A new perspective on binaural beats: Investigating the effects of spatially moving sounds on human mental states

Author:

Sudre SaloméORCID,Kronland-Martinet RichardORCID,Petit Laetitia,Rozé Jocelyn,Ystad Sølvi,Aramaki Mitsuko

Abstract

When individuals are exposed to two pure tones with close frequencies presented separately in each ear, they perceive a third sound known as binaural beats (BB), characterized by a frequency equal to the difference between the two tones. Previous research has suggested that BB may influence brain activity, potentially benefiting attention and relaxation. In this study, we hypothesized that the impact of BB on cognition and EEG is linked to the spatial characteristics of the sound. Participants listened to various types of spatially moving sounds (BB, panning and alternate beeps) at 6Hz and 40Hz frequencies. EEG measurements were conducted throughout the auditory stimulation, and participants completed questionnaires on relaxation, affect, and a sustained attention task. The results indicated that binaural, panning sounds and alternate beeps had a more pronounced effect on electrical brain activity than the control condition. Additionally, an improvement in relaxation was observed with these sounds at both 6Hz and 40Hz. Overall, these findings support our hypothesis that the impact of auditory stimulation lies in the spatial attributes rather than the sensation of beating itself.

Funder

Aix-Marseille Université

Publisher

Public Library of Science (PLoS)

Reference55 articles.

1. EEG oscillations: From correlation to causality;CS Herrmann;Int J Psychophysiol,2016

2. A comprehensive review of the psychological effects of brainwave entrainment;TL Huang;Altern Ther Health Med,2008

3. The effect of rhythmic auditory stimulation on the human electroencephalogram;D. Goldman;Electroencephalogr Clin Neurophysiol,1952

4. Auditory driving observed with scalp electrodes in normal subjects;A. Neher;Electroencephalogr Clin Neurophysiol,1961

5. Brain wave synchronization and entrainment to periodic acoustic stimuli;U Will;Neurosci Lett,2007

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