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嗅吸作为嗅觉处理的一个单元。

The sniff as a unit of olfactory processing.

作者信息

Kepecs Adam, Uchida Naoshige, Mainen Zachary F

机构信息

Cold Spring Harbor Laboratory, 1 Bungtown Road, Cold Spring Harbor, NY 11724, USA.

出版信息

Chem Senses. 2006 Feb;31(2):167-79. doi: 10.1093/chemse/bjj016. Epub 2005 Dec 8.

Abstract

Sniffing is a rhythmic motor process essential for the acquisition of olfactory information. Recent behavioral experiments show that using a single sniff rats can accurately discriminate between very similar odors and fail to improve their accuracy by taking multiple sniffs. This implies that each sniff has the potential to provide a complete snapshot of the local olfactory environment. The discrete and intermittent nature of sniffing has implications beyond the physical process of odor capture as it strongly shapes the flow of information into the olfactory system. We review electrophysiological studies-primarily from anesthetized rodents-demonstrating that olfactory neural responses are coupled to respiration. Hence, the "sniff cycle" might play a role in odor coding, by allowing the timing of spikes with respect to the phase of the respiration cycle to encode information about odor identity or concentration. We also discuss behavioral and physiological results indicating that sniffing can be dynamically coordinated with other rhythmic behaviors, such as whisking, as well as with rhythmic neural activity, such as hippocampal theta oscillations. Thus, the sniff cycle might also facilitate the coordination of the olfactory system with other brain areas. These converging lines of empirical data support the notion that each sniff is a unit of olfactory processing relevant for both neural coding and inter-areal coordination. Further electrophysiological recordings in behaving animals will be necessary to assess these proposals.

摘要

吸气是获取嗅觉信息所必需的一种有节奏的运动过程。最近的行为实验表明,大鼠单次吸气就能准确区分非常相似的气味,多次吸气也无法提高其准确性。这意味着每次吸气都有可能提供局部嗅觉环境的完整快照。吸气的离散性和间歇性不仅对气味捕捉的物理过程有影响,因为它强烈地塑造了进入嗅觉系统的信息流。我们回顾了主要来自麻醉啮齿动物的电生理研究,这些研究表明嗅觉神经反应与呼吸相关。因此,“吸气周期”可能在气味编码中发挥作用,通过允许峰电位相对于呼吸周期的相位来编码有关气味特征或浓度的信息。我们还讨论了行为和生理结果,这些结果表明吸气可以与其他有节奏的行为(如动 whisking)以及有节奏的神经活动(如海马体 theta 振荡)动态协调。因此,吸气周期也可能促进嗅觉系统与其他脑区的协调。这些相互印证的实证数据支持了这样一种观点,即每次吸气都是一个嗅觉处理单元,与神经编码和区域间协调都相关。需要在行为动物身上进行进一步的电生理记录来评估这些提议。

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