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Phase-Based Cortical Synchrony Is Affected by Prematurity.


ABSTRACT: Inter-areal synchronization by phase-phase correlations (PPCs) of cortical oscillations mediates many higher neurocognitive functions, which are often affected by prematurity, a globally prominent neurodevelopmental risk factor. Here, we used electroencephalography to examine brain-wide cortical PPC networks at term-equivalent age, comparing human infants after early prematurity to a cohort of healthy controls. We found that prematurity affected these networks in a sleep state-specific manner, and the differences between groups were also frequency-selective, involving brain-wide connections. The strength of synchronization in these networks was predictive of clinical outcomes in the preterm infants. These findings show that prematurity affects PPC networks in a clinically significant manner, suggesting early functional biomarkers of later neurodevelopmental compromise that may be used in clinical or translational studies after early neonatal adversity.

SUBMITTER: Yrjola P 

PROVIDER: S-EPMC9113310 | biostudies-literature | 2022 May

REPOSITORIES: biostudies-literature

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Phase-Based Cortical Synchrony Is Affected by Prematurity.

Yrjölä Pauliina P   Stjerna Susanna S   Palva J Matias JM   Vanhatalo Sampsa S   Tokariev Anton A  

Cerebral cortex (New York, N.Y. : 1991) 20220501 10


Inter-areal synchronization by phase-phase correlations (PPCs) of cortical oscillations mediates many higher neurocognitive functions, which are often affected by prematurity, a globally prominent neurodevelopmental risk factor. Here, we used electroencephalography to examine brain-wide cortical PPC networks at term-equivalent age, comparing human infants after early prematurity to a cohort of healthy controls. We found that prematurity affected these networks in a sleep state-specific manner, a  ...[more]

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