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自发电流源与电流汇的相位-幅度耦合的层流分布。

Laminar Distribution of Phase-Amplitude Coupling of Spontaneous Current Sources and Sinks.

作者信息

Sotero Roberto C, Bortel Aleksandra, Naaman Shmuel, Mocanu Victor M, Kropf Pascal, Villeneuve Martin Y, Shmuel Amir

机构信息

McConnell Brain Imaging Centre, Montreal Neurological Institute and Departments of Neurology, Neurosurgery, Physiology and Biomedical Engineering, McGill University Montreal, QC, Canada.

出版信息

Front Neurosci. 2015 Dec 22;9:454. doi: 10.3389/fnins.2015.00454. eCollection 2015.

Abstract

Although resting-state functional connectivity is a commonly used neuroimaging paradigm, the underlying mechanisms remain unknown. Thalamo-cortical and cortico-cortical circuits generate oscillations at different frequencies during spontaneous activity. However, it remains unclear how the various rhythms interact and whether their interactions are lamina-specific. Here we investigated intra- and inter-laminar spontaneous phase-amplitude coupling (PAC). We recorded local-field potentials using laminar probes inserted in the forelimb representation of rat area S1. We then computed time-series of frequency-band- and lamina-specific current source density (CSD), and PACs of CSD for all possible pairs of the classical frequency bands in the range of 1-150 Hz. We observed both intra- and inter-laminar spontaneous PAC. Of 18 possible combinations, 12 showed PAC, with the highest measures of interaction obtained for the pairs of the theta/gamma and delta/gamma bands. Intra- and inter-laminar PACs involving layers 2/3-5a were higher than those involving layer 6. Current sinks (sources) in the delta band were associated with increased (decreased) amplitudes of high-frequency signals in the beta to fast gamma bands throughout layers 2/3-6. Spontaneous sinks (sources) of the theta and alpha bands in layers 2/3-4 were on average linked to dipoles completed by sources (sinks) in layer 6, associated with high (low) amplitudes of the beta to fast-gamma bands in the entire cortical column. Our findings show that during spontaneous activity, delta, theta, and alpha oscillations are associated with periodic excitability, which for the theta and alpha bands is lamina-dependent. They further emphasize the differences between the function of layer 6 and that of the superficial layers, and the role of layer 6 in controlling activity in those layers. Our study links theories on the involvement of PAC in resting-state functional connectivity with previous work that revealed lamina-specific anatomical thalamo-cortico-cortical connections.

摘要

尽管静息态功能连接是一种常用的神经成像范式,但其潜在机制仍不清楚。丘脑 - 皮质和皮质 - 皮质回路在自发活动期间会产生不同频率的振荡。然而,目前尚不清楚各种节律如何相互作用以及它们的相互作用是否具有层特异性。在这里,我们研究了层内和层间的自发相位 - 振幅耦合(PAC)。我们使用插入大鼠S1区前肢代表区的分层探针记录局部场电位。然后,我们计算了1 - 150Hz范围内所有经典频段对的频段和层特异性电流源密度(CSD)的时间序列,以及CSD的PAC。我们观察到了层内和层间的自发PAC。在18种可能的组合中,有12种显示出PAC,其中theta / gamma和delta / gamma频段对的相互作用测量值最高。涉及第2/3 - 5a层的层内和层间PAC高于涉及第6层的PAC。整个第2/3 - 6层中,delta频段的电流汇(源)与β到快速gamma频段的高频信号振幅增加(减少)相关。第2/3 - 4层中theta和alpha频段的自发电流汇(源)平均与第6层中的源(汇)完成的偶极子相关,这与整个皮质柱中β到快速gamma频段的高(低)振幅相关。我们的研究结果表明,在自发活动期间,delta、theta和alpha振荡与周期性兴奋性相关,其中theta和alpha频段的周期性兴奋性是层依赖性的。它们进一步强调了第6层和表层功能之间的差异,以及第6层在控制这些层活动中的作用。我们的研究将关于PAC参与静息态功能连接的理论与先前揭示层特异性解剖丘脑 - 皮质 - 皮质连接的工作联系起来。

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