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Dense Array EEG Source Estimation in Neocortical Epilepsy

机译:新皮层癫痫的密集阵列脑电信号源估计。

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摘要

>Rationale: Dense array EEG (dEEG) evenly covers the whole head surface with over 100 channels contributing to more accurate electrical source imaging due to the higher spatial and temporal resolution. Several studies have shown the clinical utility of dEEG in presurgical clinical evaluation of epilepsy. However validation studies measuring the accuracy of dEEG source imaging are still needed. This can be achieved through simultaneously recording both scalp dEEG with intracranial electrodes (icEEG), which is considered as the true measure of cortical activity at the source. The purpose of this study is to evaluate the accuracy of 256-channel dEEG electrical source estimation for interictal spikes.>Methods: Four patients with medically refractory neocortical epilepsy, all surgical candidates, underwent subdural electrode implantation to determine ictal onset and define functional areas. One patient showed a lesion on the magnetic resonance imaging in the right parietal lobe. The patient underwent simultaneous recording of interictal spikes by both scalp 256-channelsvdEEG and icEEG. The dEEG was used to non-invasively estimate the source of the interictal spikes detected by the 256-channel dEEG array, which was then compared to the activity measured directly at the source by the icEEG.>Results: From the four patients, a total of 287 interictal spikes were measured with the icEEG. One hundred fifty-five of the 287 spikes (54%) were visually detected by the dEEG upon examination of the 256 channel head surface array. The spike amplitudes detected by the 256-channel dEEG correlated with icEEG spike amplitudes (p < 0.01). All spikes detected in dEEG were localized to the same lobe correctly.>Conclusion: Our study demonstrates that 256-channel dEEG can reliably detect interictal spikes and localize them with reasonable accuracy. Two hundred fifty-six-channel dEEG may be clinically useful in the presurgical workup for epilepsy and also reduce the need for invasive EEG evaluation.
机译:>比率:密集的阵列EEG(dEEG)可以通过100多个通道均匀地覆盖整个头部表面,由于具有更高的时空分辨率,因此可以更精确地进行电源成像。多项研究表明,dEEG在癫痫的术前临床评估中具有临床实用性。但是,仍然需要测量dEEG源成像准确性的验证研究。这可以通过同时记录头皮dEEG和颅内电极(icEEG)来实现,这被认为是对源头皮层活动的真实测量。这项研究的目的是评估256通道dEEG电源估算壁间尖峰的准确性。>方法:四名内科难治性新皮层癫痫患者,全部为手术候选人,均接受硬膜下电极植入术来确定壁突开始并定义功能区域。一名患者的右顶叶磁共振成像显示病变。该患者同时通过头皮256通道vdEEG和icEEG记录间质尖峰。 dEEG用于无创地估计由256通道dEEG阵列检测到的发作期峰值的来源,然后将其与icEEG在源处直接测量的活性进行比较。>结果:使用icEEG对这4名患者进行了总共287次间质尖峰的测量。在检查256通道头部表面阵列后,dEEG目视检测到287个尖峰中的155个(54%)。 256通道dEEG检测到的尖峰幅度与icEEG尖峰幅度相关(p <0.01)。 >结论:我们的研究表明,256通道dEEG可以可靠地检测出尖峰并以合理的精度定位。 256通道dEEG在癫痫的术前检查中可能在临床上有用,并且还减少了对侵入性脑电图评估的需求。

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