Alipour Abolfazl, Mojdehfarahbakhsh Azadeh, Tavakolian Ashkan, Morshedzadeh Taha, Asadi Maedeh, Mehdizadeh Alireza, Nami Mohammad
* Students Research Committee, Shiraz University of Medical Sciences, Shiraz, Iran.
† Neuroscience Laboratory (Brain, Cognition and Behavior), Department of Neuroscience, School of Advanced Medical Sciences and Technologies, Shiraz University of Medical Sciences, Shiraz, Iran.
J Integr Neurosci. 2016 Dec;15(4):539-551. doi: 10.1142/S0219635216500291. Epub 2016 Dec 8.
Functional significance of the neural oscillations has been debated since long. In particular, oscillations have been suggested to play a major role in formation of communication channels between brain regions. It has been previously suggested that gamma coherence increases during communication between hemispheres when subjects perceive a horizontal motion in Stroboscopic Alternative Motion (SAM) stimulus. In addition, disruption of this coherence may change the horizontal perception of SAM. In this study, we investigated the changes of Cross-Frequency Coupling (CFC) in EEG signals from parietal and occipital cortices during horizontal and vertical perception of SAM. Our results suggested that while the strength of CFC in parietal electrodes showed no significant change, CFC in P3-P4 electrode-pair demonstrated a significant correlation during horizontal perception of SAM. Therefore, the CFC between theta- and gamma-band oscillations seems to be correlated with changes in functional interactions between brain regions. Accordingly, we propose that in addition to gamma coherence, CFC is perhaps another neurophysiological mechanism involved in neural communication.
长期以来,神经振荡的功能意义一直存在争议。特别是,有人认为振荡在脑区之间通信通道的形成中起主要作用。此前有研究表明,当受试者在频闪交替运动(SAM)刺激中感知水平运动时,半球间通信期间伽马相干性会增加。此外,这种相干性的破坏可能会改变SAM的水平感知。在本研究中,我们调查了在SAM的水平和垂直感知过程中,顶叶和枕叶皮质脑电图信号中交叉频率耦合(CFC)的变化。我们的结果表明,虽然顶叶电极中CFC的强度没有显著变化,但在SAM的水平感知过程中,P3 - P4电极对中的CFC表现出显著相关性。因此,theta波段和伽马波段振荡之间的CFC似乎与脑区之间功能相互作用的变化相关。据此,我们提出,除了伽马相干性之外,CFC可能是另一种参与神经通信的神经生理机制。