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Two distinct olfactory bulb sublaminar networks involved in gamma and beta oscillation generation: a CSD study in the anesthetized rat

机译:涉及γ和β振荡产生的两个不同的嗅球亚层网络:麻醉大鼠的CSD研究

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摘要

A prominent feature of olfactory bulb (OB) dynamics is the expression of characteristic local field potential (LFP) rhythms, including a slow respiration-related rhythm and two fast alternating oscillatory rhythms, beta (15–30 Hz) and gamma (40–90 Hz). All of these rhythms are implicated in olfactory coding. Fast oscillatory rhythms are known to involve the mitral-granule cell loop. Although the underlying mechanisms of gamma oscillation have been studied, the origin of beta oscillation remains poorly understood. Whether these two different rhythms share the same underlying mechanism is unknown. This study uses a quantitative and detailed current-source density (CSD) analysis combined with multi-unit activity (MUA) recordings to shed light on this question in freely breathing anesthetized rats. In particular, we show that gamma oscillation generation involves mainly the upper half of the external plexiform layer (EPL) and superficial areas of granule cell layer (GRL). In contrast, the generation of beta oscillation involves the lower part of the EPL and deep granule cells. This differential involvement of sublaminar networks is neither dependent on odor quality nor on the precise frequency of the fast oscillation under study. Overall, this study demonstrates a functional sublaminar organization of the rat OB, which is supported by previous anatomical findings.
机译:嗅球(OB)动力学的一个显着特征是特征性局部场电位(LFP)节律的表达,包括慢呼吸相关的节律和两个快速交替的振荡节律,β(15–30 Hz)和γ(40–90)赫兹)。所有这些节律都与嗅觉编码有关。已知快速振荡节律涉及二尖瓣细胞环。尽管已经研究了伽马振荡的潜在机制,但对β振荡的起源仍知之甚少。这两个不同的节奏是否共享相同的潜在机制尚不清楚。这项研究使用定量和详细的电流源密度(CSD)分析与多单位活动(MUA)记录相结合,以阐明自由呼吸麻醉大鼠中的这个问题。特别地,我们表明,伽马振荡的产生主要涉及外部丛状层(EPL)的上半部分和颗粒细胞层(GRL)的表层区域。相反,β振荡的产生涉及EPL的下部和深层颗粒细胞。层下网络的这种不同参与既不依赖于气味质量也不依赖于所研究的快速振荡的精确频率。总的来说,这项研究证明了大鼠OB的功能性层下组织,这一点得到了先前的解剖学发现的支持。

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