Associations between pre-stimulus alpha power, hearing level and performance in a digits-in-noise task.

Baseline electroencephalography (EEG) alpha power, i.e. that measured prior to stimulus presentation, is a potential objective predictor of task performance. Here we assessed the predictive power of EEG alpha on performance accuracy in a digits-in-noise recognition task, factoring in hearing thresho...

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Detalles Bibliográficos
Publicado en:International Journal of Audiology Vol. 61; no. 3; pp. 197 - 205
Autores principales: Alhanbali, Sara, Munro, Kevin J., Dawes, Piers, Perugia, Emanuele, Millman, Rebecca E.
Formato: research tables/charts Journal Article
Publicado: Taylor & Francis Ltd Mar2022
Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:Baseline electroencephalography (EEG) alpha power, i.e. that measured prior to stimulus presentation, is a potential objective predictor of task performance. Here we assessed the predictive power of EEG alpha on performance accuracy in a digits-in-noise recognition task, factoring in hearing thresholds and age. EEG alpha power, recorded while participants listened to target digits presented in a noise background, was analysed during two different baseline periods: i) a pre-stimulus baseline (pre-STIM) free from any acoustic stimulus, and ii) a pre-target baseline (pre-TARG) recorded in background noise only. Eighty-five participants with either normal hearing or aided hearing impairment (age range: 55–85 years old, 42 male). Hierarchical multiple regression analyses indicated that i) lower hearing thresholds and, to a lesser extent, higher pre-STIM alpha power were associated with improved performance accuracy ii) alpha power in pre-STIM and pre-TARG were highly correlated across individuals but pre-TARG alpha power was not a significant predictor of performance accuracy. Investigations of baseline EEG alpha power as a predictor of speech-in-noise performance accuracy should control for associations between hearing thresholds and measures of EEG baseline periods.