Related Experiment Video
Updated: Nov 4, 2025

Infant Auditory Processing and Event-related Brain Oscillations
Published on: July 1, 2015
EEG Phase-Amplitude Coupling Strength and Phase Preference: Association with Age over the First Three Years after
Michael G Mariscal1, April R Levin2, Laurel J Gabard-Durnam3
1Department of Neurology, Boston Children's Hospital, Harvard Medical School, Boston, MA 02115.
Insights
Phase-amplitude coupling (PAC) in the brain increases with age in young children. This neural communication pattern shows distinct regional preferences that develop over time, aiding brain integration.
Area of Science:
- Neuroscience
- Developmental Neuroscience
- Computational Neuroscience
Background:
- Phase-amplitude coupling (PAC) links slow and fast brain oscillations, crucial for neural communication.
- Brain development in early life involves significant changes, but PAC development is understudied.
Purpose of the Study:
- To investigate the developmental trajectory of PAC in infants and young children.
- To identify age-related changes in PAC strength and spatial distribution.
Main Methods:
- Analyzed electroencephalography (EEG) data from 98 children (3 months to 3 years).
- Utilized non-parametric clustering to detect significant PAC across frequency pairs and electrode sites.
- Examined correlations between PAC metrics and participant age.
Main Results:
- PAC, particularly between alpha-beta and gamma frequencies, significantly increased with age (p < 0.00001).
- Distinct regional PAC patterns emerged: gamma coupled with the rising alpha-beta phase anteriorly and the falling phase posteriorly.
- These regional phase preferences intensified with age.
Conclusions:
- PAC strengthens and becomes more spatially organized during early childhood.
- Developing PAC patterns may reflect specialized neural processing (feedback/feedforward) in different brain regions.
- Findings offer insights into neural integration during critical developmental periods.
Abstract:
Phase-amplitude coupling (PAC), the coupling of the phase of slower electrophysiological oscillations with the amplitude of faster oscillations, is thought to facilitate dynamic integration of neural activity in the brain. Although the brain undergoes dramatic change and development during the first few years of life, how PAC changes through this developmental period has not been extensively studied. Here, we examined PAC through electroencephalography (EEG) data collected during an awake, eyes-open EEG collection paradigm in 98 children between the ages of three months and three years. We employed non-parametric clustering methods to identify areas of significant PAC across a range of frequency pairs and electrode locations, and examined how PAC strength and phase preference develops in these areas. We found that PAC, primarily between the α-β and γ frequencies, was positively correlated with age from early infancy to early childhood (p = 2.035 × 10-6). Additionally, we found γ over anterior electrodes coupled with the rising phase of the α-β waveform, while γ over posterior electrodes coupled with the falling phase of the α-β waveform; this regionalized phase preference became more prominent with age. This opposing trend may reflect each region's specialization toward feedback or feedforward processing, respectively, suggesting opportunities for back translation in future studies.
More Related Videos
08:25Combined Invasive Subcortical and Non-invasive Surface Neurophysiological Recordings for the Assessment of Cognitive and Emotional Functions in Humans
Published on: May 19, 2016
12:48Investigating Social Cognition in Infants and Adults Using Dense Array Electroencephalography dEEG
Published on: June 27, 2011