The time course of high-frequency bands (15-45 Hz) in all-night spectral analysis of sleep EEG

被引:30
作者
Ferri, R
Elia, M
Musumeci, SA
Pettinato, S
机构
[1] IRCCS, Sleep Res Ctr, I-94018 Troina, Italy
[2] IRCCS, Dept Neurol, I-94018 Troina, Italy
关键词
sleep; REM sleep; EEG power spectrum; high-frequency EEG bands; beta band; gamma band; fast Fourier transform;
D O I
10.1016/S1388-2457(00)00303-5
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Objective: The EEG spectral content of all-night sleep recordings obtained in 7 healthy young subjects, aged 18-20 years, including frequencies up to 45 Hz, was studied in order to detect eventual changes in the high-frequency range similar to those reported by magnetic field recording during REM sleep at 40 Hz. Methods: For this purpose, power spectra were calculated with a fast Fourier transform and the power of the bands ranging 0.75-4.50 Hz (Delta), 4.75-7.75 (Theta), 8.00-12.25 (Alpha), 12.50-15.00 (Sigma), 15.25-24.75 (Beta), 25.00-34.75 (Gamma1), and 35.00-44.75 (Gamma 2) was calculated for-the whole period of analysis (7 h). Also two additional time series: the ratio between Beta and Gamma2, and between Gamma1 and Gamma2 were calculated (Beta and Gamma ratios). Results: Beta and Gamma1 showed small changes with a tendency to increase during REM sleep; Gamma2, on the contrary, showed small changes with a tendency to decrease during REM sleep. Beta and Gamma ratio peaks were clearly correlated with the occurrence of REM sleep. The small changes shown by Beta, Gamma1 and Gamma2 were not statistically significant; on the contrary, Beta ratio and Gamma ratio showed the most important statistical significance values being highest during REM sleep and lowest during slow-wave sleep. Finally, the calculation of the linear correlation coefficient and of the cross-correlation between the different bands showed a clear reciprocity between Delta and Beta and Gamma ratios. Conclusions: Our study shows a new method for the analysis of high frequencies (up to 45 Nz) in the scalp-recorded sleep EEG which allowed us to better define, as compared to previous studies on the same topic, the changes in power characteristically associated with REM sleep and correlated with the REM/non-REM ultradian rhythm, and to propose it as a tool for future studies. (C) 2000 Elsevier Science Ireland Ltd. All rights reserved.
引用
收藏
页码:1258 / 1265
页数:8
相关论文
共 28 条
[1]   ALL-NIGHT DYNAMICS OF THE HUMAN SLEEP EEG [J].
AESCHBACH, D ;
BORBELY, AA .
JOURNAL OF SLEEP RESEARCH, 1993, 2 (02) :70-81
[2]  
[Anonymous], 1992, SLEEP, V15, P174
[3]  
Borbely A A, 1982, Hum Neurobiol, V1, P195
[4]  
Braitenberg V., 1978, Theoretical approaches to complex systems, P171
[5]   CHANGES IN SLEEP CYCLE PATTERNS WITH AGE [J].
FEINBERG, I .
JOURNAL OF PSYCHIATRIC RESEARCH, 1974, 10 (3-4) :283-306
[6]   COMPUTER-GRAPHICS ANALYSIS OF SLEEP-WAKEFULNESS STATE CHANGES AFTER PONTINE LESIONS [J].
FRIEDMAN, L ;
JONES, BE .
BRAIN RESEARCH BULLETIN, 1984, 13 (01) :53-68
[7]   TELE-ENCEPHALIC VERSUS CEREBELLAR CONTROL UPON PONTO-GENICULO-OCCIPITAL WAVES DURING PARADOXICAL SLEEP IN CAT [J].
GADEACIRIA, M .
EXPERIENTIA, 1976, 32 (07) :889-890
[8]  
GIUDITTA A, 1994, BEHAV BRAIN RES, V69, P1
[9]   Correlation of high-frequency oscillations with the sleep-wake cycle and cognitive activity in humans [J].
Gross, DW ;
Gotman, J .
NEUROSCIENCE, 1999, 94 (04) :1005-1018
[10]  
HARI R, 1993, ELECTROENCEPHALOGRAP, P1035