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发作间期癫痫样放电在清醒和睡眠状态下呈现出不同的时空和形态模式。

Interictal epileptiform discharges show distinct spatiotemporal and morphological patterns across wake and sleep.

作者信息

Fouad Amal, Azizollahi Hamed, Le Douget Jean-Eudes, Lejeune François-Xavier, Valderrama Mario, Mayor Liliana, Navarro Vincent, Le Van Quyen Michel

机构信息

Bioelectrics Lab, Paris Brain Institute (ICM Institut du Cerveau), (UMRS 1127, CNRS UMR 7225), Pitié-Salpêtriere Hospital, 75013 Paris, France.

Department of Neurology, Faculty of medicine, Ain-Shams University, Cairo, Egypt.

出版信息

Brain Commun. 2022 Jul 18;4(5):fcac183. doi: 10.1093/braincomms/fcac183. eCollection 2022.

Abstract

Presurgical evaluation of mesial temporal and neocortical focal pharmacoresistant epilepsy patients using intracranial EEG recordings has led to the generation of extensive data on interictal epileptiform discharges, located within or remotely from seizure onset zones. In this study, we used this data to investigate how interictal epileptiform discharges are modulated and how their spatial distribution changes during wake and sleep and analysed the relationship between these discharge events and seizure onset zones. Preoperative evaluation data from 11 adult patients with focal pharmacoresistant epilepsy were extracted from the Epilepsiae database. Interictal epileptiform discharges were automatically detected during wakefulness and over several hours of continuous seizure-free sleep (total duration of EEG recordings:106.7 h; mean per patient: 9.7 h), and analysed across four brain areas (mesial temporal, lateral neocortical, basal cortical and the temporal pole). Sleep stages were classified manually from scalp EEG. Discharge events were characterized according to their rate and morphology (amplitude, sharpness and duration). Eight patients had a seizure onset zone over mesial areas and three patients over lateral neocortical areas. Overall, discharge rates varied across brain areas during wakefulness and sleep [ × ; Wald (df = 6) = 31.1, < 0.0001]. N2-N3 non-rapid eye movement sleep increased interictal epileptiform discharges in mesial areas compared with wakefulness and rapid eye movement sleep ( < 0.0001), and to other areas ( < 0.0001 for all comparisons). This mesial pattern was observed both within and outside of seizure onset zones. During wakefulness, the rate of interictal epileptiform discharges was significantly higher than during N2-N3 non-rapid eye movement sleep ( = 0.04), and rapid eye movement sleep ( = 0.01) in lateral neocortical areas (referred to as lateral neocortical pattern), a finding that was more pronounced in seizures onset zones ( = 0.004). The morphological characteristics of the discharge events were modulated during wakefulness and sleep stages across brain areas. The effect of seizure onset zones on discharge morphology was conditioned by brain area and was particularly marked in temporal pole areas. Our analysis of discharge patterns in relation to cerebral localization, vigilance state and the anatomical affiliation of seizure onset zones revealed the global and local aspects of the complex relationship between interictal discharges, sleep and seizure onset zones. This novel approach may lead to a better understanding of cognitive decline and responses to therapy, as well as to adaptation of surgical interventions for epileptic patients.

摘要

使用颅内脑电图记录对内侧颞叶和新皮质局灶性药物难治性癫痫患者进行术前评估,已产生了关于发作间期癫痫样放电的大量数据,这些放电位于发作起始区或远离发作起始区。在本研究中,我们利用这些数据来研究发作间期癫痫样放电是如何被调节的,以及它们在清醒和睡眠期间的空间分布是如何变化的,并分析这些放电事件与发作起始区之间的关系。从《癫痫学》数据库中提取了11例成年局灶性药物难治性癫痫患者的术前评估数据。在清醒期间以及连续数小时无癫痫发作的睡眠期间(脑电图记录的总时长:106.7小时;平均每位患者:9.7小时)自动检测发作间期癫痫样放电,并在四个脑区(内侧颞叶、外侧新皮质、基底皮质和颞极)进行分析。睡眠阶段从头皮脑电图手动分类。根据放电事件的发生率和形态(幅度、尖锐度和持续时间)对其进行特征描述。8例患者的发作起始区位于内侧区域,3例患者的发作起始区位于外侧新皮质区域。总体而言,清醒和睡眠期间各脑区的放电率有所不同[×;Wald(自由度 = 6)= 31.1,< 0.0001]。与清醒和快速眼动睡眠相比,N2 - N3非快速眼动睡眠增加了内侧区域的发作间期癫痫样放电(< 0.0001),与其他区域相比也是如此(所有比较均< 0.0001)。这种内侧模式在发作起始区内和区外均有观察到。在清醒期间,外侧新皮质区域(称为外侧新皮质模式)的发作间期癫痫样放电率显著高于N2 - N3非快速眼动睡眠期间(= 0.04)和快速眼动睡眠期间(= 0.01),这一发现在发作起始区更为明显(= 0.004)。放电事件的形态特征在清醒和睡眠阶段的不同脑区受到调节。发作起始区对放电形态的影响受脑区的制约,在颞极区域尤为明显。我们对与脑定位、警觉状态和发作起始区的解剖学关联相关的放电模式进行的分析揭示了发作间期放电、睡眠和发作起始区之间复杂关系的全局和局部方面。这种新方法可能有助于更好地理解认知衰退和对治疗的反应,以及为癫痫患者调整手术干预措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c70/9724782/e9f151ba50dc/fcac183ga1.jpg

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