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Approximate entropy in the electroencephalogram during wake and sleep.

机译:脑电图在唤醒和睡眠过程中的近似熵。

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摘要

Entropy measurement can discriminate among complex systems, including deterministic, stochastic and composite systems. We evaluated the changes of approximate entropy (ApEn) in signals of the electroencephalogram (EEG) during sleep. EEG signals were recorded from eight healthy volunteers during nightly sleep. We estimated the values of ApEn in EEG signals in each sleep stage. The ApEn values for EEG signals (mean +/- SD) were 0.896 +/- 0.264 during eyes-closed waking state, 0.738 +/- 0.089 during Stage I, 0.615 +/- 0.107 during Stage II, 0.487 +/- 0.101 during Stage II, 0.397 +/- 0.078 during Stage IV and 0.789 +/- 0.182 during REM sleep. The ApEn values were found to differ with statistical significance among the six different stages of consciousness (ANOVA, p<0.001). ApEn of EEG was statistically significantly lower during Stage IV and higher during wake and REM sleep. We conclude that ApEn measurement can be useful to estimate sleep stages and the complexity in brain activity.
机译:熵的度量可以区分复杂的系统,包括确定性,随机和复合系统。我们评估了睡眠期间脑电图(EEG)信号中的近似熵(ApEn)的变化。在夜间睡眠期间,从八名健康志愿者处记录了脑电信号。我们估计了每个睡眠阶段脑电信号中ApEn的值。闭眼苏醒状态下脑电信号的ApEn值(平均+/- SD)为0.896 +/- 0.264,第一阶段为0.738 +/- 0.089,第二阶段为0.615 +/- 0.107,第二阶段为0.487 +/- 0.101 II期,IV期为0.397 +/- 0.078,REM睡眠时为0.789 +/- 0.182。发现在六个不同意识阶段之间,ApEn值存在统计学差异(ANOVA,p <0.001)。脑电图的ApEn在IV期显着降低,在苏醒和REM睡眠期间显着升高。我们得出结论,ApEn测量值可用于估计睡眠阶段和大脑活动的复杂性。

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