Fujimoto Ayataka, Matsumaru Yuji, Masuda Yosuke, Marushima Aiki, Hosoo Hisayuki, Araki Kota, Ishikawa Eiichi
Comprehensive Epilepsy Center, Seirei Hamamatsu General Hospital, Shizuoka 988-056, Japan.
School of Rehabilitation Sciences, Seirei Christopher University, Shizuoka 988-056, Japan.
Brain Sci. 2022 Feb 24;12(3):309. doi: 10.3390/brainsci12030309.
We hypothesized that an endovascular electroencephalogram (eEEG) can detect subdural electrode (SDE)-detectable, scalp EEG-undetectable epileptiform discharges. The purpose of this study is, therefore, to measure SDE-detectable, scalp EEG-undetectable epileptiform discharges by an eEEG on a pig.
A pig under general anesthesia was utilized to measure an artificially generated epileptic field by an eEEG that was able to be detected by an SDE, but not a scalp EEG as a primary outcome. We also compared the phase lag of each epileptiform discharge that was detected by the eEEG and SDE as a secondary outcome.
The eEEG electrode detected 113 (97%) epileptiform discharges (97% sensitivity). Epileptiform discharges that were localized within the three contacts (contacts two, three and four), but not spread to other parts, were detected by the eEEG with a 92% sensitivity. The latency between peaks of the eEEG and right SDE earliest epileptiform discharge ranged from 0 to 48 ms (mean, 13.3 ms; median, 11 ms; standard deviation, 9.0 ms).
In a pig, an eEEG could detect epileptiform discharges that an SDE could detect, but that a scalp EEG could not.
我们假设血管内脑电图(eEEG)能够检测到硬膜下电极(SDE)可检测但头皮脑电图(scalp EEG)无法检测到的癫痫样放电。因此,本研究的目的是通过在猪身上进行eEEG测量SDE可检测但头皮脑电图无法检测到的癫痫样放电。
使用一只全身麻醉的猪,通过eEEG测量人工产生的癫痫场,该癫痫场可被SDE检测到,但不能被头皮脑电图检测到作为主要结果。我们还比较了eEEG和SDE检测到的每种癫痫样放电的相位滞后作为次要结果。
eEEG电极检测到113次(97%)癫痫样放电(敏感性97%)。局限于三个触点(触点二、三、四)内但未扩散到其他部位的癫痫样放电,eEEG检测的敏感性为92%。eEEG峰值与右侧SDE最早癫痫样放电之间的潜伏期为0至48毫秒(平均13.3毫秒;中位数11毫秒;标准差9.0毫秒)。
在猪身上,eEEG能够检测到SDE可检测但头皮脑电图无法检测到的癫痫样放电。