Strengthening sleep-autonomic interaction via acoustic enhancement of slow oscillations.
Autor: | Grimaldi D; Department of Neurology, Feinberg School of Medicine, Northwestern University, Chicago, IL., Papalambros NA; Department of Neurology, Feinberg School of Medicine, Northwestern University, Chicago, IL., Reid KJ; Department of Neurology, Feinberg School of Medicine, Northwestern University, Chicago, IL., Abbott SM; Department of Neurology, Feinberg School of Medicine, Northwestern University, Chicago, IL., Malkani RG; Department of Neurology, Feinberg School of Medicine, Northwestern University, Chicago, IL., Gendy M; Department of Neurology, Feinberg School of Medicine, Northwestern University, Chicago, IL., Iwanaszko M; Biostatistics Division, Feinberg School of Medicine, Northwestern University, Chicago, IL., Braun RI; Biostatistics Division, Feinberg School of Medicine, Northwestern University, Chicago, IL.; Department of Engineering Sciences and Applied Mathematics, Northwestern University, Evanston, IL., Sanchez DJ; SRI International, Menlo Park, CA., Paller KA; Department of Psychology, Northwestern University, Evanston, IL., Zee PC; Department of Neurology, Feinberg School of Medicine, Northwestern University, Chicago, IL. |
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Jazyk: | angličtina |
Zdroj: | Sleep [Sleep] 2019 May 01; Vol. 42 (5). |
DOI: | 10.1093/sleep/zsz036 |
Abstrakt: | Slow-wave sleep (SWS) is important for overall health since it affects many physiological processes including cardio-metabolic function. Sleep and autonomic nervous system (ANS) activity are closely coupled at anatomical and physiological levels. Sleep-related changes in autonomic function are likely the main pathway through which SWS affects many systems within the body. There are characteristic changes in ANS activity across sleep stages. Notably, in non-rapid eye-movement sleep, the progression into SWS is characterized by increased parasympathetic activity, an important measure of cardiovascular health. Experimental manipulations that enhance slow-wave activity (SWA, 0.5-4 Hz) can improve sleep-mediated memory and immune function. However, effects of SWA enhancement on autonomic regulation have not been investigated. Here, we employed an adaptive algorithm to deliver 50 ms sounds phase-locked to slow-waves, with regular pauses in stimulation (~5 s ON/~5 s OFF), in healthy young adults. We sought to determine whether acoustic enhancement of SWA altered parasympathetic activity during SWS assessed with heart rate variability (HRV), and evening-to-morning changes in HRV, plasma cortisol, and blood pressure. Stimulation, compared with a sham condition, increased SWA during ON versus OFF intervals. This ON/OFF SWA enhancement was associated with a reduction in evening-to-morning change of cortisol levels and indices of sympathetic activity. Furthermore, the enhancement of SWA in ON intervals during sleep cycles 2-3 was accompanied by an increase in parasympathetic activity (high-frequency, HRV). Together these findings suggest that acoustic enhancement of SWA has a positive effect on autonomic function in sleep. Approaches to strengthen brain-heart interaction during sleep could have important implications for cardiovascular health. (© Sleep Research Society 2019. Published by Oxford University Press on behalf of the Sleep Research Society. All rights reserved. For permissions, please e-mail journals.permissions@oup.com.) |
Databáze: | MEDLINE |
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