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Spectral bandwidth of interictal fast epileptic activity characterizes the seizure onset zone

机译:发作间期快速癫痫活动的频谱带宽表征癫痫发作区

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摘要

The foremost aim of presurgical epilepsy evaluation is the delineation of the seizure onset zone (SOZ). There is increasing evidence that fast epileptic activity (FEA, 14–250 Hz) occurring interictally, i.e. between seizures, is predominantly localized within the SOZ. Currently it is unknown, which frequency band of FEA performs best in identifying the SOZ, although prior studies suggest highest concordance of spectral changes with the SOZ for high frequency changes. We suspected that FEA reflects dampened oscillations in local cortical excitatory-inhibitory neural networks, and that interictal FEA in the SOZ is a consequence of reduced oscillatory damping. We therefore predict a narrowing of the spectral bandwidth alongside increased amplitudes of spectral peaks during interictal FEA events. To test this hypothesis, we evaluated spectral changes during interictal FEA in invasive EEG (iEEG) recordings of 13 patients with focal epilepsy. In relative spectra of beta and gamma band changes (14–250 Hz) during FEA, we found that spectral peaks within the SOZ indeed were significantly more narrow-banded and their power changes were significantly higher than outside the SOZ. In contrast, the peak frequency did not differ within and outside the SOZ. Our results show that bandwidth and power changes of spectral modulations during FEA both help localizing the SOZ. We propose the spectral bandwidth as new source of information for the evaluation of EEG data.
机译:术前癫痫评估的首要目标是确定癫痫发作区(SOZ)。越来越多的证据表明,发作间(即发作之间)的快速癫痫活动(FEA,14-250 Hz)主要位于SOZ内。目前尚不清楚,FEA的哪个频段在识别SOZ方面表现最佳,尽管先前的研究表明,频谱变化与SOZ在高频变化方面具有最高的一致性。我们怀疑FEA反映了局部皮层兴奋性抑制神经网络中的阻尼振荡,而SOZ的间质FEA是振荡阻尼降低的结果。因此,我们预测在发作性FEA事件期间频谱带宽会随着频谱峰值的幅度增加而变窄。为了验证该假设,我们评估了13例局灶性癫痫患者的侵入性EEG(iEEG)记录在发作间期FEA期间的频谱变化。在有限元分析期间,β和γ谱带变化的相对光谱(14-250 Hz)中,我们发现SOZ内的光谱峰确实明显更窄带,并且其功率变化明显高于SOZ之外。相反,在SOZ内部和外部的峰值频率没有差异。我们的结果表明,在FEA期间频谱调制的带宽和功率变化都有助于定位SOZ。我们提出频谱带宽作为评估脑电数据的新信息来源。

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