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Analyzing spike I wave electroencephalogram signals for epilepsy based on Hilbert-Huang transformation

机译:基于Hilbert-Huang变换的刺I波脑电图信号分析癫痫病

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In this paper, we use the Hilbert-Huang transform (HHT) analysis method to explore the time-frequency characteristics of spike waves for epilepsy symptoms. We obtained a sample of spike I wave and non-spike waves for HHT decomposition using a number of intrinsic mode functions of the Hilbert transform (HT) to determine the instantaneous spectrum, marginal spectrum, and Hilbert energy spectrum. We decomposed a number of intrinsic mode functions, the instantaneous spectrum and the Hilbert energy spectrum and compared the differences between spike and non-spike waves. The analysis results showed that the ratios of the normal wave to the referred total energy for IMF1, IMF2, and the residual function exceeded 10%. Furthermore, the ratios of the energy of the energy for IMF1, IMF2, IMF3 and the residual function of Spike I to their total energy also exceeded 10%. The ratios of the energy of IMF3 in the d band to its referred total energy for the EEG signal without spike wave, and of Spike I waves were 4.72%, and 6.75%, respectively. The ratios of the energy of IMF3 in the d band to its referred total energy for the EEG signal without spike wave is lower than that of the energy of IMF3 in the ν band to its referred total energy for the spike I wave.
机译:在本文中,我们使用希尔伯特-黄(Hilbert-Huang)变换(HHT)分析方法来探索峰值波用于癫痫症状的时频特征。我们使用Hilbert变换(HT)的许多固有模式函数来确定瞬时频谱,边际频谱和Hilbert能量频谱,从而获得了用于HHT分解的尖峰I波和非尖峰波的样本。我们分解了许多固有模式函数,瞬时频谱和希尔伯特能谱,并比较了尖峰波和非尖峰波之间的差异。分析结果表明,法向波与IMF1,IMF2的参考总能量之比以及残余函数均超过10%。此外,IMF1,IMF2,IMF3的能量能量和峰值I的剩余函数与它们的总能量之比也超过10%。 d波段中IMF3的能量与其不带尖峰波的EEG信号和尖峰I波的参考总能量之比分别为4.72%和6.75%。对于没有尖峰波的EE信号,d波段中IMF3的能量与其参考的总能量之比低于针对尖峰I波的ν波段中IMF3的能量与其参考的总能量之比。

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