The human cortex is characterized by local morphological features such as cortical thickness, myelin content, and gene expression that change along the posterior-anterior axis. We investigated if some of these structural gradients are associated with a similar gradient in a prominent feature of brain activity - namely the frequency of oscillations. In resting-state MEG recordings from healthy participants (N = 187) using mixed effect models, we found that the dominant peak frequency in a brain area decreases significantly along the posterior-anterior axis following the global hierarchy from early sensory to higher order areas. This spatial gradient of peak frequency was significantly anticorrelated with that of cortical thickness, representing a proxy of the cortical hierarchical level. This result indicates that the dominant frequency changes systematically and globally along the spatial and hierarchical gradients and establishes a new structure-function relationship pertaining to brain oscillations as a core organization that may underlie hierarchical specialization in the brain.
Titelaufnahme
Titelaufnahme
- TitelThe frequency gradient of human resting-state brain oscillations follows cortical hierarchies
- Verfasser
- Erschienen
- AnmerkungFinanziert durch den Open-Access-Publikationsfonds der Westfälischen Wilhelms-Universität Münster (WWU Münster).
- SpracheEnglisch
- Bibl. ReferenzeLife 9 (2020), e53715, 1-18
- DokumenttypAufsatz in einer Zeitschrift
- Schlagwörter (EN)
- URN
- DOI
Zugriffsbeschränkung
- Das Dokument ist frei verfügbar
Links
- Social MediaShare
- Nachweis
- IIIF
Dateien
Klassifikation
Abstract
Statistik
- Das PDF-Dokument wurde 9 mal heruntergeladen.
Lizenz-/Rechtehinweis