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青春期睡眠脑电图的频谱分析。

Spectral analysis of the sleep electroencephalogram during adolescence.

作者信息

Jenni Oskar G, Carskadon Mary A

机构信息

E. P. Bradley Hospital Chronobiology and Sleep Research Laboratory, Department of Psychiatry and Human Behavior, Brown Medical School, Providence, RI, USA.

出版信息

Sleep. 2004 Jun 15;27(4):774-83.

Abstract

OBJECTIVES

To describe developmental changes of the human sleep electroencephalogram (EEG) during adolescence using EEG spectral analysis and specifically to compare the nocturnal dynamics of slow-wave activity (EEG spectral power 0.6-4.6 Hz, a marker for sleep homeostatic pressure) in prepubertal and mature adolescents.

DESIGN

After 10 nights on a fixed 10-hour sleep schedule without daytime naps, participants were studied during a 10-hour baseline night.

SETTING

Data were collected in a 4-bed sleep research laboratory.

PARTICIPANTS

Eight prepubertal children (pubertal stage Tanner 1; mean age 11.3 years, SD +/- 1.2, 4 boys) and 8 mature adolescents (Tanner 5; mean age 14.1 years, +/- 1.3, 3 boys).

INTERVENTIONS

Not applicable.

MEASUREMENTS

All-night polysomnography was performed. Sleep stages were scored according to conventional criteria. EEG power spectra (of derivation C3/A2) were calculated using a fast Fourier transform routine.

RESULTS

A reduction of non-rapid eye movement (NREM) sleep stage 4 (by 40.1%) and greater amounts of stage 2 sleep (19.7%) were found in mature compared to prepubertal adolescents. NREM sleep EEG power was lower in the frequency ranges < 7 Hz, 11.8 to 12.6 Hz, and 16.2 to 16.8 Hz in mature adolescents. A reduction of rapid eye movement sleep spectral power was present in the frequency ranges < 8.6 Hz and 9.6 to 15 Hz for mature compared to prepubertal adolescents. Slow-wave activity showed identical dynamics within individual NREM sleep episodes and across the night in both developmental groups.

CONCLUSIONS

The homeostatic recuperative drive during sleep remains unchanged across puberty. The decline of slow-wave sleep during adolescence may reflect developmental changes of the brain rather than changes of sleep regulatory processes.

摘要

目的

利用脑电图频谱分析描述青春期人类睡眠脑电图(EEG)的发育变化,特别是比较青春期前和成熟青少年夜间慢波活动(EEG频谱功率0.6 - 4.6Hz,睡眠稳态压力的指标)的动态变化。

设计

在固定的10小时睡眠时间表且无日间小睡的情况下度过10晚后,参与者在一个10小时的基线夜间接受研究。

设置

数据在一个有4张床位的睡眠研究实验室收集。

参与者

8名青春期前儿童(青春期坦纳1期;平均年龄11.3岁,标准差±1.2,4名男孩)和8名成熟青少年(坦纳5期;平均年龄14.1岁,±1.3,3名男孩)。

干预措施

不适用。

测量方法

进行整夜多导睡眠图监测。根据传统标准对睡眠阶段进行评分。使用快速傅里叶变换程序计算脑电图功率谱(推导C3/A2)。

结果

与青春期前青少年相比,成熟青少年的非快速眼动(NREM)睡眠4期减少了40.1%,2期睡眠增加了19.7%。成熟青少年在<7Hz、11.8至12.6Hz和16.2至16.8Hz频率范围内的NREM睡眠脑电图功率较低。与青春期前青少年相比,成熟青少年在<8.6Hz和9.6至15Hz频率范围内的快速眼动睡眠频谱功率降低。在两个发育组中,慢波活动在个体NREM睡眠期间以及整个夜间均表现出相同的动态变化。

结论

睡眠期间的稳态恢复驱动力在青春期保持不变。青春期慢波睡眠的减少可能反映了大脑的发育变化而非睡眠调节过程的变化。

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