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大鼠和猫触须毛囊-窦复合体神经支配的异同:共聚焦显微镜研究

Similarities and differences in the innervation of mystacial vibrissal follicle-sinus complexes in the rat and cat: a confocal microscopic study.

作者信息

Ebara Satomi, Kumamoto Kenzo, Matsuura Tadao, Mazurkiewicz Joseph E, Rice Frank L

机构信息

Department of Anatomy, Meiji University of Oriental Medicine, Hiyoshi-cho, Funai-gun, Kyoto 629-0392, Japan.

出版信息

J Comp Neurol. 2002 Jul 22;449(2):103-19. doi: 10.1002/cne.10277.

Abstract

Our confocal three-dimensional analyses revealed substantial differences in the innervation to vibrissal follicle-sinus complexes (FSCs) in the rat and cat. This is the first study using anti-protein gene product 9.5 (PGP9.5) immunolabeling and confocal microscopy on thick sections to examine systematically the terminal arborizations of the various FSC endings and to compare them between two species, the rat and the cat, that have similar-appearing FSCs but different exploratory behaviors, such as existence or absence of whisking. At least eight distinct endings were clearly discriminated three dimensionally in this study: 1) Merkel endings at the rete ridge collar, 2) circumferentially oriented lanceolate endings, 3) Merkel endings at the level of the ring sinus, 4) longitudinally oriented lanceolate endings, 5) club-like ringwulst endings, 6) reticular endings, 7) spiny endings, and 8) encapsulated endings. Of particular contrast, each nerve fiber that innervates Merkel cells at the level of the ring sinus in the rat usually terminates as a single, relatively small cluster of endings, whereas in the cat they terminate en passant as several large clusters of endings. Also, individual arbors of reticular endings in the rat ramify parallel to the vibrissae and distribute over wide, overlapping territories, whereas those in the cat ramify perpendicular and terminate in tightly circumscribed territories. Otherwise, the inner conical body of rat FSCs contains en passant, circumferentially oriented lanceolate endings that are lacking in the cat, whereas the cavernous sinus of the cat has en passant corpuscular endings that are lacking in the rat. Surprisingly, the one type of innervation that is the most similar in both species is a major set of simple, club-like endings, located at the attachment of the ringwulst, that had not previously been recognized as a morphologically unique type of innervation. Although the basic structure of the FSCs is similar in the rat and cat, the numerous differences in innervation suggest that these species would have different tactile capabilities and perceptions possibly related to their different vibrissa-related exploratory behaviors.

摘要

我们的共聚焦三维分析揭示了大鼠和猫的触须毛囊 - 窦复合体(FSC)神经支配存在显著差异。这是第一项使用抗蛋白基因产物9.5(PGP9.5)免疫标记和共聚焦显微镜对厚切片进行系统研究,以检查各种FSC末梢的终末分支,并在大鼠和猫这两个具有相似外观的FSC但探索行为不同(如是否有胡须运动)的物种之间进行比较的研究。在本研究中,至少有八种不同的末梢在三维空间中被清晰区分:1)rete嵴环处的默克尔末梢;2)周向排列的柳叶状末梢;3)环窦水平的默克尔末梢;4)纵向排列的柳叶状末梢;5)棒状环隆起末梢;6)网状末梢;7)棘状末梢;8)被囊末梢。特别值得注意的是,支配大鼠环窦水平默克尔细胞的每条神经纤维通常终止于单个相对较小的末梢簇,而在猫中它们则以多个大的末梢簇呈过路式终止。此外,大鼠网状末梢的单个分支平行于触须分支并分布在广泛重叠的区域,而猫的网状末梢分支垂直且终止于界限分明的区域。此外,大鼠FSC的内锥体包含猫所没有的呈过路式的周向柳叶状末梢,而猫的海绵窦有大鼠所没有的呈过路式的球状末梢。令人惊讶的是,在这两个物种中最相似的一种神经支配类型是位于环隆起附着处的一组主要的简单棒状末梢,以前未被认为是一种形态学上独特的神经支配类型。尽管大鼠和猫的FSC基本结构相似,但神经支配的众多差异表明,这些物种可能具有不同的触觉能力和感知,这可能与它们不同的与触须相关的探索行为有关。

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