小鼠嗅球的慢伽马振荡与黑暗时期的嗅探有关

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摘要

嗅球的神经活动反映在局部场电位(lfp)上。在功能上,嗅球中的lfp被分为不同的频段:1-4 Hz、6-12 Hz、25-50 Hz和65-130 Hz,分别对应呼吸、嗅探、慢伽马和快伽马振荡。虽然嗅球中的伽马振荡受到呼吸和嗅探的调节,但LFP振荡的调节如何以及是否受到一天中的时间的影响仍然是未知的。为了解决这个问题,我们记录了未受限制小鼠嗅球、海马体和新皮层的LFP长达3天。对于每个记录位点,我们计算了黑暗和光明期间三个区域对频段之间归一化LFP功率的相关系数。然后,我们将这些相关性与替代数据产生的相关性进行比较,以调查相关性是否具有统计学意义。我们发现嗅探和慢伽马振荡之间的相关性在黑暗时期比在光明时期更高。我们的发现有可能揭示依赖于光/暗循环的嗅觉信息编码方案。
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Slow Gamma Oscillations in the Mouse Olfactory Bulb are Correlated with Sniffing in the Dark Period
Neural activity in the olfactory bulb is reflected in local field potentials (LFPs). Functionally, LFPs in the olfactory bulb are categorized into different frequency bands: 1-4 Hz, 6-12 Hz, 25-50 Hz, and 65-130 Hz, which respectively correspond to respiration, sniffing, slow gamma, and fast gamma oscillations. While gamma oscillations in the olfactory bulb are modulated by respiration and sniffing, it remains unknown how and whether the modulation of LFP oscillations is affected by the time of day. To address this question, we recorded LFPs in the olfactory bulb, hippocampus, and neocortex of unrestrained mice for up to 3 d. For each recording site, we calculated the correlation coefficients of normalized LFP powers between pairs of frequency bands in the three regions during the dark and light periods. We then compared these correlations with those generated by surrogate data to investigate whether the correlation was statistically significant. We found that the correlation between sniffing and slow gamma oscillations was higher in the dark period than in the light period. Our finding has the potential to shed light on the coding scheme of olfactory information that is dependent on the light/dark cycle.
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