Aeschbach D, Borbély AA
Institute of Pharmacology, University of Zürich, Zürich.
J Sleep Res. 1993 Jun;2(2):70-81. doi: 10.1111/j.1365-2869.1993.tb00065.x.
The dynamics of the sleep EEG were investigated by all-night spectral analysis of 51 sleep records. Power density was calculated for 1-Hz bins in the 0.25-25.0 Hz range. Values in non-rapid-eye-movement sleep (NREMS) were higher than in REMS in the 0.25-16.0 Hz range, and lower in the 18.25-22.0 Hz range. Power density in the 0.25-12.0 Hz range showed a declining trend over the first four NREMS episodes, which, depending on the frequency bin, could be approximated by non-linear or linear decay functions. In the frequency range of sleep spindles (12.25-15.0 Hz), power density in the 13.25-15.0 Hz band showed an increasing trend between NREMS episode 2 and NREMS episode 4. A correlation matrix of 25 1-Hz bins revealed for NREMS a negative correlation between slow-wave activity (SWA; 0.25-4.0 Hz) and activity in the spindle frequency range. This negative correlation was highest in the first NREMS episode and diminished progressively over the subsequent NREMS episodes. Within NREMS episodes, the values in the spindle frequency range showed a U-shaped time course, the trough coinciding with a high level of SWA. By contrast, in both the early and late part of the episode the two types of activity changed in the same direction. The results are consistent with recent electrophysiological studies indicating that the establishment of NREMS is associated with a progressive hyperpolarization of thalamocortical neurons during which the membrane potential exhibits oscillations first in the spindle frequency range and then in the range of SWA.
通过对51份睡眠记录进行整夜频谱分析,研究了睡眠脑电图的动态变化。计算了0.25 - 25.0 Hz范围内1 Hz频段的功率密度。在0.25 - 16.0 Hz范围内,非快速眼动睡眠(NREMS)中的值高于快速眼动睡眠(REMS),而在18.25 - 22.0 Hz范围内则较低。在0.25 - 12.0 Hz范围内的功率密度在前四个NREMS阶段呈下降趋势,根据频段不同,可用非线性或线性衰减函数近似。在睡眠纺锤波频率范围(12.25 - 15. Hz)内,13.25 - 15.0 Hz频段的功率密度在NREMS第2阶段和第4阶段之间呈上升趋势。25个1 Hz频段的相关矩阵显示,NREMS中慢波活动(SWA;0.25 - 4.0 Hz)与纺锤波频率范围内的活动呈负相关。这种负相关在第一个NREMS阶段最高,并在随后的NREMS阶段逐渐减弱。在NREMS阶段内,纺锤波频率范围内的值呈现U形时间进程,波谷与高水平的SWA重合。相比之下,在该阶段的早期和晚期,这两种活动类型的变化方向相同。这些结果与最近的电生理研究一致,表明NREMS的建立与丘脑皮质神经元的逐渐超极化有关,在此期间膜电位首先在纺锤波频率范围内,然后在SWA范围内出现振荡。