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颅内 EEG 癫痫发作过程中的可测量转变:一项立体脑电图和 SPECT 研究。

Measurable transitions during seizures in intracranial EEG: A stereoelectroencephalography and SPECT study.

机构信息

Neurological Institute, Epilepsy Center, Cleveland Clinic, Cleveland, OH, USA.

Academic Center for Epileptology, Kempenhaeghe and Maastricht UMC+, Heeze, The Netherlands; School for Mental Health and Neuroscience (MHeNs), University Maastricht (UM), Maastricht, The Netherlands.

出版信息

Clin Neurophysiol. 2024 May;161:80-92. doi: 10.1016/j.clinph.2024.02.022. Epub 2024 Feb 23.

Abstract

OBJECTIVE

Ictal Single Photon Emission Computed Tomography (SPECT) and stereo-electroencephalography (SEEG) are diagnostic techniques used for the management of patients with drug-resistant focal epilepsies. While hyperperfusion patterns in ictal SPECT studies reveal seizure onset and propagation pathways, the role of ictal hypoperfusion remains poorly understood. The goal of this study was to systematically characterize the spatio-temporal information flow dynamics between differently perfused brain regions using stereo-EEG recordings.

METHODS

We identified seizure-free patients after resective epilepsy surgery who had prior ictal SPECT and SEEG investigations. We estimated directional connectivity between the epileptogenic-zone (EZ), non-resected areas of hyperperfusion, hypoperfusion, and baseline perfusion during the interictal, preictal, ictal, and postictal periods.

RESULTS

Compared to the background, we noted significant information flow (1) during the preictal period from the EZ to the baseline and hyperperfused regions, (2) during the ictal onset from the EZ to all three regions, and (3) during the period of seizure evolution from the area of hypoperfusion to all three regions.

CONCLUSIONS

Hypoperfused brain regions were found to indirectly interact with the EZ during the ictal period.

SIGNIFICANCE

Our unique study, combining intracranial electrophysiology and perfusion imaging, presents compelling evidence of dynamic changes in directional connectivity between brain regions during the transition from interictal to ictal states.

摘要

目的

发作期单光子发射计算机断层扫描(SPECT)和立体脑电图(SEEG)是用于管理耐药性局灶性癫痫患者的诊断技术。虽然发作期 SPECT 研究中的高灌注模式揭示了发作起始和传播途径,但发作期低灌注的作用仍知之甚少。本研究的目的是使用立体脑电图记录系统地描述不同灌注脑区之间的时空信息流动力学。

方法

我们确定了在接受癫痫手术切除后无发作的患者,这些患者先前有发作期 SPECT 和 SEEG 检查。我们在发作间期、发作前期、发作期和发作后期期间,估算了癫痫灶(EZ)、高灌注区、低灌注区和基线灌注区之间的定向连通性。

结果

与背景相比,我们注意到在发作前期,EZ 向基线和高灌注区有明显的信息流,在发作起始期,EZ 向所有三个区域都有信息流,在癫痫发作进展期间,低灌注区向所有三个区域都有信息流。

结论

在发作期,低灌注脑区与 EZ 之间存在间接相互作用。

意义

我们的这项独特研究结合了颅内电生理学和灌注成像,提供了令人信服的证据,表明在从发作间期到发作期的过渡期间,脑区之间的定向连通性发生了动态变化。

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