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颅内记录癫痫发作时脑电图复杂性的发作前期动态变化:一例报告

Preictal dynamics of EEG complexity in intracranially recorded epileptic seizure: a case report.

作者信息

Bob Petr, Roman Robert, Svetlak Miroslav, Kukleta Miloslav, Chladek Jan, Brazdil Milan

机构信息

Central European Institute of Technology (PB, RR, MK, JC, MB); Department of Physiology (RR, MS, MK); Department of Neurology (MB), Faculty of Medicine, Masaryk University, Brno; Center for Neuropsychiatric Research of Traumatic Stress (PB, MS, JC), Department of Psychiatry and UHSL, 1st Faculty of Medicine, Charles University, Prague; and Institute of Scientific Instruments, Academy of Sciences of the Czech Republic, Brno, Czech Republic.

出版信息

Medicine (Baltimore). 2014 Nov;93(23):e151. doi: 10.1097/MD.0000000000000151.

Abstract

Recent findings suggest that neural complexity reflecting a number of independent processes in the brain may characterize typical changes during epileptic seizures and may enable to describe preictal dynamics. With respect to previously reported findings suggesting specific changes in neural complexity during preictal period, we have used measure of pointwise correlation dimension (PD2) as a sensitive indicator of nonstationary changes in complexity of the electroencephalogram (EEG) signal. Although this measure of complexity in epileptic patients was previously reported by Feucht et al (Applications of correlation dimension and pointwise dimension for non-linear topographical analysis of focal onset seizures. Med Biol Comput. 1999;37:208-217), it was not used to study changes in preictal dynamics. With this aim to study preictal changes of EEG complexity, we have examined signals from 11 multicontact depth (intracerebral) EEG electrodes located in 108 cortical and subcortical brain sites, and from 3 scalp EEG electrodes in a patient with intractable epilepsy, who underwent preoperative evaluation before epilepsy surgery. From those 108 EEG contacts, records related to 44 electrode contacts implanted into lesional structures and white matter were not included into the experimental analysis.The results show that in comparison to interictal period (at about 8-6 minutes before seizure onset), there was a statistically significant decrease in PD2 complexity in the preictal period at about 2 minutes before seizure onset in all 64 intracranial channels localized in various brain sites that were included into the analysis and in 3 scalp EEG channels as well. Presented results suggest that using PD2 in EEG analysis may have significant implications for research of preictal dynamics and prediction of epileptic seizures.

摘要

最近的研究结果表明,反映大脑中多个独立过程的神经复杂性可能是癫痫发作期间典型变化的特征,并可能有助于描述发作前的动态变化。关于先前报道的在发作前期神经复杂性有特定变化的研究结果,我们使用逐点关联维数(PD2)测量方法作为脑电图(EEG)信号复杂性非平稳变化的敏感指标。尽管Feucht等人之前曾报道过癫痫患者的这种复杂性测量方法(关联维和逐点维在局灶性发作的非线性地形图分析中的应用。《医学生物计算》。1999年;37:208 - 217),但它未被用于研究发作前动态变化。为了研究脑电图复杂性的发作前变化,我们检查了来自一名难治性癫痫患者的11个多触点深部(脑内)EEG电极的信号,这些电极位于108个皮质和皮质下脑区,以及3个头皮EEG电极的信号,该患者在癫痫手术前接受了术前评估。在这108个EEG触点中,与植入病变结构和白质的44个电极触点相关的记录未纳入实验分析。结果表明,与发作间期(发作开始前约8 - 6分钟)相比,在发作前约2分钟时,所有纳入分析的位于不同脑区的64个颅内通道以及3个头皮EEG通道的PD2复杂性在统计学上有显著下降。呈现的结果表明,在脑电图分析中使用PD2可能对发作前动态变化的研究和癫痫发作的预测具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e426/4616341/6dd146a71822/medi-93-e151-g002.jpg

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