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Altered neural processes underlying executive function in occupational burnout: Basis for a novel EEG biomarker

Tutkimustuotos: ArtikkeliTieteellinenvertaisarvioitu

5 Sitaatiot (Scopus)
29 Lataukset (Pure)

Abstrakti

Introduction: As burnout has become a global pandemic, there is a call for improved understanding and detection of alterations in brain functions related to it. We have previously reported challenges in executive functions (EFs) in daily life, especially in metacognition, in subjects with occupational burnout, along with alterations in cardiac physiology. In the current study, we focused on the impact of burnout on brain physiology during a task requiring EF. Methods: Fifty-four volunteers filled in inventories of burnout, depression, and EF in daily life (BBI-15, BDI, and BRIEF-A). Based on the BBI-15 score, subjects were divided into burnout and non-burnout groups. Subjects performed a Go/NoGo test (Executive RT test) engaging several EFs, while their EEG was recorded. The inventory scores, cognitive performance scores, and event-related potential (N2, P3) amplitudes, latencies, and interpeak latencies (IPLs) were compared between the groups. Results: There were significant differences in the BDI and BRIEF-A scores between the groups, with more symptoms of depression and challenges in daily life in the burnout group. There were no differences in objective performance measures in the EF task between the groups. However, centroparietal P3 amplitude was larger, and while there were no differences in N2 or P3 latencies, N2-P3 IPL was longer in the Go condition in the burnout than in non-burnout group. Both ERP measures correlated significantly with burnout symptoms. A regression model from centroparietal P3 amplitude and N2-P3 IPL predicted significantly both the BBI-15 score and the BRIEF-A metacognition index. Discussion: We conclude that burnout is linked with challenges in EF in daily life and alterations in the underlying neural processes. While cognitive performance in the task was equal, electrophysiological measures differed between the groups. Prolonged N2-P3 IPL points toward slowed transition from one cognitive process to another. Increased P3 amplitude, on the other hand, reflects increased allocation of neural processing resources. This may be a compensatory mechanism, allowing for equal performance with controls. These electrophysiological measures, obtained during the EF task, show promise as brain physiology-based biomarkers of burnout, contributing to its improved and objective detection. In addition, these results indicate occupational burnout is linked with objective alterations in brain physiology.

AlkuperäiskieliEnglanti
Artikkeli1194714
Sivumäärä12
JulkaisuFrontiers in Human Neuroscience
Vuosikerta17
DOI - pysyväislinkit
TilaJulkaistu - 2023
OKM-julkaisutyyppiA1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä

Rahoitus

This research was funded by the Finnish Ministry of Social Affairs and Health from the European Social Fund’s (ESF) Program for Sustainable Growth and Jobs 2014–2020 Finnish structural fund (Sustainable Brain Health, S21966) and partly supported by the State funding for university-level health research, Tampere University Hospital, Wellbeing services county of Pirkanmaa.

RahoittajatRahoittajan numero
Program for Sustainable Growth and Jobs 2014–2020 Finnish structural fund
Sustainable Brain HealthS21966
European Social Fund
Sosiaali- ja terveysministeriö

    YK:n kestävän kehityksen tavoitteet

    Tämä tuotos edistää seuraavia kestävän kehityksen tavoitteita:

    1. SDG 3 – Hyvä terveys ja hyvinvointi
      SDG 3 – Hyvä terveys ja hyvinvointi

    Julkaisufoorumi-taso

    • Jufo-taso 1

    !!ASJC Scopus subject areas

    • Neuropsychology and Physiological Psychology
    • Neurology
    • Psychiatry and Mental health
    • Biological Psychiatry
    • Behavioral Neuroscience

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