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切线和放射状癫痫棘波活动:EEG 和 MEG 的敏感性不同。

Tangential and radial epileptic spike activity: different sensitivity in EEG and MEG.

机构信息

Institute of Biomedical Engineering and Informatics, Ilmenau University of Technology, Germany.

出版信息

J Clin Neurophysiol. 2012 Aug;29(4):327-32. doi: 10.1097/WNP.0b013e3182624491.

Abstract

OBJECTIVE

Observations in epileptic patients show that interictal spikes are sometimes only visible in electroencephalography (EEG) and sometimes only in magnetoencephalography (MEG). This observation cannot readily be explained by the theoretical sensitivities of EEG and MEG based on analytical models. In this context, we aimed to study the directional sensitivity of radial and tangential spike activity in numerical simulations using realistic head models.

METHODS

We calculated the signal-to-noise ratio (SNR) of simulated spikes at varying orientations and with varying background activity in 12 brain regions in 4 volunteers. Different levels of background activity were modeled by adjusting the amplitudes of several thousand dipoles distributed in the cortex.

RESULTS

For a fixed realistic background activity, we found a higher SNR for MEG spikes for spike orientations that deviated not > 30° from the tangential direction. In contrast, we found a higher SNR for EEG spikes that deviated not > 45° from the radial direction. When the radial background activity was selectively increased, the sensitivity of EEG for radially oriented spikes decreased; when the tangential background activity selectively increased, the sensitivity of MEG for tangentially oriented spikes was decreased.

CONCLUSIONS

Our simulations provide a possible explanation for the clinically observed differences in epileptic spike detection between EEG and MEG. Epileptic spike detection can be improved by analyzing a combination of EEG and MEG data.

摘要

目的

在癫痫患者的观察中发现,发作间期棘波有时仅在脑电图(EEG)中可见,有时仅在脑磁图(MEG)中可见。这一观察结果不能用基于分析模型的 EEG 和 MEG 的理论灵敏度来轻易解释。在这方面,我们旨在使用现实的头部模型在数值模拟中研究径向和切向棘波活动的方向灵敏度。

方法

我们在 4 名志愿者的 12 个脑区中计算了在不同取向和不同背景活动下模拟棘波的信噪比(SNR)。通过调整分布在皮层中的数千个偶极子的幅度来模拟不同水平的背景活动。

结果

对于固定的现实背景活动,我们发现对于与切向方向偏差不超过 30°的棘波方向,MEG 棘波的 SNR 更高。相比之下,我们发现对于与径向方向偏差不超过 45°的 EEG 棘波,SNR 更高。当选择性增加径向背景活动时,EEG 对径向定向棘波的灵敏度降低;当选择性增加切向背景活动时,MEG 对切向定向棘波的灵敏度降低。

结论

我们的模拟为 EEG 和 MEG 之间在癫痫棘波检测方面的临床观察差异提供了一种可能的解释。通过分析 EEG 和 MEG 数据的组合,可以提高癫痫棘波的检测能力。

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