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昆虫触角叶中化学感受传入神经的终止模式取决于它们在鞭节上的起源。

Termination profiles of insect chemosensory afferents in the antennal lobe are dependent on their origin on the flagellum.

作者信息

Nishino Hiroshi, Mizunami Makoto

机构信息

aResearch Institute for Electronic Science, Hokkaido University, Sapporo, Japan.

出版信息

Neuroreport. 2006 Aug 21;17(12):1303-7. doi: 10.1097/01.wnr.0000233086.08087.43.

Abstract

In cockroach antennae, sensory afferents from sensilla on the anterodorsal surface of the flagellum form the anterior antennal nerve, while afferents from the posteroventral surface form the posterior nerve. Anterograde staining was used to investigate afferent termination profiles in the glomeruli of the antennal lobe. The densities of terminal arborizations from the two nerves differed between glomeruli, with groupings of similar glomeruli evident. Individual glomeruli showed heterogeneous distribution of afferent terminals, with posterior nerve afferent terminals occurring near the nerve/glomeruli interface, and anterior nerve afferent terminals occurring on the opposite side. This study demonstrates, for the first time, a correlation between the distribution of primary afferent terminals in the individual glomeruli, and their origin on the surface of the flagellum.

摘要

在蟑螂触角中,来自鞭节前背表面感觉器的感觉传入纤维形成触角前神经,而来自后腹表面的传入纤维则形成后神经。采用顺行染色法研究触角叶神经小球中的传入终末分布情况。两条神经的终末分支密度在不同神经小球之间存在差异,明显存在相似神经小球的分组。单个神经小球显示传入终末分布不均一,后神经传入终末出现在神经/神经小球界面附近,而前神经传入终末出现在相对的一侧。本研究首次证明了单个神经小球中初级传入终末的分布与其在鞭节表面的起源之间的相关性。

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