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特发性全面性癫痫的大脑半球内皮质-皮质网络的脑电图功能连接。

EEG functional connectivity of the intrahemispheric cortico-cortical network of idiopathic generalized epilepsy.

机构信息

Kenézy Hospital Ltd., Department of Neurology, Bartók Béla út 3., 4031 Debrecen, Hungary.

出版信息

Epilepsy Res. 2011 Sep;96(1-2):11-23. doi: 10.1016/j.eplepsyres.2011.04.011. Epub 2011 May 20.

Abstract

AIMS

Intrahemispheric, cortico-cortical EEG functional connectivity (fC) was investigated in untreated patients with idiopathic generalized epilepsy (IGE) in this explorative study.

PATIENTS AND METHODS

Group comparison was carried out between 19, drug-naive IGE patients and 19, matched healthy persons. 90×2s of 19 channels waking, interictal background EEG signal (without epileptiform potentials) were processed to the LORETA (low resolution electromagnetic tomography) software to compute current source density for 2394 voxels representing parcels of the cerebral cortex for 25 very narrow bands of 1Hz bandwidth (VNBs) from 1 to 25Hz. EEG fC was investigated among the already localized sources. Pearson correlation coefficients (R) were computed among the 33 regions of interest (ROI) within the left and within the right hemisphere, separately. Group differences were computed by means of t-statistics. Corrected p<0.05 differences were accepted as statistically significant.

MAIN RESULTS

(1) The anatomical patterns of the fC differences showed great frequency-dependency. (2) Hemispheric asymmetry was prominent within most VNBs. (3) Decreased fC in the IGE group was found across all VNBs in the 1-6Hz frequency range as compared to mixed patterns comprising both increased and decreased fC at >6Hz frequencies. (4) In the 5-25Hz range, decreased fC dominated in the anterior, increased fC in the posterior parts of the cortex. (5) The results delineated an anterior and a posterior network.

DISCUSSION

(1) Decreased fC in the 1-6Hz band might indicate some relationship to yet hidden structure network abnormalities. (2) The anatomical patterns of fC indicate frequency-dependent, pathological coupling and decoupling processes in the interictal state. (3) The two networks might help to understand seizure liability and seizure precipitation in IGE.

SIGNIFICANCE

This is the first study to explore EEG fC in the interictal condition of IGE patients. The importance of EEG frequencies in evaluating fC in IGE was demonstrated and starting points for further research were given.

摘要

目的

在这项探索性研究中,我们研究了未经治疗的特发性全面性癫痫(IGE)患者半球间、皮质间脑电图功能连接(fC)。

患者和方法

我们对 19 名药物-naive IGE 患者和 19 名匹配的健康人进行了组间比较。对 90×2s 的 19 通道清醒、发作间期背景 EEG 信号(无癫痫样电位)进行处理,应用 LORETA(低分辨率电磁层析成像)软件计算 2394 个体素的电流源密度,这些体素代表大脑皮层的部分区域,共有 25 个非常窄的带宽(VNBs),带宽为 1Hz(VNBs 从 1 到 25Hz)。在已经定位的源之间研究 EEG fC。分别计算左半球和右半球内 33 个感兴趣区域(ROI)之间的 Pearson 相关系数(R)。通过 t 统计量计算组间差异。接受校正后的 p<0.05 差异作为统计学显著差异。

主要结果

(1)fC 差异的解剖模式具有很大的频率依赖性。(2)在大多数 VNB 中,半球间的不对称性非常明显。(3)与>6Hz 频率时既有增加也有减少的混合模式相比,IGE 组在 1-6Hz 频率范围内的所有 VNB 中发现 fC 减少。(4)在 5-25Hz 范围内,皮质的前部表现出减少的 fC,后部表现出增加的 fC。(5)结果描绘了一个前网络和一个后网络。

讨论

(1)1-6Hz 频段的 fC 减少可能与尚未发现的结构网络异常有关。(2)fC 的解剖模式表明在发作间期存在频率依赖性的病理性耦合和解耦过程。(3)这两个网络可能有助于理解 IGE 中的癫痫发作倾向和癫痫发作诱发。

意义

这是第一项探索 IGE 患者发作间期 EEG fC 的研究。证明了 EEG 频率在评估 IGE 中 fC 的重要性,并为进一步研究提供了起点。

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