[Electroencephalogram power development of cognitive function at age 7 to 12 years: a comparative study between

Q R Cheng1, H J Shen, W J Tu

  • 1Children's Health Research Center, the Affiliated Children's Hospital, Nantong University(Changzhou Children's Hospital), Changzhou 213000, China.

Insights

Attention deficit hyperactivity disorder (ADHD) children exhibit higher slow brainwave activity (theta spectrum) compared to neurotypical children. This EEG difference, particularly in the parietal region, may indicate altered cognitive function and brain development in ADHD.

Area of Science:

  • Neuroscience
  • Developmental Psychology
  • Pediatrics

Background:

  • Attention deficit hyperactivity disorder (ADHD) is a neurodevelopmental disorder affecting children's behavior and cognition.
  • Electroencephalogram (EEG) measures brain electrical activity, offering insights into cognitive processes and development.
  • Understanding EEG differences in ADHD can aid in diagnosis and intervention strategies.

Purpose of the Study:

  • To compare brain electrical activity and development in children with ADHD versus typically developing children.
  • To analyze specific EEG power spectrums (theta, alpha, beta) during cognitive tasks.
  • To investigate age-related changes in EEG patterns in both groups.

Main Methods:

  • A prospective case-control study involving 110 children with ADHD and 116 normal children (ages 7-12).
  • EEG recordings were obtained during attention tasks.
  • Comparative analysis of absolute and relative EEG power spectrums (theta, alpha, beta).

Main Results:

  • Children with ADHD showed significantly higher absolute theta power in the parietal region (Pz lead) compared to controls.
  • ADHD group exhibited elevated relative theta power (θ/total, θ/α, θ/β) and lower relative alpha power (α/total).
  • Both groups demonstrated an age-related decline in theta relative power, with a linear correlation in normal children but not in ADHD.

Conclusions:

  • ADHD children display distinct EEG power spectrum characteristics, notably higher slow-wave activity.
  • The theta/beta (θ/β) ratio serves as a sensitive indicator for assessing cognitive function in ADHD.
  • EEG analysis provides valuable biomarkers for understanding ADHD-related brain differences and development.