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Visualization of epileptogenic phenomena using cross-correlation analysis: localization of epileptic foci and propagation of epileptiform discharges

机译:使用互相关分析可视化癫痫发生现象:癫痫灶的定位和癫痫样放电的传播

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The main objectives of the preoperative evaluation of a patient with medically intractable epileptic seizures are localization of the foci and propagation of the epileptiform discharges. Electrocorticographic (ECoG) data of intractable focal epilepsy were analyzed using an AR model, wavelet analysis, and cross-correlation analysis. In order to derive the time-shifts, the cross correlations of the epileptiform discharges were calculated between electrodes for every unit of time. Further analyses mere made by means of a set of contour maps of the time-shifts and sequential two- and three-dimensional visualizations of the time-shift maps in order to localize the epileptic foci and study their propagation process. Two types of foci and propagation mere revealed in the results, In the first type, epileptiform discharges were generated at localized focal sites and spread quickly to other sites. In the second type, the foci of epileptiform discharges, which appeared soon after the former bursts, were localized at more than one site, and the discharges tended to spread more slowly. The findings suggest that epileptic phenomena can be caused by at least two kinds of mechanisms in one patient: in the former, the propagation might be mediated through synaptic projections, while in the latter, the extracellular diffusion of an excitatory factor might play an important role. In addition, our newly developed visualization technique for the localization of epileptic foci and the propagation of epileptiform discharges should prove useful in the study of epileptogenesis etiology.
机译:具有医学上顽固性癫痫发作的患者的术前评估的主要目标是病灶的定位和癫痫样放电的传播。使用AR模型,小波分析和互相关分析来分析顽固性局灶性癫痫的脑电图(ECoG)数据。为了得出时移,在每个单位时间的电极之间计算出癫痫样放电的互相关。仅通过一组时移轮廓图以及时移图的顺序二维和三维可视化就可以进行进一步分析,以便定位癫痫病灶并研究其传播过程。结果仅揭示了两种类型的病灶和传播,在第一种类型中,癫痫样放电在局部聚焦部位产生,并迅速扩散到其他部位。在第二种类型中,前者爆发后不久出现的癫痫样放电灶位于一个以上的部位,并且放电趋向于更缓慢地扩散。研究结果表明,癫痫现象可能由一名患者的至少两种机制引起:在前者中,传播可能是通过突触投射介导的,而在后者中,兴奋性因子的细胞外扩散可能起重要作用。 。此外,我们最新开发的可视化技术可用于癫痫病灶的定位和癫痫样放电的传播,在癫痫发生病因学研究中应被证明是有用的。

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