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哺乳动物嗅觉系统中的信息处理

Information processing in the mammalian olfactory system.

作者信息

Lledo Pierre-Marie, Gheusi Gilles, Vincent Jean-Didier

机构信息

Laboratory of Perception and Memory, Pasteur Institute, Paris, France.

出版信息

Physiol Rev. 2005 Jan;85(1):281-317. doi: 10.1152/physrev.00008.2004.

Abstract

Recently, modern neuroscience has made considerable progress in understanding how the brain perceives, discriminates, and recognizes odorant molecules. This growing knowledge took over when the sense of smell was no longer considered only as a matter for poetry or the perfume industry. Over the last decades, chemical senses captured the attention of scientists who started to investigate the different stages of olfactory pathways. Distinct fields such as genetic, biochemistry, cellular biology, neurophysiology, and behavior have contributed to provide a picture of how odor information is processed in the olfactory system as it moves from the periphery to higher areas of the brain. So far, the combination of these approaches has been most effective at the cellular level, but there are already signs, and even greater hope, that the same is gradually happening at the systems level. This review summarizes the current ideas concerning the cellular mechanisms and organizational strategies used by the olfactory system to process olfactory information. We present findings that exemplified the high degree of olfactory plasticity, with special emphasis on the first central relay of the olfactory system. Recent observations supporting the necessity of such plasticity for adult brain functions are also discussed. Due to space constraints, this review focuses mainly on the olfactory systems of vertebrates, and primarily those of mammals.

摘要

最近,现代神经科学在理解大脑如何感知、辨别和识别气味分子方面取得了显著进展。当嗅觉不再仅仅被视为诗歌或香水行业的专属话题时,这一不断增长的知识开始占据主导地位。在过去几十年里,化学感觉吸引了科学家们的关注,他们开始研究嗅觉通路的不同阶段。遗传学、生物化学、细胞生物学、神经生理学和行为学等不同领域都为描绘气味信息在嗅觉系统中从外周向大脑更高区域传递时的处理过程做出了贡献。到目前为止,这些方法的结合在细胞水平上最为有效,但已经有迹象,甚至有更大的希望表明,在系统水平上也正逐渐出现同样的情况。这篇综述总结了目前关于嗅觉系统处理嗅觉信息所使用的细胞机制和组织策略的观点。我们展示了一些发现,这些发现例证了嗅觉可塑性的高度,特别强调了嗅觉系统的第一个中枢中继站。还讨论了支持这种可塑性对成人大脑功能必要性的近期观察结果。由于篇幅限制,本综述主要关注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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