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使用 LORETA 对有和无药物治疗的部分癫痫患者的θ EEG 源定位。

Theta EEG source localization using LORETA in partial epilepsy patients with and without medication.

机构信息

Kenézy Hospital Ltd., Department of Neurology, Debrecen, Hungary.

出版信息

Clin Neurophysiol. 2010 Jun;121(6):848-58. doi: 10.1016/j.clinph.2010.01.020. Epub 2010 Feb 23.

Abstract

OBJECTIVE

To investigate and localize the sources of spontaneous, scalp-recorded theta activity in patients with partial epilepsy (PE).

METHODS

Nine patients with beginning, untreated PE (Group 1), 31 patients with already treated PE (Group 2), and 14 healthy persons were investigated by means of spectral analysis and LORETA, low resolution electromagnetic tomography (1 Hz very narrow band analysis, age-adjusted, Z-scored values). The frequency of main interest was 4-8 Hz.

RESULTS

Group analysis: Group 1 displayed bilateral theta maxima in the temporal theta area (TTA), parietal theta area (PTA), and frontal theta area (FTA). In Group 2, theta activity increased all over the scalp as compared to the normative mean (Z=0) and also to Group 1. Maximum activity was found in the TTA, PTA, and FTA. However, in the PTA and FTA the centers of the abnormality shifted towards the medial cortex. Individual analysis: all the patients showed preferential activation (maximum Z-values) within one of the three theta areas.

CONCLUSIONS

EEG activity in the theta band is increased in anatomically meaningful patterns in PE patients, which differs from the anatomical distribution of theta in healthy persons.

SIGNIFICANCE

The findings contribute to our understanding of the sources of theta rhythms and the pathophysiology of PE.

摘要

目的

研究并定位局灶性癫痫(PE)患者头皮记录自发θ活动的来源。

方法

通过频谱分析和低分辨率电磁断层成像(LORETA)对 9 名初发未治疗的 PE 患者(第 1 组)、31 名已治疗的 PE 患者(第 2 组)和 14 名健康人进行了研究。感兴趣的频率为 4-8 Hz。

结果

组间分析:第 1 组在颞叶θ区(TTA)、顶叶θ区(PTA)和额叶θ区(FTA)均显示双侧θ波最大。与正常均值(Z=0)和第 1 组相比,第 2 组的整个头皮θ活动增加。最大活动位于 TTA、PTA 和 FTA。然而,在 PTA 和 FTA 中,异常的中心向内侧皮质转移。个体分析:所有患者在三个θ区中的一个区内均表现出优先激活(最大 Z 值)。

结论

PE 患者在θ波段的脑电图活动呈具有解剖意义的模式增加,这与健康人θ的解剖分布不同。

意义

这些发现有助于我们理解θ节律的来源和 PE 的病理生理学。

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