Brain Center Rudolf Magnus, Department of Neurology and Neurosurgery, UMC Utrecht, the Netherlands; SEIN - Stichting Epilepsie Instellingen Nederland, Heemstede, the Netherlands.
Brain Center Rudolf Magnus, Department of Neurology and Neurosurgery, UMC Utrecht, the Netherlands.
Clin Neurophysiol. 2019 Jul;130(7):1175-1183. doi: 10.1016/j.clinph.2019.01.027. Epub 2019 Feb 23.
We studied ripples (80-250 Hz) simultaneously recorded in electroencephalography (EEG) and magnetoencephalography (MEG) to evaluate the differences.
Simultaneous EEG and MEG were recorded in 30 patients with drug resistant focal epilepsy. Ripples were automatically detected and visually checked in virtual channels throughout the cortex. The number and location of ripples in EEG and MEG were compared to each other and to a region of interest (ROI) defined by clinically available information.
Eleven patients showed ripples in both MEG and EEG, 11 only in EEG and one only in MEG. Twenty-four percent of the ripples occurred simultaneously in EEG and MEG, 71% only in EEG, and 5% only in MEG. Three patients without spikes in EEG showed EEG ripples. Ripple localization was concordant with the ROI in 80% of patients with MEG ripples, as opposed to 62% full or partial concordance for EEG ripples. With the optimal threshold for localizing the ROI, sensitivity and specificity were more than 80%.
Ripples in MEG are less frequent but more specific and sensitive for the region of interest than ripples in EEG. Ripples in EEG can exist without spikes in the EEG.
Ripples in MEG and EEG provide complementary information.
我们研究了同时在脑电图(EEG)和脑磁图(MEG)中记录的脑电波(80-250Hz),以评估其差异。
对 30 例耐药性局灶性癫痫患者同时进行 EEG 和 MEG 记录。在整个皮层的虚拟通道中自动检测和视觉检查脑电波。比较 EEG 和 MEG 中脑电波的数量和位置,并与临床可用信息定义的感兴趣区域(ROI)进行比较。
11 例患者在 MEG 和 EEG 中均出现脑电波,11 例仅在 EEG 中出现,1 例仅在 MEG 中出现。24%的脑电波在 EEG 和 MEG 中同时出现,71%仅在 EEG 中出现,5%仅在 MEG 中出现。3 例无 EEG 棘波的患者出现 EEG 脑电波。在有 MEG 脑电波的患者中,80%的脑电波定位与 ROI 一致,而 EEG 脑电波的完全或部分一致性为 62%。对于 ROI 的最佳定位阈值,灵敏度和特异性均超过 80%。
与 EEG 相比,MEG 中的脑电波频率较低,但更具特异性和敏感性,与 ROI 相关。EEG 中的脑电波可能在没有棘波的情况下存在。
MEG 和 EEG 中的脑电波提供了互补的信息。