• Title of article

    EEG differences in children as a function of resting-state arousal level

  • Author/Authors

    Robert J. Barry، نويسنده , , Adam R. Clarke، نويسنده , , Rory McCarthy، نويسنده , , Mark Selikowitz، نويسنده , , Jacqueline A. Rushby، نويسنده , , Elizabeta Ploskova، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2004
  • Pages
    7
  • From page
    402
  • To page
    408
  • Abstract
    Objective: This study aimed to explore the basis of a theoretical position which has major impact in the current literature on attention-deficit/hyperactivity disorder (AD/HD) – that the ratio of theta to beta power in the EEG (the theta/beta ratio) represents central nervous system (CNS) arousal. Methods: Resting state topographic EEG activity was investigated as a function of CNS arousal in normal right-handed boys. Arousal was defined in terms of electrodermal activity, which has a long history in Psychology as a measure of CNS arousal. Results: Relative delta, theta, and beta power, and the theta/beta ratio, failed to differ significantly between age-matched groups which differed markedly in skin conductance level and non-specific electrodermal fluctuations. The high-arousal group showed significantly lower levels of relative alpha power, particularly in posterior and hemispheric regions, with higher alpha frequencies in these areas. Conclusions: These data fail to support the theoretical linkage between the theta/beta ratio and CNS arousal. Further work is needed to disentangle the different correlates of arousal and task-related activation, particularly in cognitive and attentional-processing terms. Significance: The outcomes of this study, in addition to clarifying the nature of EEG markers of CNS arousal, have important implications for our understanding of AD/HD, as they require re-evaluation of current models of the disorder.
  • Keywords
    Theta/beta ratio , attention deficit/hyperactivity disorder , Arousal , Electrodermal activity
  • Journal title
    Clinical Neurophysiology
  • Serial Year
    2004
  • Journal title
    Clinical Neurophysiology
  • Record number

    522899