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青少年的有氧适能与睡眠中的大脑——一项初步研究。

Aerobic fitness and the sleeping brain of adolescents-a pilot study.

作者信息

Neikrug Ariel B, Mander Bryce A, Radom-Aizik Shlomit, Chen Ivy Y, Stehli Annamarie, Lui Kitty K, Chappel-Farley Miranda G, Dave Abhishek, Benca Ruth M

机构信息

Department of Psychiatry and Human Behavior, School of Medicine, University of California Irvine, Irvine, CA.

Center for the Neurobiology of Learning and Memory, University of California Irvine, Irvine, CA.

出版信息

Sleep Adv. 2021 Apr 9;2(1):zpab005. doi: 10.1093/sleepadvances/zpab005. eCollection 2021.

Abstract

STUDY OBJECTIVES

Aerobic fitness (AF) and sleep are major determinants of health in adolescents and impact neurocognitive and psychological development. However, little is known about the interactions between AF and sleep during the developmental transition experienced across adolescence. This study aimed to consider the relationships between AF and habitual sleep patterns and sleep neurophysiology in healthy adolescents.

METHODS

Subjects (mean age = 14.6 ± 2.3 years old, range 11-17, 11 females) were evaluated for AF (peak VO assessed by ramp-type progressive cycle ergometry in the laboratory), habitual sleep duration and efficiency (7-14 days actigraphy), and topographic patterns of spectral power in slow wave, theta, and sleep spindle frequencies in non-rapid eye movement (NREM) sleep using overnight polysomnography (PSG) with high-density electroencephalography (hdEEG, 128 channels).

RESULTS

Significant relationships were observed between peak VO and habitual bedtime ( = -0.650, = .009) and wake-up time ( = -0.603, = .017), with greater fitness associated with going to bed and waking up earlier. Peak VO significantly predicted slow oscillations (0.5-1 Hz, = .018) and theta activity (4.5-7.5 Hz, = .002) over anterior frontal and central derivations ( < .001 and = .001, respectively) after adjusting for sex and pubertal development stage. Similar associations were detected for fast sleep spindle activity (13-16 Hz, = .006), which was greater over temporo-parietal derivations.

CONCLUSIONS

Greater AF was associated with a more mature pattern of topographically-specific features of sleep EEG known to support neuroplasticity and cognitive processes and which are dependent on prefrontal cortex and hippocampal function in adolescents and adults. AF was also correlated with a smaller behavioral sleep phase delay commonly seen during adolescence.

摘要

研究目的

有氧适能(AF)和睡眠是青少年健康的主要决定因素,会影响神经认知和心理发展。然而,对于青少年发育转型期AF与睡眠之间的相互作用知之甚少。本研究旨在探讨健康青少年中AF与习惯性睡眠模式及睡眠神经生理学之间的关系。

方法

对受试者(平均年龄=14.6±2.3岁,年龄范围11 - 17岁,11名女性)进行AF评估(通过实验室斜坡式递增负荷运动心肺功能测试评估峰值摄氧量)、习惯性睡眠时间和睡眠效率(7 - 14天的活动记录仪监测),并使用具有高密度脑电图(hdEEG,128导)的夜间多导睡眠图(PSG)评估非快速眼动(NREM)睡眠中慢波、θ波和睡眠纺锤波频率的频谱功率地形图模式。

结果

观察到峰值摄氧量与习惯性就寝时间(r = -0.650,p = .009)和起床时间(r = -0.603,p = .017)之间存在显著关系,适能越高,上床睡觉和起床时间越早。在调整性别和青春期发育阶段后,峰值摄氧量显著预测前额叶前部和中央导联的慢振荡(0.5 - 1Hz,p = .018)和θ波活动(4.5 - 7.5Hz,p = .002)(分别为p < .001和p = .001)。在颞顶导联检测到快速睡眠纺锤波活动(13 - 16Hz,p = .006)也有类似关联,其活动更强。

结论

较高的AF与睡眠脑电图地形特异性特征的更成熟模式相关,这些特征已知可支持神经可塑性和认知过程,并且在青少年和成年人中依赖于前额叶皮质和海马功能。AF还与青少年期常见的较小行为性睡眠相位延迟相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1f9/10104369/ce90a0de20b3/zpab005_fig1.jpg

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