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Study on the Relationships between Intrinsic Functional Connectivity of the Default Mode Network and Transient Epileptic Activity

机译:默认模式网络的内在功能连接性与瞬时癫痫活动之间的关系的研究

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摘要

>Rationale: Simultaneous recording of electroencephalogram and functional MRI (EEG–fMRI) is a powerful tool for localizing epileptic networks via the detection of hemodynamic changes correlated with interictal epileptic discharges (IEDs). fMRI can be used to study the long-lasting effect of epileptic activity by assessing stationary functional connectivity during the resting-state period [especially, the connectivity of the default mode network (DMN)]. Temporal lobe epilepsy (TLE) and idiopathic generalized epilepsy (IGE) are associated with low responsiveness and disruption of DMN activity. A dynamic functional connectivity approach might enable us to determine the effect of IEDs on DMN connectivity and to better understand the correlation between DMN connectivity changes and altered consciousness.>Method: We studied dynamic changes in DMN intrinsic connectivity and their relation to IEDs. Six IGE patients (with generalized spike and slow-waves) and 6 TLE patients (with unilateral left temporal spikes) were included. Functional connectivity before, during, and after IEDs was estimated using a sliding window approach and compared with the baseline period.>Results: No dependence on window size was observed. The baseline DMN connectivity was decreased in the left hemisphere (ipsilateral to the epileptic focus) in TLEs and was less strong but remained bilateral in IGEs. We observed an overall increase in DMN intrinsic connectivity prior to the onset of IEDs in both IGEs and TLEs. After IEDs in TLEs, we found that DMN connectivity increased before it returned to baseline values. Most of the DMN regions with increased connectivity before and after IEDs were lateralized to the left hemisphere in TLE (i.e., ipsilateral to the epileptic focus).>Conclusion: Results suggest that DMN connectivity may facilitate IED generation and may be affected at the time of the IED. However, these results need to be confirmed in a larger independent cohort.
机译:>原理:脑电图和功能MRI(EEG–fMRI)的同时记录是通过检测与发作间期癫痫放电(IED)相关的血液动力学变化来定位癫痫网络的强大工具。通过评估静息状态期间的固定功能连接性,fMRI可用于研究癫痫活动的长期效果[特别是默认模式网络(DMN)的连接性]。颞叶癫痫(TLE)和特发性全身性癫痫(IGE)与低反应性和DMN活动中断有关。动态功能连接方法可以使我们确定IED对DMN连接的影响,并更好地理解DMN连接变化与意识改变之间的相关性。>方法:我们研究了DMN内部连接及其中的动态变化。与简易爆炸装置的关系。包括6例IGE患者(具有广泛的尖峰和慢波)和6例TLE患者(具有单侧左侧颞尖峰)。使用滑动窗口方法估算IED之前,之中和之后的功能连通性,并将其与基线期进行比较。>结果:未观察到对窗口大小的依赖性。 TLE的左半球(与癫痫病灶同侧)的基线DMN连通性降低,强度较弱,但在IGE中仍为双侧。我们观察到,在IGE和TLE中,IED出现之前,DMN内在连通性总体上增加了。在TLE中的IED之后,我们发现DMN连接性在返回基线值之前就增加了。在IED之前和之后,大多数DMN区域的连接性增加到TLE的左半球侧向(即与癫痫病灶同侧)。>结论:结果表明,DMN的连接性可能有助于IED的产生,并可能在IED时受到影响。但是,这些结果需要在更大的独立队列中得到证实。

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