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调控嗅觉习惯化的不同神经元回路在时间上的特异性结合。

Temporally specific engagement of distinct neuronal circuits regulating olfactory habituation in .

机构信息

Division of Neuroscience, Biomedical Sciences Research Centre "Alexander Fleming", Vari, Greece.

School of Medicine, University of Crete, Heraklion, Greece.

出版信息

Elife. 2018 Dec 21;7:e39569. doi: 10.7554/eLife.39569.

Abstract

UNLABELLED

Habituation is the process that enables salience filtering, precipitating perceptual changes that alter the value of environmental stimuli. To discern the neuronal circuits underlying habituation to brief inconsequential stimuli, we developed a novel olfactory habituation paradigm, identifying two distinct phases of the response that engage distinct neuronal circuits. Responsiveness to the continuous odor stimulus is maintained initially, a phase we term habituation latency and requires Rutabaga Adenylyl-Cyclase-depended neurotransmission from GABAergic Antennal Lobe Interneurons and activation of excitatory Projection Neurons (PNs) and the Mushroom Bodies. In contrast, habituation depends on the inhibitory PNs of the middle Antenno-Cerebral Track, requires inner Antenno-Cerebral Track PN activation and defines a temporally distinct phase. Collectively, our data support the involvement of Lateral Horn excitatory and inhibitory stimulation in habituation. These results provide essential cellular substrates for future analyses of the molecular mechanisms that govern the duration and transition between these distinct temporal habituation phases.

EDITORIAL NOTE

This article has been through an editorial process in which the authors decide how to respond to the issues raised during peer review. The Reviewing Editor's assessment is that all the issues have been addressed (see decision letter).

摘要

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习惯化是一种使显著性过滤的过程,引发感知变化,从而改变环境刺激的价值。为了辨别习惯化短暂无关刺激的神经回路,我们开发了一种新颖的嗅觉习惯化范式,确定了参与不同神经回路的两个不同反应阶段。最初,对连续气味刺激的反应保持不变,我们将其称为习惯化潜伏期,这需要 Rutabaga 腺苷酸环化酶依赖性 GABA 能触角叶中间神经元的神经传递以及兴奋性投射神经元 (PNs) 和蘑菇体的激活。相比之下,习惯化取决于中间触角脑径路的抑制性 PNs,需要内侧触角脑径路 PNs 的激活,并定义了一个时间上不同的阶段。总的来说,我们的数据支持外侧角兴奋性和抑制性刺激在习惯化中的参与。这些结果为未来分析控制这些不同时间习惯化阶段持续时间和过渡的分子机制提供了重要的细胞基质。

编辑注释

本文经过编辑过程,作者决定如何处理同行评审中提出的问题。审稿编辑的评估是所有问题都已得到解决(见评审意见信)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4873/6303106/f757b60bf3d0/elife-39569-fig1.jpg

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