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雄性烟草天蛾原脑嗅觉神经元的生理学和形态学

Physiology and morphology of protocerebral olfactory neurons in the male moth Manduca sexta.

作者信息

Kanzaki R, Arbas E A, Hildebrand J G

机构信息

Arizona Research Laboratories, Division of Neurobiology, University of Arizona, Tucson 85721.

出版信息

J Comp Physiol A. 1991 Mar;168(3):281-98. doi: 10.1007/BF00198348.

Abstract
  1. We have used intracellular recording and staining with Lucifer Yellow, followed by reconstruction from serial sections, to characterize the responses and structure of olfactory neurons in the protocerebrum (PC) of the brain of the male sphinx moth Manduca sexta. 2. Many olfactory protocerebral neurons (PCNs) innervate a particular neuropil region lateral to the central body, the lateral accessory lobe (LAL), which appears to be important for processing olfactory information. 3. Each LAL is linked by its constituent neurons to the ipsilateral lateral PC, where projection neurons from the antennal lobe terminate, as well as to other regions of the PC. The LALs are also linked to each other by bilateral neurons with arborizations in each LAL. 4. Some PC neurons showed long-lasting excitation (LLE) that outlasted the olfactory stimuli by greater than or equal to 1 s, and as long as 30 s in some preparations. LLE was more frequently elicited by the sex-pheromone blend than by individual pheromone components. All bilateral neurons that showed LLE had arborizations in the LALs. LLE responses were also recorded in a single local neuron innervating the mushroom body. 5. In some other PC neurons, pheromonal stimuli elicited brief excitations that recovered to background firing rates less than 1 s after stimulation.
摘要
  1. 我们使用细胞内记录和荧光黄染色,随后从连续切片进行重建,以表征雄性烟草天蛾大脑原脑(PC)中嗅觉神经元的反应和结构。2. 许多嗅觉原脑神经元(PCNs)支配中央体外侧的一个特定神经纤维区域,即外侧副叶(LAL),该区域似乎对嗅觉信息处理很重要。3. 每个LAL通过其组成神经元与同侧外侧PC相连,触角叶的投射神经元在此终止,同时也与PC的其他区域相连。LALs还通过在每个LAL中具有分支的双侧神经元相互连接。4. 一些PC神经元表现出持续时间长的兴奋(LLE),其持续时间比嗅觉刺激长大于或等于1秒,在某些标本中长达30秒。与单个信息素成分相比,性信息素混合物更频繁地引发LLE。所有表现出LLE的双侧神经元在LALs中都有分支。在一个支配蘑菇体的单个局部神经元中也记录到了LLE反应。5. 在其他一些PC神经元中,信息素刺激引发短暂的兴奋,刺激后不到1秒就恢复到背景放电率。

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