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Tracking EEG network dynamics through transitions between eyes-closed, eyes-open, and task states

Paweł Krukow, Víctor Rodríguez-González, Natalia Kopiś-Posiej, Carlos Gómez, Jesús Poza

2024Scientific Reports13 citationsDOIOpen Access PDF

Abstract

Our study aimed to verify the possibilities of effectively applying chronnectomics methods to reconstruct the dynamic processes of network transition between three types of brain states, namely, eyes-closed rest, eyes-open rest, and a task state. The study involved dense EEG recordings and reconstruction of the source-level time-courses of the signals. Functional connectivity was measured using the phase lag index, and dynamic analyses concerned coupling strength and variability in alpha and beta frequencies. The results showed significant and dynamically specific transitions regarding processes of eyes opening and closing and during the eyes-closed-to-task transition in the alpha band. These observations considered a global dimension, default mode network, and central executive network. The decrease of connectivity strength and variability that accompanied eye-opening was a faster process than the synchronization increase during eye-opening, suggesting that these two transitions exhibit different reorganization times. While referring the obtained results to network studies, it was indicated that the scope of potential similarities and differences between rest and task-related networks depends on whether the resting state was recorded in eyes closed or open condition.

Topics & Concepts

Task (project management)ElectroencephalographyComputer scienceClosing (real estate)Synchronization (alternating current)Eye movementEyes openRest (music)Default mode networkTransition (genetics)Coupling (piping)Phase synchronizationProcess (computing)Network dynamicsArtificial intelligenceNeurosciencePsychologyFunctional connectivityPhysicsMathematicsBiologyTelecommunicationsBalance (ability)LawDiscrete mathematicsMechanical engineeringAcousticsEngineeringBiochemistryEconomicsManagementPolitical scienceGeneChannel (broadcasting)Operating systemFunctional Brain Connectivity StudiesEEG and Brain-Computer InterfacesNeural dynamics and brain function
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