Age differences in aperiodic neural activity measured with resting EEG
Merkin, A.; Sghirripa, S.; Graetz, L.; Smith, A. E.; Hordacre, B.; Harris, R.; Pitcher, J.; Semmler, J.; Rogasch, N. C.; Goldsworthy, M.
Show abstract
Previous research using electroencephalography (EEG) and magnetoencephalography (MEG) has shown that neural oscillatory activity within the alpha band (8-12 Hz) becomes slower and lower in amplitude with advanced age. However, most studies have focused on quantifying age-related differences in periodic oscillatory activity with little consideration of the influence of aperiodic activity on these measures. The aim of this study was to investigate age differences in aperiodic activity inherent in the resting EEG signal. We assessed aperiodic activity in 85 healthy younger adults (mean age: 22.2 years, SD: 3.9, age range: 18-35, 37 male) and 92 healthy older adults (mean age: 66.1 years, SD: 8.2, age range 50-86, 53 male) by fitting the 1/f-like background activity evident in EEG power spectra using the fitting oscillations & one over f (FOOOF) toolbox. Across the scalp, the aperiodic exponent and offset were smaller in older compared to younger participants, reflecting a flatter 1/f-like slope and a downward broadband shift in the power spectra with age. Before correcting for aperiodic activity, older adults showed slower peak alpha frequency and reduced peak alpha power relative to younger adults. After correcting for aperiodic activity, peak alpha frequency remained slower in older adults; however, peak alpha power no longer differed statistically between age groups. The large sample size utilized in this study, as well as the depth of analysis, provides further evidence that the aperiodic component of the resting EEG signal is altered with aging and should be considered when investigating neural oscillatory activity.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Lower Aperiodic EEG Activity is Associated with Reduced Verbal Fluency Performance Across Adulthood 98%
- Connectivity dynamics and cognitive variability during aging 96%
- Age-related auditory nerve deficits propagate central gain throughout the auditory system: Associations with cortical microstructure and speech recognition 96%
Similar papers in this journal
- Event-Induced Modulation of Aperiodic Background EEG: Attention-Dependent and Age-Related Shifts in E:I balance, and Their Consequences for Behavior 97%
- Predicting brain age across the adult lifespan with spontaneous oscillations and functional coupling in resting brain networks captured with magnetoencephalography 96%
- Developmental changes in individual alpha frequency: Recording EEG data during public engagement events 96%
Similar papers in this journal
- The heartbeat-evoked potential in young and older adults during attention orienting 96%
- The relationship between task-related aperiodic EEG activity, neural inefficiency and verbal working memory in younger and older adults 95%
- Early development of electrophysiological activity: contribution of periodic and aperiodic components of the EEG signal 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.