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一种使用少量相邻的、化学定义的肾小球组成的阵列进行气味辨别的组合模型。

A combinatorial model of odor discrimination using a small array of contiguous, chemically defined glomeruli.

作者信息

Vickers N J, Christensen T A

机构信息

Division of Neurobiology, University of Arizona, Tucson 85721, USA.

出版信息

Ann N Y Acad Sci. 1998 Nov 30;855:514-6. doi: 10.1111/j.1749-6632.1998.tb10617.x.

Abstract

The macroglomerular complex (MGC) is a sexually dimorphic array of contiguous glomeruli in male moths, located at the base of the antennal nerve where it enters the primary olfactory processing area of the brain, the antennal lobe. A new three-dimensional reconstruction method was used to map this glomerular array, and images obtained with the laser scanning confocal microscope revealed the precise location and spatial arrangement of the MGC glomeruli in two related species of Heliothine moth. Intracellular recording and staining of projection neurons (PNs) that arborize within the MGC has revealed that information about the two attractive components of the pheromone blend is segregated to different glomeruli in both species. In one species, Helicoverpa zea, a third glomerulus serves as the locus for the processing of odors that antagonize upwind flight. Thus, activation of different but overlapping sets of glomeruli within the MGC may provide a neural substrate for discriminating attractant vs antagonist chemical signals.

摘要

大肾小球复合体(MGC)是雄性蛾类中一系列相邻的、具有性别二态性的肾小球,位于触角神经进入大脑主要嗅觉处理区域——触角叶的基部。一种新的三维重建方法被用于绘制这个肾小球阵列,用激光扫描共聚焦显微镜获得的图像揭示了两种相关的实夜蛾科蛾类中MGC肾小球的精确位置和空间排列。对在MGC内形成树突的投射神经元(PNs)进行细胞内记录和染色,结果表明,在这两个物种中,关于性信息素混合物两种有吸引力成分的信息被分隔到不同的肾小球中。在一种名为棉铃虫的物种中,第三个肾小球作为处理对抗逆风飞行气味的场所。因此,MGC内不同但重叠的肾小球集合的激活可能为区分引诱剂与拮抗剂化学信号提供神经基础。

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