Gohel Bakul, Lim Sanghyun, Kim Min-Young, An Kyung-Min, Kim Ji-Eun, Kwon Hyukchan, Kim Kiwoong
Center for Biosignals, Korea Research Institute of Standards and Science Daejeon, South Korea.
Front Comput Neurosci. 2016 Nov 25;10:120. doi: 10.3389/fncom.2016.00120. eCollection 2016.
Phase-amplitude coupling (PAC) plays an important role in neural communication and computation. Interestingly, recent studies have indicated the presence of ubiquitous PAC phenomenon even during the resting state. Despite the importance of PAC phenomenon, estimation of significant physiological PAC is challenging because of the lack of appropriate surrogate measures to control false positives caused by non-physiological PAC. Therefore, in the present study, we evaluated PAC phenomenon during resting-state magnetoencephalography (MEG) signal and considered various surrogate measures and computational approaches widely used in the literature in addition to proposing new ones. We evaluated PAC phenomenon over the entire length of the MEG signal and for multiple shorter time segments. The results indicate that the extent of PAC phenomenon mainly depends on the surrogate measures and PAC computational methods used, as well as the evaluation approach. After a careful and critical evaluation, we found that resting-state MEG signals failed to exhibit ubiquitous PAC phenomenon, contrary to what has been suggested previously.
相位-振幅耦合(PAC)在神经通信和计算中起着重要作用。有趣的是,最近的研究表明,即使在静息状态下也存在普遍的PAC现象。尽管PAC现象很重要,但由于缺乏适当的替代测量方法来控制由非生理性PAC引起的假阳性,对显著生理性PAC的估计具有挑战性。因此,在本研究中,我们评估了静息态脑磁图(MEG)信号中的PAC现象,并考虑了文献中广泛使用的各种替代测量方法和计算方法,此外还提出了新的方法。我们在MEG信号的整个长度以及多个较短的时间段内评估了PAC现象。结果表明,PAC现象的程度主要取决于所使用的替代测量方法、PAC计算方法以及评估方法。经过仔细和严格的评估,我们发现静息态MEG信号未能表现出普遍的PAC现象,这与之前的观点相反。