• DocumentCode
    636917
  • Title

    Mental fatigue and working memory load estimation: Interaction and implications for EEG-based passive BCI

  • Author

    Roy, Raphaelle N. ; Bonnet, Stephane ; Charbonnier, Sylvie ; Campagne, Aurelie

  • Author_Institution
    CEA/LETI/DTBS, Grenoble, France
  • fYear
    2013
  • fDate
    3-7 July 2013
  • Firstpage
    6607
  • Lastpage
    6610
  • Abstract
    Current mental state monitoring systems, a.k.a. passive brain-computer interfaces (pBCI), allow one to perform a real-time assessment of an operator´s cognitive state. In EEG-based systems, typical measurements for workload level assessment are band power estimates in several frequency bands. Mental fatigue, arising from growing time-on-task (TOT), can significantly affect the distribution of these band power features. However, the impact of mental fatigue on workload (WKL) assessment has not yet been evaluated. With this paper we intend to help fill in this lack of knowledge by analyzing the influence of WKL and TOT on EEG band power features, as well as their interaction and its impact on classification performance. Twenty participants underwent an experiment that modulated both their WKL (low/high) and time spent on the task (short/long). Statistical analyses were performed on the EEG signals, behavioral and subjective data. They revealed opposite changes in alpha power distribution between WKL and TOT conditions, as well as a decrease in WKL level discriminability with increasing TOT in both number of statistical differences in band power and classification performance. Implications for pBCI systems and experimental protocol design are discussed.
  • Keywords
    brain-computer interfaces; cognition; electroencephalography; EEG based passive BCI; WKL assessment; WKL level discriminability; alpha power distribution; band power features; cognitive state; mental fatigue estimation; mental state monitoring systems; passive brain-computer interfaces; real time assessment; time-on-task; working memory load estimation; Accuracy; Brain-computer interfaces; Electrodes; Electroencephalography; Electronic mail; Fatigue; Time-frequency analysis; Adult; Brain-Computer Interfaces; Diagnostic Imaging; Electroencephalography; Female; Humans; Male; Memory; Mental Fatigue;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Engineering in Medicine and Biology Society (EMBC), 2013 35th Annual International Conference of the IEEE
  • Conference_Location
    Osaka
  • ISSN
    1557-170X
  • Type

    conf

  • DOI
    10.1109/EMBC.2013.6611070
  • Filename
    6611070