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Identification of Pre-Spike Network in Patients with Mesial Temporal Lobe Epilepsy

机译:颞叶颞叶癫痫患者发作前网络的鉴定

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摘要

>Background: Seizures and interictal spikes in mesial temporal lobe epilepsy (MTLE) affect a network of brain regions rather than a single epileptic focus. Simultaneous electroencephalography and functional magnetic resonance imaging (EEG-fMRI) studies have demonstrated a functional network in which hemodynamic changes are time-locked to spikes. However, whether this reflects the propagation of neuronal activity from a focus, or conversely the activation of a network linked to spike generation remains unknown. The functional connectivity (FC) changes prior to spikes may provide information about the connectivity changes that lead to the generation of spikes. We used EEG-fMRI to investigate FC changes immediately prior to the appearance of interictal spikes on EEG in patients with MTLE.>Methods/principal findings: Fifteen patients with MTLE underwent continuous EEG-fMRI during rest. Spikes were identified on EEG and three 10 s epochs were defined relative to spike onset: spike (0–10 s), pre-spike (−10 to 0 s), and rest (−20 to −10 s, with no previous spikes in the preceding 45s). Significant spike-related activation in the hippocampus ipsilateral to the seizure focus was found compared to the pre-spike and rest epochs. The peak voxel within the hippocampus ipsilateral to the seizure focus was used as a seed region for FC analysis in the three conditions. A significant change in FC patterns was observed before the appearance of electrographic spikes. Specifically, there was significant loss of coherence between both hippocampi during the pre-spike period compared to spike and rest states.>Conclusion/significance: In keeping with previous findings of abnormal inter-hemispheric hippocampal connectivity in MTLE, our findings specifically link reduced connectivity to the period immediately before spikes. This brief decoupling is consistent with a deficit in mutual (inter-hemispheric) hippocampal inhibition that may predispose to spike generation.
机译:>背景:颞中叶癫痫(MTLE)的发作和发作间期波峰会影响大脑区域的网络,而不是单个癫痫病灶。同时进行的脑电图和功能磁共振成像(EEG-fMRI)研究表明,功能网络中血液动力学的变化被锁定在峰值。然而,这是否从焦点反映了神经元活动的传播,或者相反地,与峰值产生相关的网络的激活尚不清楚。尖峰之前的功能连接(FC)更改可能会提供有关导致尖峰生成的连接性更改的信息。我们使用EEG-fMRI研究了MTLE患者在出现EEG发作间壁尖峰之前的FC变化。>方法/主要发现: 15例MTLE患者在休息期间接受了连续EEG-fMRI检查。在脑电图上识别出尖峰,并相对于尖峰发作定义了三个10 s时期:尖峰(0–10 s),尖峰前(−10至0 s)和休息(−20至-10 s,没有先前的尖峰在之前的45年代)。与发作前和休息前相比,在癫痫发作同侧海马中发现了明显的与刺突相关的激活。在三种情况下,癫痫发作同侧海马内的体素峰值用作种子区域,用于FC分析。在出现电子峰值之前,观察到FC模式的显着变化。具体来说,与高峰和休息状态相比,高峰前的两个海马体之间的相干性明显降低。>结论/意义:与先前在MTLE中发现的半球间海马连接异常有关,我们的发现特别是将连通性降低与峰值之前的时期联系在一起。这种短暂的解耦与海马相互间(半球间)抑制的缺陷相一致,这可能会导致峰值的产生。

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