The Functional Interactions between Cortical Regions through Theta-Gamma Coupling during Resting-State and a Visual Working Memory Task


" Trough posterior fast oscillatory activity nesting into the phase of frontal theta wave, long-range networks can be efficiently either coupled or decoupled, respectively. Based on this mechanism, our results identify neural mechanisms for efficient coordination of competing brain networks in the human brain. Our results provide evidence that TGC [theta phase-gamma amplitude coupling] may constitute a mechanism for neuronal communication between distant brain regions and frequencies not only during WM maintenance but also during resting-state." {Credits 1}

{Credits 1} 🎪 Ahn, J.S.; Heo, J.; Oh, J.; Lee, D.; Jhung, K.; Kim, J.-J.; Park, J.Y. The Functional Interactions between Cortical Regions through Theta-Gamma Coupling during Resting-State and a Visual Working Memory Task. Brain Sci. 2022, 12, 274. https://doi.org/10.3390/brainsci12020274. © 2022 The Author(s). This is an open-access article distributed under the terms of the Creative Commons Attribution License.


Last modified on 21-Dec-24

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