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A comparison analysis of embedding dimensions between normal and epileptic EEG time series.

机译:正常和癫痫脑电时间序列的嵌入尺寸比较分析。

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摘要

The embedding dimensions of normal and epileptic electroencephalogram (EEG) time series are analyzed by two different methods, Cao's method and differential entropy method. The results of the two methods indicate consistently that the embedding dimensions of EEG signals during seizure will change and become different from that of normal EEG signals, and the embedding dimensions will vary intensively during seizure, whereas the embedding dimensions of normal EEG signals basically maintains stability. The embedding dimension results also reflect the variation of freedom degree of the human brain nonlinear dynamic system (NDS) during seizure. And based on the results of Cao's method, it is also found that normal EEG signals are of some degree of randomness, whereas epileptic EEG signals have determinism.
机译:正常脑电图和癫痫脑电图(EEG)时间序列的嵌入维度通过两种不同的方法进行了分析:曹氏法和微分熵法。两种方法的结果一致表明,癫痫发作期间脑电信号的嵌入尺寸将发生变化并变得不同于正常脑电信号,并且在癫痫发作过程中嵌入尺寸将发生剧烈变化,而正常脑电信号的嵌入尺寸基本上保持稳定性。嵌入维数结果还反映了癫痫发作期间人脑非线性动力学系统(NDS)自由度的变化。并且根据曹氏方法的结果,还发现正常的脑电信号具有一定程度的随机性,而癫痫的脑电信号具有确定性。

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