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短暂性发作起始网络用于致痫灶定位:基于 ECoG 数据的有效连通性和图论分析在颞叶癫痫中的应用。

Transient seizure onset network for localization of epileptogenic zone: effective connectivity and graph theory-based analyses of ECoG data in temporal lobe epilepsy.

机构信息

Department of Geriatric Medicine, Beijing Luhe Hospital, Capital Medical University, No. 82, Xinhua South Street, Tongzhou District, Beijing, 101149, China.

Faculty of Information Technology, University of Jyväskylä, 40014, Jyvaskyla, Finland.

出版信息

J Neurol. 2019 Apr;266(4):844-859. doi: 10.1007/s00415-019-09204-4. Epub 2019 Jan 25.

Abstract

OBJECTIVE

Abnormal and dynamic epileptogenic networks cause difficulties for clinical epileptologists in the localization of the seizure onset zone (SOZ) and the epileptogenic zone (EZ) in preoperative assessments of patients with refractory epilepsy. The aim of this study is to investigate the characteristics of time-varying effective connectivity networks in various non-seizure and seizure periods, and to propose a quantitative approach for accurate localization of SOZ and EZ.

METHODS

We used electrocorticogram recordings in the temporal lobe and hippocampus from seven patients with temporal lobe epilepsy to characterize the effective connectivity dynamics at a high temporal resolution using the full-frequency adaptive directed transfer function (ffADTF) measure and five graph metrics, i.e., the out-degree (OD), closeness centrality (CC), betweenness centrality (BC), clustering coefficient (C), and local efficiency (LE). The ffADTF effective connectivity network was calculated and described in five frequency bands (δ, θ, α, β, and γ) and five seizure periods (pre-seizure, early seizure, mid-seizure, late seizure, and post-seizure). The cortical areas with high values of graph metrics in the transient seizure onset network were compared with the SOZ and EZ identified by clinical epileptologists and the results of epilepsy resection surgeries.

RESULTS

Origination and propagation of epileptic activity were observed in the high time resolution ffADTF effective connectivity network throughout the entire seizure period. The seizure-specific transient seizure onset ffADTF network that emerged at seizure onset time remained for approximately 20-50 ms with strong connections generated from both SOZ and EZ. The values of graph metrics in the SOZ and EZ were significantly larger than that in the other cortical areas. More cortical areas with the highest mean of graph metrics were the same as the clinically determined SOZ in the low-frequency δ and θ bands and in Engel Class I patients than in higher frequency α, β, and γ bands and in Engel Class II and III patients. The OD and C were more likely to localize the SOZ and EZ than CC, BC, and LE in the transient seizure onset network.

CONCLUSION

The high temporal resolution ffADTF effective connectivity analysis combined with the graph theoretical analysis helps us to understand how epileptic activity is generated and propagated during the seizure period. The newly discovered seizure-specific transient seizure onset network could be an important biomarker and a promising tool for more precise localization of the SOZ and EZ in preoperative evaluations.

摘要

目的

异常和动态的致痫网络给临床癫痫学家在术前评估耐药性癫痫患者的发作起始区(SOZ)和致痫区(EZ)的定位带来困难。本研究旨在探讨各种非发作期和发作期时变有效连通网络的特征,并提出一种用于准确定位 SOZ 和 EZ 的定量方法。

方法

我们使用 7 名颞叶癫痫患者的颞叶和海马区的脑电图记录,使用全频自适应有向转移函数(ffADTF)测量和 5 个图度量(出度(OD)、接近中心度(CC)、介数中心度(BC)、聚类系数(C)和局部效率(LE))以高时间分辨率描述有效连通动态。计算并描述了 ffADTF 有效连通网络在五个频带(δ、θ、α、β 和γ)和五个发作期(发作前、早期发作、中期发作、晚期发作和发作后)中的情况。与临床癫痫学家确定的 SOZ 和 EZ 以及癫痫切除手术的结果相比,在短暂发作起始网络中具有较高图度量值的皮质区域。

结果

在整个发作期间,在高时间分辨率 ffADTF 有效连通网络中观察到癫痫活动的起源和传播。在发作起始时间出现的发作特异性短暂发作起始 ffADTF 网络持续约 20-50ms,来自 SOZ 和 EZ 的强连接。SOZ 和 EZ 的图度量值明显大于其他皮质区。在低频 δ 和θ 波段和 Engel Ⅰ类患者中,具有最高平均图度量值的更多皮质区与临床确定的 SOZ 相同,而在高频α、β和γ 波段和 Engel Ⅱ类和Ⅲ类患者中则不同。在短暂发作起始网络中,OD 和 C 比 CC、BC 和 LE 更有可能定位 SOZ 和 EZ。

结论

高时间分辨率 ffADTF 有效连通性分析结合图论分析有助于我们了解癫痫活动在发作期间是如何产生和传播的。新发现的发作特异性短暂发作起始网络可能是术前评估中 SOZ 和 EZ 更精确定位的重要生物标志物和有前途的工具。

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