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S55 Epileptogenicity biomarkers and effective connectivity in stereo-EEG

机译:S55癫痫素生物标志物和立体脑电图的有效连通性

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Objectives By analyzing the responses to intracranial electrical stimulation we aim at im-proving the localization of the seizure onset zone (SOZ) and the connectivity between different areas. Methods Our center uses a set of traditional and innovative advanced analysis methods for stereo-EEG signals recorded using depth electrodes. We analyze stimulation-evoked activity in time-frequency domain to detect inter-ictal epileptogenicity biomarkers like high-frequency oscillations (HFO, f 80 Hz) and delayed responses (DR, t 100 ms). Results of the different quantitative EEG analyses are represented as 3-D maps superimposed with patient’s anatomy, as visible on various imaging modalities, and their evolution in time is shown as movies. Cortico-cortical evoked potentials (CCEP) based on early responses ( t = 10–110 ms) to single-pulse intracranial stimulation are used to calculate functional connectivity between cortical areas. Results Biomarker response maps and effective connectomes were calculated in a population of 24 patients undergoing presurgical evaluation for drug-resistant epilepsy. The sensitivity with respect to SOZ of HFOs was higher than the one of the DR by both response and stimulation location, whereas the specificity of the DRs was higher by the lo-cation of the stimulation. Discussion Despite variable sensitivity and specificity of the biomarkers, the positive pre-diction level of these biomarkers is less than 30%, taken separately or in combination. Conclusions Analysis of responses to intracranial electrical stimulation can contribute to the identification of the epileptogenic networks and for delineating the epileptogenic are-as. Significance We illustrate the value of using multiple advanced signal analysis techniques. ]]>
机译:通过分析对颅内电刺激的响应,我们旨在实现癫痫发作区域(SOZ)的定位以及不同区域之间的连接的宗旨。方法我们的中心使用一套传统和创新的高级分析方法,用于使用深度电极记录的立体声信号。我们在时频结构域中分析刺激诱发的活性,以检测高频振荡(HFO,F> 80 Hz)等ICTAL癫痫发生的生物标志物和延迟响应(DR,T> 100毫秒)。不同的定量脑电图分析的结果表示为叠加有患者解剖学的3D地图,如各种成像方式上可见,它们及时的演变被显示为电影。基于早期响应(T = 10-110ms)的皮质皮质诱发电位(CCEP)用于单脉冲颅内刺激来计算皮质区域之间的功能性连接。结果在接受耐药性癫痫患者的24名患者的患者中计算了生物标志物响应图和有效的Concinomes。通过响应和刺激位置,相对于HFO的SOZ的灵敏度高于DR的敏感性,而通过刺激的LO-Cath,DRS的特异性较高。尽管生物标志物的可变敏感性和特异性,但是这些生物标志物的阳性解序水平小于30%,单独或组合服用。结论对颅内电刺激的反应分析可以有助于鉴定癫痫网络和描绘癫痫素的依赖性。意义我们说明了使用多个高级信号分析技术的值。 ]]>

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