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局部神经元在哺乳动物的嗅球中发挥着关键作用。

Local neurons play key roles in the mammalian olfactory bulb.

作者信息

Saghatelyan Armen, Carleton Alan, Lagier Samuel, de Chevigny Antoine, Lledo Pierre-Marie

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

J Physiol Paris. 2003 Jul-Nov;97(4-6):517-28. doi: 10.1016/j.jphysparis.2004.01.009.

Abstract

Over the past few decades, research exploring how the brain perceives, discriminates, and recognizes odorant molecules has received a growing interest. Today, olfaction is no longer considered a matter of poetry. Chemical senses entered the biological era when an increasing number of scientists started to elucidate the early stages of the olfactory pathway. A combination of genetic, biochemical, cellular, electrophysiological and behavioral methods has provided a picture of how odor information is processed in the olfactory system as it moves from the periphery to higher areas of the brain. Our group is exploring the physiology of the main olfactory bulb, the first processing relay in the mammalian brain. From different electrophysiological approaches, we are attempting to understand the cellular rules that contribute to the synaptic transmission and plasticity at this central relay. How olfactory sensory inputs, originating from the olfactory epithelium located in the nasal cavity, are encoded in the main olfactory bulb remains a crucial question for understanding odor processing. More importantly, the persistence of a high level of neurogenesis continuously supplying the adult olfactory bulb with newborn local neurons provides an attractive model to investigate how basic olfactory functions are maintained when a large proportion of local neurons are continuously renewed. For this purpose, we summarize the current ideas concerning the molecular mechanisms and organizational strategies used by the olfactory system to encode and process information in the main olfactory bulb. We discuss the degree of sensitivity of the bulbar neuronal network activity to the persistence of this high level of neurogenesis that is modulated by sensory experience. Finally, it is worth mentioning that analyzing the molecular mechanisms and organizational strategies used by the olfactory system to transduce, encode, and process odorant information in the olfactory bulb should aid in understanding the general neural mechanisms involved in both sensory perception and memory. Due to space constraints, this review focuses exclusively on the olfactory systems of vertebrates and primarily those of mammals.

摘要

在过去几十年里,探索大脑如何感知、区分和识别气味分子的研究受到了越来越多的关注。如今,嗅觉不再被视为一个诗意的话题。当越来越多的科学家开始阐明嗅觉通路的早期阶段时,化学感觉进入了生物学时代。遗传、生化、细胞、电生理和行为学方法的结合,描绘出了气味信息在嗅觉系统中从外周向大脑更高区域传递时是如何被处理的。我们的研究小组正在探索主嗅球的生理学,它是哺乳动物大脑中的第一个处理中继站。通过不同的电生理方法,我们试图了解在这个中枢中继站中有助于突触传递和可塑性的细胞规则。源自鼻腔内嗅上皮的嗅觉感觉输入如何在主嗅球中编码,仍然是理解气味处理的关键问题。更重要的是,高水平神经发生的持续存在不断为成年嗅球提供新生的局部神经元,这为研究当很大一部分局部神经元不断更新时基本嗅觉功能是如何维持的提供了一个有吸引力的模型。为此,我们总结了目前关于嗅觉系统在主嗅球中编码和处理信息所使用的分子机制和组织策略的观点。我们讨论了嗅球神经元网络活动对由感觉经验调节的这种高水平神经发生持续性的敏感程度。最后,值得一提的是,分析嗅觉系统在嗅球中传导、编码和处理气味信息所使用的分子机制和组织策略,应该有助于理解涉及感觉感知和记忆的一般神经机制。由于篇幅限制,本综述仅专注于脊椎动物的嗅觉系统,主要是哺乳动物的嗅觉系统。

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