MURAL - Maynooth University Research Archive Library



    High-density event-related potentials: Current theories and practice


    Roche, Richard, Scanlon, P. and Commins, Sean (2006) High-density event-related potentials: Current theories and practice. Irish Psychologist, 33. pp. 1-4.

    [thumbnail of High_Density.pdf] PDF
    High_Density.pdf

    Download (1MB)

    Abstract

    Event-Related Potentials (ERPs) are changes in the ongoing electrical activity of the brain (Electroencephalograms, or EEGs) which are caused by the specific occurrence of a cognitive, motor or perceptual event. Any changes in EEG due to the demands of the task are amplified, averaged and extracted as ERP waveforms (see Figure 1). These wave-forms are measured as the difference between the electrical activity of a baseline reference electrode attached to an electrically inactive site, such as the mastoid bone below the ear or the naison on the nose, and the electrical activity of the areas of the brain covered by the electrodes. These changes allow neuroscientists to determine what areas of brain are being stimulated at a given time (and therefore which brain areas are involved in a given process), precisely when these areas become activated and what happens in these areas when people make an error.
    Item Type: Article
    Keywords: High-density; potentials; current theories;
    Academic Unit: Faculty of Science and Engineering > Psychology
    Item ID: 1019
    Depositing User: Richard Roche
    Date Deposited: 28 May 2008
    Journal or Publication Title: Irish Psychologist
    Publisher: Psychological Society of Ireland
    Refereed: Yes
    URI: https://mu.eprints-hosting.org/id/eprint/1019
    Use Licence: This item is available under a Creative Commons Attribution Non Commercial Share Alike Licence (CC BY-NC-SA). Details of this licence are available here

    Repository Staff Only (login required)

    Item control page
    Item control page

    Downloads

    Downloads per month over past year

    Origin of downloads