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Prediction of multifocal epileptogenic zones using normalized transfer entropy

机译:使用归一化转移熵预测多灶性癫痫发生区

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Stereo-EEG with multiple intra-cerebral depth electrodes is a pre-surgical tool for monitoring and analyzing the electrophysiological signals from the brain. The standard method of evaluating these signals by visually identifying the changes in the EEG signal is being slowly replaced by the transfer entropy that accurately accounts for non-linearity and incorporates dynamic interactions between the systems. Partial epilepsy can arise from a single focus or have multifocal onset. Knowing the number of epileptic foci and their location is essential to guide the choice of treatments recommended to the patient. Epilepsy that initially appears to be unifocal, based on simple visual analysis, may turn out to be multifocal on more detailed evaluation. In this paper, we computed the directional information transfer for all possible pairs of the 80 signals that were collected from the brain of an epileptic patient. We have localized the epileptogenic zones (EZs) and identified multiple seizure focal points in the patient from the plots obtained. Understanding such multifocal onset patients and avoiding focused surgical resections in such patients may be important to avoid surgical failures and morbidity.
机译:具有多个脑内深度电极的Stereo-EEG是用于监视和分析来自大脑的电生理信号的术前工具。通过视觉识别EEG信号变化来评估这些信号的标准方法正逐渐被传递熵所取代,该传递熵可准确地说明非线性并纳入系统之间的动态相互作用。部分性癫痫可以由单一病灶引起或多灶性发作。了解癫痫病灶的数量及其位置对于指导推荐给患者的治疗方法至关重要。根据简单的视觉分析,最初看来是单灶性的癫痫病可能会在更详细的评估后变成多灶性的。在本文中,我们计算了从癫痫患者大脑中收集的所有80对信号的所有可能方向的方向信息传递。我们已经确定了癫痫发生区(EZ),并从获得的地块中确定了患者的多个癫痫发作重点。了解此类多灶性发作的患者并避免此类患者的手术重点切除对于避免手术失败和发病可能很重要。

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