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Functional Network Connectivity Patterns between Idiopathic Generalized Epilepsy with Myoclonic and Absence Seizures

机译:特发性全身性癫痫伴阵挛性发作和缺乏性癫痫发作之间的功能网络连接模式

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摘要

The extensive cerebral cortex and subcortical structures are considered as the major regions related to the generalized epileptiform discharges in idiopathic generalized epilepsy. However, various clinical syndromes and electroencephalogram (EEG) signs exist across generalized seizures, such as the loss of consciousness during absence seizures (AS) and the jerk of limbs during myoclonic seizures (MS). It is presumed that various functional systems affected by discharges lead to the difference in syndromes of these seizures. Twenty epileptic patients with MS, 21 patients with AS, and 21 healthy controls were recruited in this study. The functional network connectivity was analyzed based on the resting-state functional magnetic resonance imaging scans. The statistical analysis was performed in three groups to assess the difference in the functional brain networks in two types of generalized seizures. Twelve resting-state networks were identified in three groups. Both patient groups showed common abnormalities, including decreased functional connectivity in salience network (SN), cerebellum network, and primary perceptional networks and decreased connection between SN and visual network, compared with healthy controls. Interestingly, the frontal part of high-level cognitive resting-state networks showed increased functional connectivity (FC) in patients with MS, but decreased FC in patients with AS. Moreover, patients with MS showed decreased negative connections between high-level cognitive networks and primary system. The common alteration in both patient groups, including SN, might reflect a similar mechanism associated with the loss of consciousness during generalized seizures. This study provided the evidence of brain network in generalized epilepsy to understand the difference between MS and AS.
机译:广泛的大脑皮层和皮质下结构被认为是特发性全身性癫痫中与全身性癫痫样放电有关的主要区域。然而,广泛的癫痫发作中存在各种临床综合征和脑电图(EEG)征兆,例如失神性癫痫发作(AS)期间意识丧失和肌阵挛性癫痫发作(MS)期间四肢抽搐。据推测,受放电影响的各种功能系统导致这些癫痫发作的症状不同。该研究招募了20名MS癫痫患者,21名AS患者和21名健康对照。基于静止状态功能磁共振成像扫描分析了功能网络的连通性。在三组中进行统计分析,以评估两种类型的全身性癫痫发作中功能性大脑网络的差异。在三个组中确定了十二个静止状态网络。与健康对照组相比,两个患者组均表现出常见异常,包括显着网络(SN),小脑网络和主要感知网络的功能连接性降低,以及SN与视觉网络之间的连接性降低。有趣的是,高级认知静止状态网络的前端部分显示MS患者的功能连接性(FC)升高,而AS患者的FC降低。此外,MS患者显示出高级认知网络和初级系统之间的负面联系减少。包括SN在内的两个患者组的共同变化可能反映了与全身性癫痫发作期间意识丧失相关的类似机制。这项研究提供了广泛性癫痫中脑网络的证据,以了解MS和AS之间的差异。

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