Physical Sciences Platform, Sunnybrook Research Institute, Toronto, Canada; Department of Medical Biophysics, University of Toronto, Toronto, Canada.
Institute of Neuroscience, National Yang Ming University, Taipei, Taiwan.
Clin Neurophysiol. 2024 May;161:112-121. doi: 10.1016/j.clinph.2024.02.025. Epub 2024 Feb 23.
Stereoelectroencephalography (SEEG) can define the epileptogenic zone (EZ). However, SEEG is susceptible to the sampling bias, where no SEEG recording is taken within a circumscribed EZ.
Nine patients with medically refractory epilepsy underwent SEEG recording, and brain resection got positive outcomes. Ictal neuronal currents were estimated by distributed source modeling using the SEEG data and individual's anatomical magnetic resonance imaging. Using a retrospective leave-one-out data sub-sampling, we evaluated the sensitivity and specificity of the current estimates using MRI after surgical resection or radio-frequency ablation.
The sensitivity and specificity in detecting the EZ were indistinguishable from either the data from all electrodes or the sub-sampled data (rank sum test: rank sum = 23719, p = 0.13) when at least one remaining electrode contact was no more than 20 mm away.
The distributed neuronal current estimates of ictal SEEG data can mitigate the challenge of delineating the boundary of the EZ in cases of missing an electrode implanted within the EZ and a required second SEEG exploration.
Distributed source modeling can be a tool for clinicians to infer the EZ by allowing for more flexible planning of the electrode implantation route and minimizing the number of electrodes.
立体脑电图(SEEG)可确定致痫区(EZ)。然而,SEEG 易受采样偏差的影响,即在一个限定的 EZ 内没有进行 SEEG 记录。
9 名药物难治性癫痫患者接受了 SEEG 记录,且脑部切除术取得了积极的结果。利用 SEEG 数据和个体解剖磁共振成像,通过分布式源建模来估计癫痫发作时的神经元电流。使用回顾性的逐个剔除数据子采样,我们评估了在手术切除或射频消融后使用 MRI 进行的电流估计的敏感性和特异性。
当至少一个剩余的电极接触点距离不超过 20 毫米时,无论是使用所有电极的数据还是子采样数据,检测 EZ 的敏感性和特异性均无明显差异(秩和检验:秩和=23719,p=0.13)。
对癫痫发作 SEEG 数据的分布式神经元电流估计可以减轻在 EZ 内缺失一个植入电极以及需要进行第二次 SEEG 探查的情况下,划定 EZ 边界的挑战。
分布式源建模可以成为临床医生推断 EZ 的一种工具,它允许更灵活地规划电极植入路径,并最大限度地减少电极的数量。