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昆虫触角叶的突触组织与发育

Synaptic organization and development of the antennal lobe in insects.

作者信息

Boeckh J, Tolbert L P

机构信息

Institute for Zoology, University of Regensburg, Germany.

出版信息

Microsc Res Tech. 1993 Feb 15;24(3):260-80. doi: 10.1002/jemt.1070240305.

Abstract

Many insects possess a highly developed sense of smell. This paper summarizes the cellular and synaptic organization of the antennal (olfactory) lobe of the insect brain and then reviews morphological and fine-structural aspects of the development of the lobe. Visualization of synapses between classes of neurons identified by physiological, morphological, or transmitter-cytochemical properties has provided insights into arrangements of contacts and their possible roles in information processing. Studies of development have revealed the requirement for afferent axons from the antenna for the formation of olfactory glomeruli, where virtually all of the synapses in the lobe occur, and have suggested the possibility that glial cells play a role in the instructive influence of the axons on their target neurons in the lobe. The findings reviewed in this paper are primarily from one representative hemimetabolous insect, the American cockroach, and one representative holometabolous insect, a hawkmoth, and comparisons are made with vertebrate systems when appropriate.

摘要

许多昆虫拥有高度发达的嗅觉。本文总结了昆虫脑触角(嗅觉)叶的细胞和突触组织,然后回顾了该叶发育的形态学和精细结构方面。通过生理、形态或递质细胞化学特性鉴定的神经元类别之间突触的可视化,为接触的排列及其在信息处理中的可能作用提供了见解。发育研究揭示了来自触角的传入轴突对于嗅觉小球形成的必要性,而嗅觉小球几乎是该叶中所有突触发生的部位,并且提示了神经胶质细胞在轴突对其在叶中的靶神经元的指导性影响中发挥作用的可能性。本文所综述的研究结果主要来自一种有代表性的渐变态昆虫——美洲蟑螂,以及一种有代表性的全变态昆虫——天蛾,并且在适当的时候与脊椎动物系统进行了比较。

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