De Gennaro L, Ferrara M, Bertini M
Dipartimento di Psicologia, Universit degli Studi "La Sapienza," Roma, Italy.
Sleep Res Online. 2000;3(4):155-60.
Spindle density, visually scored in the 12-15 Hz range over antero-posterior midline derivations, was assessed during a baseline night in ten normal subjects. Sleep spindles were found to be highly variable between subjects and more abundant during Stage 2. Topographical distribution of spindle density showed a centroparietal prevalence, stable between NREM sleep stages. Intra-night variations of spindle density exhibited a linear increase across consecutive NREM episodes, suggesting an inverse relation with the time course of slow wave sleep. Except for occipital leads reaching a maximum during the third NREM cycle and then decreasing, changes in spindle density across sleep cycles were similar over different derivations. Intra-cycle variations fit a fourth-order polynomial curve with a minimum in the middle part of each sleep episode (when most slow wave sleep is expressed); this intra-cycle trend also seems stable between derivations and consecutive sleep cycles. These results confirm and extend, to the level of macroscopic EEG, the reciprocal relationship between sigma and delta waves previously shown by spectral analysis of EEG frequencies and, at a neuronal level in the thalamocortical network, by changes of membrane potentials that oscillate in the frequency range of spindles or delta at different levels of hyperpolarization.
在十名正常受试者的基线夜间睡眠期间,对前后中线导联上12 - 15赫兹范围内的纺锤波密度进行视觉评分评估。发现睡眠纺锤波在受试者之间差异很大,且在第二阶段更为丰富。纺锤波密度的地形图分布显示以中央顶叶为主,在非快速眼动睡眠阶段之间保持稳定。夜间纺锤波密度变化在连续的非快速眼动睡眠期间呈线性增加,表明与慢波睡眠的时间进程呈反比关系。除枕部导联在第三个非快速眼动睡眠周期达到最大值然后下降外,不同导联上睡眠周期中纺锤波密度的变化相似。周期内变化符合四阶多项式曲线,在每个睡眠阶段的中间部分(即慢波睡眠最明显时)达到最小值;这种周期内趋势在不同导联和连续睡眠周期之间似乎也很稳定。这些结果在宏观脑电图水平上证实并扩展了先前通过脑电图频率谱分析以及在丘脑皮质网络神经元水平上通过不同超极化水平下纺锤波或δ波频率范围内膜电位变化所显示的σ波和δ波之间的相互关系。