的连接与其作为一个与三叉神经和脊髓传入系统协同工作的外感受系统的作用相一致。相比之下,迷走神经味觉系统的连接(例如与疑核的连接)更适合于一个参与吞咽控制的系统。这些中枢连接的差异反映了关于面神经和迷走神经味觉系统行为分离的报道。

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