Topographical reliability of mesio-temporal sources of interictal spikes in temporal lobe epilepsy

I Merlet , L Garcia-Larrea , P Ryvlin , J Isnard , M Sindou , F Mauguière
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引用次数: 64

Abstract

Purpose: Localization of hippocampal paroxysmal activities in temporal lobe epilepsy (TLE) by means of dipole modeling has often been criticized because of the supposed inaccuracy of this technique in localizing deep sources of EEG signals. This study aimed at assessing the relevance of mesio-temporal dipoles, as identified by modeling of scalp recorded spikes in TLE.

Methods: Surface and depth EEG activities were simultaneously recorded using scalp and intracranial electrodes implanted through the foramen ovale (FO) in 3 patients with refractory TLE seizures. Intracranial FO spikes were used as triggers for scalp EEG averaging. The averaged signals were modeled by current dipoles, the localization of which were fused with patients' 3D-MRI.

Results: Individual FO spikes were undetectable on visual analysis of raw scalp EEG but were reflected by low-amplitude scalp EEG transients on averaged signal. Dipole modeling of this EEG deflection consistently identified a mesio-limbic source in a position close to that of the FO pole recording the intracranial spike with its maximal amplitude.

Conclusion: This result suggests that mesio-temporal sources can be accurately localized by modeling the signals recorded on the scalp, thus validating the anatomical and clinical relevance of hippocampal sources identified by modeling scalp interictal averaged spikes in TLE.

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颞叶癫痫间期峰的中颞源的地形可靠性
目的:利用偶极子模型定位颞叶癫痫(TLE)海马阵发性活动经常受到批评,因为这种技术在定位脑电信号深层源时被认为是不准确的。本研究旨在评估中颞偶极子的相关性,通过对头皮记录的TLE峰进行建模来确定。方法:对3例难治性TLE发作患者,采用经卵圆孔(FO)植入的头皮和颅内电极同时记录表面和深度脑电活动。脑内FO峰值作为头皮EEG平均的触发点。平均信号由电流偶极子建模,其定位与患者的3D-MRI融合。结果:原始头皮脑电图的视觉分析无法检测到单个FO峰,但在平均信号的低幅度头皮脑电图瞬变中反映出来。这种脑电图偏转的偶极子模型一致地确定了一个中脑边缘源,其位置接近于记录最大振幅的颅内尖峰的前脑极。结论:该结果表明,通过模拟记录在头皮上的信号,可以准确定位中颞叶源,从而验证了通过模拟头皮间期平均峰识别的海马源的解剖学和临床相关性。
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