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Effects of auditory sleep modulation approaches on brain oscillatory and cardiovascular dynamics

Huwiler, Stephanie; Carro Dominguez, Manuel; Huwyler, Silja; Kiener, Luca; Stich, Fabia M; Sala, Rossella; Aziri, Florent; Trippel, Anna; Schmied, Christian; Huber, Reto; Wenderoth, Nicole; Lustenberger, Caroline (2022). Effects of auditory sleep modulation approaches on brain oscillatory and cardiovascular dynamics. Sleep, 45(9):zsac155.

Abstract

Slow waves, the hallmark feature of deep nonrapid eye movement sleep, do potentially drive restorative effects of sleep on brain and body functions. Sleep modulation techniques to elucidate the functional role of slow waves thus have gained large interest. Auditory slow wave stimulation is a promising tool; however, directly comparing auditory stimulation approaches within a night and analyzing induced dynamic brain and cardiovascular effects are yet missing. Here, we tested various auditory stimulation approaches in a windowed, 10 s ON (stimulations) followed by 10 s OFF (no stimulations), within-night stimulation design and compared them to a SHAM control condition. We report the results of three studies and a total of 51 included nights and found a large and global increase in slow-wave activity (SWA) in the stimulation window compared to SHAM. Furthermore, slow-wave dynamics were most pronouncedly increased at the start of the stimulation and declined across the stimulation window. Beyond the changes in brain oscillations, we observed, for some conditions, a significant increase in the mean interval between two heartbeats within a stimulation window, indicating a slowing of the heart rate, and increased heart rate variability derived parasympathetic activity. Those cardiovascular changes were positively correlated with the change in SWA, and thus, our findings provide insight into the potential of auditory slow wave enhancement to modulate cardiovascular restorative conditions during sleep. However, future studies need to investigate whether the potentially increased restorative capacity through slow-wave enhancements translates into a more rested cardiovascular system on a subsequent day.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:04 Faculty of Medicine > University Children's Hospital Zurich > Medical Clinic
04 Faculty of Medicine > Psychiatric University Hospital Zurich > Department of Child and Adolescent Psychiatry
04 Faculty of Medicine > Neuroscience Center Zurich
04 Faculty of Medicine > University Hospital Zurich > Clinic for Cardiology
Dewey Decimal Classification:610 Medicine & health
Scopus Subject Areas:Health Sciences > Neurology (clinical)
Health Sciences > Physiology (medical)
Uncontrolled Keywords:auditory stimulation, cardiovascular recovery, heart rate variability, slow waves.
Language:English
Date:8 September 2022
Deposited On:29 Sep 2022 06:00
Last Modified:28 Aug 2024 01:36
Publisher:American Academy of Sleep Medicine
ISSN:0161-8105
OA Status:Hybrid
Free access at:PubMed ID. An embargo period may apply.
Publisher DOI:https://doi.org/10.1093/sleep/zsac155
PubMed ID:35793672
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  • Language: English
  • Licence: Creative Commons: Attribution 4.0 International (CC BY 4.0)

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