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变化中的大脑中的嗅觉处理

Olfactory processing in a changing brain.

作者信息

Lledo Pierre-Marie, Gheusi Gilles

机构信息

Laboratory of Perception and Memory, Centre National de la Recherche Scientifique, Unité de Recherche Associée 2182, Institut Pasteur, 25 rue du Dr. Roux, 75724 Paris, France.

出版信息

Neuroreport. 2003 Sep 15;14(13):1655-63. doi: 10.1097/00001756-200309150-00001.

Abstract

The perception of odorant molecules provides the essential information that allows animals to explore their surrounding. We describe here how the external world of scents may sculpt the activity of the first central relay of the olfactory system, i.e., the olfactory bulb. This structure is one of the few brain areas to continuously replace one of its neuronal populations: the local GABAergic interneurons. How the newly generated neurons integrate into a pre-existing neural network and how basic olfactory functions are maintained when a large percentage of neurons are subjected to continuous renewal, are important questions that have recently received new insights. Furthermore, we shall see how the adult neurogenesis is specifically subjected to experience-dependent modulation. In particular, we shall describe the sensitivity of the bulbar neurogenesis to the activity level of sensory inputs from the olfactory epithelium and, in turn, how this neurogenesis may adjust the neural network functioning to optimize odor information processing. Finally, we shall discuss the behavioral consequences of the bulbar neurogenesis and how it may be appropriate for the sense of smell. By maintaining a constitutive turnover of bulbar interneurons subjected to modulation by environmental cues, we propose that adult ongoing neurogenesis in the olfactory bulb is associated with improved olfactory memory. These recent findings not only provide new fuel for the molecular and cellular bases of sensory perception but should also shed light onto cellular bases of learning and memory.

摘要

对气味分子的感知提供了至关重要的信息,使动物能够探索周围环境。我们在此描述嗅觉系统的第一个中枢中继站,即嗅球,其外部气味世界是如何塑造其活动的。这个结构是少数几个能持续替换其神经元群体之一的脑区:局部γ-氨基丁酸能中间神经元。新生成的神经元如何融入已有的神经网络,以及当很大比例的神经元不断更新时基本嗅觉功能如何维持,是最近获得新见解的重要问题。此外,我们将看到成体神经发生是如何特别受到经验依赖性调节的。特别是,我们将描述嗅球神经发生对来自嗅觉上皮的感觉输入活动水平的敏感性,以及反过来,这种神经发生如何调整神经网络功能以优化气味信息处理。最后,我们将讨论嗅球神经发生的行为后果以及它如何适用于嗅觉。通过维持受环境线索调节的嗅球中间神经元的组成性更替,我们提出嗅球中的成体持续神经发生与改善的嗅觉记忆相关。这些最新发现不仅为感觉知觉的分子和细胞基础提供了新的动力,也应该为学习和记忆的细胞基础提供启示。

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