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小鼠嗅觉中嗅探阶段的感知。

Perception of sniff phase in mouse olfaction.

机构信息

Janelia Farm Research Campus, Howard Hughes Medical Institute, Ashburn, Virginia 20147, USA.

出版信息

Nature. 2011 Oct 12;479(7373):397-400. doi: 10.1038/nature10521.

Abstract

Olfactory systems encode odours by which neurons respond and by when they respond. In mammals, every sniff evokes a precise, odour-specific sequence of activity across olfactory neurons. Likewise, in a variety of neural systems, ranging from sensory periphery to cognitive centres, neuronal activity is timed relative to sampling behaviour and/or internally generated oscillations. As in these neural systems, relative timing of activity may represent information in the olfactory system. However, there is no evidence that mammalian olfactory systems read such cues. To test whether mice perceive the timing of olfactory activation relative to the sniff cycle ('sniff phase'), we used optogenetics in gene-targeted mice to generate spatially constant, temporally controllable olfactory input. Here we show that mice can behaviourally report the sniff phase of optogenetically driven activation of olfactory sensory neurons. Furthermore, mice can discriminate between light-evoked inputs that are shifted in the sniff cycle by as little as 10 milliseconds, which is similar to the temporal precision of olfactory bulb odour responses. Electrophysiological recordings in the olfactory bulb of awake mice show that individual cells encode the timing of photoactivation in relation to the sniff in both the timing and the amplitude of their responses. Our work provides evidence that the mammalian olfactory system can read temporal patterns, and suggests that timing of activity relative to sampling behaviour is a potent cue that may enable accurate olfactory percepts to form quickly.

摘要

嗅觉系统通过神经元的反应及其反应时间来编码气味。在哺乳动物中,每次嗅探都会引起嗅觉神经元中特定、特定气味的精确活动序列。同样,在各种神经系统中,从感觉外围到认知中心,神经元活动与采样行为和/或内部产生的振荡相对定时。与这些神经系统一样,活动的相对定时可能代表嗅觉系统中的信息。然而,没有证据表明哺乳动物的嗅觉系统会读取这些线索。为了测试哺乳动物是否能感知嗅觉激活相对于嗅探周期(“嗅探相位”)的时间,我们使用基因靶向小鼠中的光遗传学来产生空间恒定、时间可控的嗅觉输入。在这里,我们展示了小鼠可以通过行为报告嗅觉感觉神经元的光遗传学驱动激活的嗅探相位。此外,小鼠可以区分嗅探周期中仅相差 10 毫秒的光诱发输入,这与嗅球气味反应的时间精度相似。在清醒小鼠的嗅球中进行的电生理记录显示,单个细胞以其反应的时间和幅度,根据嗅探来编码光激活的时间。我们的工作提供了证据表明,哺乳动物的嗅觉系统可以读取时间模式,并表明相对于采样行为的活动定时是一个有效的线索,可能使快速形成准确的嗅觉感知成为可能。

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