University of Calgary, Calgary, Alberta, Canada.
University Medical Center Freiburg, University of Freiburg, Freiburg, Germany; and.
J Clin Neurophysiol. 2024 Jul 1;41(5):444-449. doi: 10.1097/WNP.0000000000001086. Epub 2024 Jun 25.
Stereo-EEG is a widely used method to improve the diagnostic precision of presurgical workup in patients with refractory epilepsy. Its ability to detect epileptic activity and identify epileptic networks largely depends on the chosen implantation strategy. Even in an ideal situation, electrodes record activity generated in <10% of the brain and contacts only record from brain tissue in their immediate proximity. In this article, the authors discuss how recording stereo-EEG simultaneously with other diagnostic methods can improve its diagnostic value in clinical and research settings. It can help overcome the limited spatial coverage of intracranial recording and better understand the sources of epileptic activity. Simultaneous scalp EEG is the most widely available method, often used to understand large epileptic networks, seizure propagation, and EEG activity occurring on the contralateral hemisphere. Simultaneous magnetoencephalography allows for more precise source localization and identification of deep sources outside the stereo-EEG coverage. Finally, simultaneous functional MRI can highlight metabolic changes following epileptic activity and help understand the widespread network changes associated with interictal activity. This overview highlights advantages and methodological challenges for all these methods. Clinical use and research applications are presented for each approach.
立体脑电图是一种广泛应用的方法,可提高耐药性癫痫患者术前评估的诊断精度。其检测癫痫活动和识别癫痫网络的能力在很大程度上取决于所选的植入策略。即使在理想的情况下,电极也只能记录大脑中 <10%的活动,而且电极触点只能记录其附近的脑组织的活动。在本文中,作者讨论了如何将立体脑电图与其他诊断方法同时使用,以提高其在临床和研究环境中的诊断价值。它可以帮助克服颅内记录的空间覆盖范围有限的问题,并更好地了解癫痫活动的来源。同时进行头皮脑电图是最广泛应用的方法,常用于了解大型癫痫网络、癫痫发作的传播以及对侧半球的脑电图活动。同时进行脑磁图允许更精确的源定位和识别立体脑电图覆盖范围之外的深部源。最后,同时进行功能磁共振成像可以突出癫痫活动后的代谢变化,并有助于了解与发作间期活动相关的广泛网络变化。该综述强调了所有这些方法的优点和方法学挑战。介绍了每种方法的临床应用和研究应用。