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皮质 BOLD 信号增加可预测特发性全面性癫痫青少年和成人的全面性棘波和尖波放电。

Increased cortical BOLD signal anticipates generalized spike and wave discharges in adolescents and adults with idiopathic generalized epilepsies.

机构信息

Department of Neuroscience, NOCSAE Hospital, University of Modena e Reggio Emilia, Modena, Italy.

出版信息

Epilepsia. 2012 Apr;53(4):622-30. doi: 10.1111/j.1528-1167.2011.03385.x. Epub 2012 Jan 13.

Abstract

PURPOSE

Electroencephalography-functional magnetic resonance imaging (EEG-fMRI) coregistration has recently revealed that several brain structures are involved in generalized spike and wave discharges (GSWDs) in idiopathic generalized epilepsies (IGEs). In particular, deactivations and activations have been observed within the so-called brain default mode network (DMN) and thalamus, respectively. In the present study we analyzed the dynamic time course of blood oxygen level-dependent (BOLD) changes preceding and following 3 Hz GSWDs in a group of adolescent and adult patients with IGE who presented with absence seizures (AS). Our aim was to evaluate cortical BOLD changes before, during, and after GSWD onset.

METHODS

Twenty-one patients with IGE underwent EEG-fMRI coregistration. EEG-related analyses were run both at the single-subject and at group level (random effect). The time-course analysis was conducted for 3 s time windows before, during, and after GSWDs, and they were included until no further BOLD signal changes were observed.

KEY FINDINGS

Fifteen patients (nine female, mean age 28 years) had GSWDs during EEG-fMRI coregistration (262 total events, mean duration 4 s). Time-course group analysis showed BOLD increments starting approximately 10 s before GSWD onset located in frontal and parietal cortical areas, and especially in the precuneus-posterior cingulate region. At GSWD onset, BOLD increments were located in thalamus, cerebellum, and anterior cingulate gyrus, whereas BOLD decrements were observed in the DMN regions persisting until 9 s after onset.

SIGNIFICANCE

Hemodynamic changes (BOLD increments) occurred in specific cortical areas, namely the precuneus/posterior cingulate, lateral parietal, and frontal cortices, several seconds before EEG onset of GSWD. A dysfunction of these brain regions, some of which belongs to the DMN, may be crucial in generating GSWDs in patients with IGE.

摘要

目的

脑电-功能磁共振成像(EEG-fMRI)配准最近揭示,几种大脑结构参与了特发性全面性癫痫(IGE)中的全面性棘慢波放电(GSWDs)。特别是,在所谓的大脑默认模式网络(DMN)和丘脑内分别观察到了去激活和激活。在本研究中,我们分析了一组表现为失神发作(AS)的青少年和成年 IGE 患者在 3 Hz GSWD 之前和之后的血氧水平依赖(BOLD)变化的动态时程。我们的目的是评估 GSWD 起始前、期间和之后的皮质 BOLD 变化。

方法

21 名 IGE 患者接受了 EEG-fMRI 配准。在个体和组水平(随机效应)上进行了与 EEG 相关的分析。时间过程分析在 GSWD 之前、期间和之后进行了 3 秒的时间窗口,直到没有进一步的 BOLD 信号变化为止。

主要发现

15 名患者(9 名女性,平均年龄 28 岁)在 EEG-fMRI 配准期间出现了 GSWDs(262 个总事件,平均持续时间 4 秒)。时间过程组分析显示,在 GSWD 发作前约 10 秒开始出现 BOLD 增加,位于额和顶皮质区域,特别是在楔前叶-后扣带回区域。在 GSWD 发作时,BOLD 增加位于丘脑、小脑和前扣带回 gyrus,而在 DMN 区域观察到 BOLD 减少,持续到发作后 9 秒。

意义

在 GSWD 脑电发作前几秒,在特定的皮质区域(如楔前叶/后扣带回、外侧顶叶和额叶皮质)发生了血液动力学变化(BOLD 增加)。这些大脑区域中的一些区域(其中一些属于 DMN)的功能障碍可能在 IGE 患者的 GSWD 产生中至关重要。

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