Analysis of Epileptic Seizures Stages through Attractor Dynamics

V. Ghizdovat, L. Dobreci, A. Șlicaru, M. Cristuță, D. Dimitriu, Cipriana Stefanescu, D. Vasincu, Razvan-V. Ababei, C. Volovăț, M. Agop, Lucian Eva, S. Volovat
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Abstract

By employing mathematical procedures specific to non-linear dynamics, we devised a method for analyzing all the stages of an epileptic crisis. It can be seen that a specific attractor (reconstructed in the states space by time delay method) can be associated with each stage of the brain dynamics: normal functioning and epileptic crisis (pre-crisis, epileptic seizure, post-crisis). Moreover, since for each attractor a Hurst coefficient can be determined, we can state that each stage of an epileptic seizure can be characterized either by calculating the specific Hurst coefficient, or by calculating its fractal dimension.
通过吸引力动力学分析癫痫发作阶段
通过采用非线性动力学特有的数学程序,我们设计出了一种分析癫痫危机所有阶段的方法。可以看出,大脑动力学的每个阶段(正常功能和癫痫危机(危机前、癫痫发作、危机后))都有一个特定的吸引子(通过时间延迟法在状态空间中重建)。此外,由于可以确定每个吸引子的赫斯特系数,我们可以说,癫痫发作的每个阶段都可以通过计算特定的赫斯特系数或计算其分形维度来表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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