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  • 1.
    Campbell, T. A.
    et al.
    Department of Psychology and Logopedics, Faculty of Medicine, University of Helsinki, Helsinki, Finland.
    Marsh, John E.
    University of Gävle, Faculty of Engineering and Sustainable Development, Department of Building, Energy and Environmental Engineering, Environmental psychology. School of Psychology, University of Central Lancashire, Preston, UK.
    On corticopetal-corticofugal loops of the new early filter: from cell assemblies to the rostral brainstem2019In: NeuroReport, ISSN 0959-4965, E-ISSN 1473-558X, Vol. 30, no 3, p. 202-206Article in journal (Refereed)
  • 2.
    Evstigneeva, Maria D.
    et al.
    Department of Higher Nervous Activity and Psychophysiology, Saint Petersburg State University, Saint Petersburg, Russia.
    Alexandrov, Alexander A.
    Department of Higher Nervous Activity and Psychophysiology, Saint Petersburg State University, Saint Petersburg, Russia.
    Mathiassen, Svend Erik
    University of Gävle, Faculty of Health and Occupational Studies, Department of Occupational and Public Health Sciences, CBF. University of Gävle, Centre for Musculoskeletal Research.
    Lyskov, Eugene
    University of Gävle, Faculty of Health and Occupational Studies, Department of Occupational and Public Health Sciences, CBF. University of Gävle, Centre for Musculoskeletal Research.
    Muscle contraction force and fatigue: Effects on mismatch negativity2010In: NeuroReport, ISSN 0959-4965, E-ISSN 1473-558X, Vol. 21, no 18, p. 1152-1156Article in journal (Refereed)
    Abstract [en]

    Muscle load can affect performance of concurrent cognitive task. This effect is often explained by limited resources in the voluntary attention system. To examine whether earlier stages of cognitive information processing might be affected, we recorded the Mismatch Negativity component (MMN) of the auditory event-related brain potential before, during and after sustained handgrip at 7% and 30% of maximal voluntary contraction. MMN is an index of automatic detection of a deviating auditory event. MMN was not affected by force level. However, its amplitude at fronto-central sites decreased during the fatiguing 30% contraction, while it tended to increase during the light 7% work. Thus, muscle fatigue may affect auditory information processing at preattentive and preconscious stages, which could modify cognitive performance

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