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硅橡胶脑电/皮层电图网格对基于脑电图/皮层电图的源分析的影响。

Influence of a silastic ECoG grid on EEG/ECoG based source analysis.

机构信息

Institute for Biomagnetism and Biosignalanalysis, Westfälische Wilhelms-Universität Münster, Malmedyweg 15, 48149, Münster, Germany.

出版信息

Brain Topogr. 2013 Apr;26(2):212-28. doi: 10.1007/s10548-012-0251-0. Epub 2012 Sep 2.

Abstract

The simultaneous evaluation of the local electrocorticogram (ECoG) and the more broadly distributed electroencephalogram (EEG) from humans undergoing evaluation for epilepsy surgery has been shown to further the understanding of how pathologies give rise to spontaneous seizures. However, a well-known problem is that the disruption of the conducting properties of the brain coverings can render simultaneous scalp and intracranial recordings unrepresentative of the habitual EEG. The ECoG electrodes for measuring the potential on the surface of the cortex are commonly embedded into one or more sheets of a silastic material. These highly resistive silastic sheets influence the volume conduction and might therefore also influence the scalp EEG and ECoG measurements. We carried out a computer simulation study to examine how the scalp EEG and the ECoG, as well as the source reconstruction therefrom, employing equivalent current dipole estimation methods, are affected by the insulating ECoG grids. The finite element method with high quality tetrahedral meshes, generated using a constrained Delaunay tetrahedralization meshing approach, was used to model the volume conductor that incorporates the very thin ECoG sheets. It is shown that the insulating silastic substrate of the ECoG grids can have a large impact on the scalp potential and on source reconstruction from scalp EEG data measured in the presence of the grids. The reconstruction errors are characterized with regard to the location of the source in the brain and the mislocalization tendency. In addition, we found a non-negligible influence of the insulating grids on ECoG based source analysis. We conclude, that the thin insulating ECoG sheets should be taken into account, when performing source analysis of simultaneously measured ECoG and scalp EEG data.

摘要

对正在接受癫痫手术评估的患者进行局部脑电描记图 (ECoG) 和更广泛分布的脑电图 (EEG) 的同步评估,已被证明有助于进一步了解病理如何引发自发性癫痫发作。然而,一个众所周知的问题是,大脑覆盖物的传导特性的中断会使头皮和颅内记录与习惯性 EEG 不一致。用于测量皮质表面电位的 ECoG 电极通常嵌入到一个或多个硅橡胶材料片中。这些高电阻硅橡胶片会影响容积传导,因此也可能影响头皮 EEG 和 ECoG 测量。我们进行了一项计算机模拟研究,以检查绝缘 ECoG 网格如何影响头皮 EEG 和 ECoG,以及使用等效电流偶极子估计方法从其进行的源重建。使用四面体质量高的有限元方法,使用受约束的 Delaunay 四面体网格方法生成,用于对包含非常薄的 ECoG 片的容积导体进行建模。结果表明,ECoG 网格的绝缘硅橡胶衬底会对头皮电位以及在存在网格时从头皮 EEG 数据进行的源重建产生很大影响。重建误差与大脑中源的位置和定位趋势有关。此外,我们发现绝缘网格对基于 ECoG 的源分析有不可忽略的影响。我们的结论是,在对同时测量的 ECoG 和头皮 EEG 数据进行源分析时,应考虑使用薄的绝缘 ECoG 片。

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