Parameter pattern discovery in nonlinear dynamic model for EEGs analysis

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초록

We propose a nonlinear dynamic model for an invasive electroencephalogram analysis that learns the optimal parameters of the neural population model via the Levenberg-Marquardt algorithm. We introduce the crucial windows where the estimated parameters present patterns before seizure onset. The optimal parameters minimizes the error between the observed signal and the generated signal by the model. The proposed approach effectively discriminates between healthy signals and epileptic seizure signals. We evaluate the proposed method using an electroencephalogram dataset with normal and epileptic seizure sequences. The empirical results show that the patterns of parameters as a seizure approach and the method is efficient in analyzing nonlinear epilepsy electroencephalogram data. The accuracy of estimating the optimal parameters is improved by using the nonlinear dynamic model.

키워드

Epileptic seizure; nonlinear dynamic model; neurons population; electroencephalogram; parameter changes; CORRELATION DIMENSION; PREDICTION; PREDICTABILITY; SIGNALS
제목
Parameter pattern discovery in nonlinear dynamic model for EEGs analysis
저자
Kim, Sun-Hee; Faloutsos, Christos; Yang, Hyung-Jeong; Lee, Seong-Whan
DOI
10.1142/S0219635216500242
발행일
2016-09
유형
Article
저널명
Journal of Integrative Neuroscience
권
15
호
3
페이지
381 ~ 402