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Non-linear analysis of EEG and HRV signals during sleep

机译:睡眠期间脑电图和HRV信号的非线性分析

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The sleep phenomenon is a complex process that involves fluctuations of autonomic functions such as the blood pressure, temperature and brain function. These fluctuations change their properties through the different sleep stages with specific relations among the different systems. In order to understand the relation between the cardiovascular and central nervous system at the different sleep stages, we applied different non-linear methods to the energy of electroencephalographic signal (EEG) and the heart rate fluctuations. The EEG was divided in the Delta, Theta, Alpha and Beta frequency bands and the mean energy of these bands was computed at each heart rate interval. Thus, the non-linear relation was evaluated between the energy of the EEG bands and the heart rate fluctuations using Cross-Correlation, Cross-Sample Entropy and Recurrence Quantification Analysis in segments of 5 minutes grouped by sleep stage. The results showed that a relation exists between the changes of the energy in the Delta band and the Heart rate fluctuations.
机译:睡眠现象是一个复杂的过程,涉及诸如血压,温度和脑部功能等自主功能的波动。这些波动通过不同系统之间特定关系的不同睡眠阶段来改变其特性。为了了解不同睡眠阶段心血管系统与中枢神经系统之间的关系,我们对脑电信号能量(EEG)和心率波动应用了不同的非线性方法。脑电图分为Delta,Theta,Alpha和Beta频段,并在每个心率间隔计算这些频段的平均能量。因此,在5分钟内按睡眠阶段分组的互相关,互样本熵和递归量化分析评估了EEG频段的能量与心率波动之间的非线性关系。结果表明,Delta波段能量的变化与心率波动之间存在关系。

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