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Quantification of Interictal Neuromagnetic Activity in Absence Epilepsy with Accumulated Source Imaging

机译:定量源性影像学检查在无癫痫发作中发作间期神经磁活动的定量

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摘要

Aberrant brain activity in childhood absence epilepsy (CAE) during seizures has been well recognized as synchronous 3 Hz spike-and-wave discharges on electroencephalography. However, brain activity from low- to very high-frequency ranges in subjects with CAE between seizures (interictal) has rarely been studied. Using a high-sampling rate magnetoencephalography (MEG) system, we studied ten subjects with clinically diagnosed but untreated CAE in comparison with age- and gender-matched controls. MEG data were recorded from all subjects during the resting state. MEG sources were assessed with accumulated source imaging, a new method optimized for localizing and quantifying spontaneous brain activity. MEG data were analyzed in nine frequency bands: delta (1–4 Hz), theta (4–8 Hz), alpha (8–12 Hz), beta (12–30 Hz), low-gamma (30–55 Hz), high-gamma (65–90 Hz), ripple (90–200 Hz), high-frequency oscillation (HFO, 200–1,000 Hz), and very high-frequency oscillation (VHFO, 1,000–2,000 Hz). MEG source imaging revealed that subjects with CAE had higher odds of interictal brain activity in 200–1,000 and 1,000–2,000 Hz in the parieto-occipito-temporal junction and the medial frontal cortices as compared with controls. The strength of the interictal brain activity in these regions was significantly elevated in the frequency bands of 90–200, 200–1,000 and 1,000–2,000 Hz for subjects with CAE as compared with controls. The results indicate that CAE has significantly aberrant brain activity between seizures that can be noninvasively detected. The measurements of high-frequency neuromagnetic oscillations may open a new window for investigating the cerebral mechanisms of interictal abnormalities in CAE.
机译:癫痫发作期间儿童失神癫痫(CAE)中异常的大脑活动已被公认是脑电图上同步的3 Hz脉冲波放电。但是,很少研究癫痫发作(发作间隔)之间的CAE患者从低频到非常高频率范围的大脑活动。使用高采样率的脑磁图(MEG)系统,我们与年龄和性别匹配的对照组相比,研究了十名临床诊断为CAE但未经治疗的受试者。在静息状态下记录所有受试者的MEG数据。 MEG来源通过累积来源成像进行了评估,累积来源成像是一种优化的本地化和量化自发性大脑活动的新方法。 MEG数据在以下9个频段中进行了分析:δ(1-4 Hz),θ(4-8 Hz),α(8-12 Hz),β(12-30 Hz),低伽玛(30-55 Hz) ,高伽玛(65–90 Hz),波纹(90–200 Hz),高频振荡(HFO,200–1,000 Hz)和甚高频振荡(VHFO,1,000–2,000 Hz)。 MEG原始影像显示,与对照组相比,CAE受试者在顶枕颞颞交界处和额叶内侧皮质中,在200–1,000和1,000–2,000 Hz内,大脑间质活动的几率更高。与对照组相比,CAE受试者在90-200、200-1,000和1,000-2,000 Hz的频带中这些区域的大脑间活动的强度显着提高。结果表明,CAE在癫痫发作之间具有明显的异常大脑活动,可以无创检测到。高频神经磁振荡的测量结果可能为研究CAE室间异常的脑机制打开一个新窗口。

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