Temporal autocorrelation is predictive of age—An extensive MEG time-series analysis
Abstract
Understanding the evolving dynamics of the brain throughout life is pivotal for anticipating and evaluating individual health. While previous research has described age effects on spectral properties of neural signals, it remains unclear which ones are most indicative of age-related processes. This study addresses this gap by analyzing resting-state data obtained from magnetoencephalography (MEG) in 350 adults (18 to 88 y). We employed advanced time-series analysis at the brain region level and machine learning to predict age. While traditional spectral features achieved low to moderate accuracy, over a hundred time-series features proved superior. Notably, temporal autocorrelation (AC) emerged as the most robust predictor of age. Distinct patterns of AC within the visual and temporal cortex were most informative, offering a versatile measure of age-related signal changes for comprehensive health assessments based on brain activity.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (7)
Christina Stier
Institute for Biomagnetism and Biosignalanalysis, University of Münster
Elio Balestrieri
Institute for Biomagnetism and Biosignalanalysis, University of Münster
Jana Fehring
Institute for Biomagnetism and Biosignalanalysis, University of Münster
Niels K. Focke
Clinic of Neurology, University Medical Center Göttingen
Andreas Wollbrink
Institute for Biomagnetism and Biosignalanalysis, University of Münster
Udo Dannlowski
Joachim Gross
Institute for Biomagnetism and Biosignalanalysis, University of Münster