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首页> 外文期刊>Neuron >Robust odor coding via inhalation-coupled transient activity in the mammalian olfactory bulb.
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Robust odor coding via inhalation-coupled transient activity in the mammalian olfactory bulb.

机译:通过在哺乳动物嗅球中吸入耦合的瞬时活性来进行稳健的气味编码。

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摘要

It has been proposed that a single sniff generates a "snapshot" of the olfactory world. However, odor coding on this timescale is poorly understood, and it is not known whether coding is invariant to changes in respiration frequency. We investigated this by recording spike trains from the olfactory bulb in awake, behaving rats. During rapid sniffing, odor inhalation triggered rapid and reliable cell- and odor-specific temporal spike patterns. These fine temporal responses conveyed substantial odor information within the first approximately 100 ms, and correlated with behavioral discrimination time on a trial-by-trial basis. Surprisingly, the initial transient portions of responses were highly conserved between rapid sniffing and slow breathing. Firing rates over the entire respiration cycle carried less odor information, did not correlate with behavior, and were poorly conserved across respiration frequency. These results suggest that inhalation-coupled transient activity forms a robust neural code that is invariant to changes in respiration behavior.
机译:已经提出,单个嗅探产生嗅觉世界的“快照”。但是,在该时间尺度上的气味编码了解得很少,并且未知编码是否对呼吸频率的变化是不变的。我们通过在行为清醒的老鼠中记录来自嗅球的穗状花序来对此进行调查。在快速嗅探期间,气味的吸入会触发快速可靠的特定于细胞和气味的时间峰值模式。这些良好的时间响应在最初的大约100毫秒内传达了大量的气味信息,并且在逐项试验的基础上与行为识别时间相关。令人惊讶的是,响应的初始瞬时部分在快速嗅探和缓慢呼吸之间高度保守。在整个呼吸周期中,生火率携带的气味信息较少,与行为无关,并且在整个呼吸频率上的保存性均较差。这些结果表明,与吸入有关的短暂活动形成了鲁棒的神经密码,该密码对于呼吸行为的变化是不变的。

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