Institut de Neurosciences des Systèmes, Institut National de la Santé et de la Recherche Médicale, Aix Marseille Université, Marseille 13005, France.
MEG Departement, CERMEP-Imagerie du Vivant, Lyon 69003, France.
eNeuro. 2023 Dec 22;10(12). doi: 10.1523/ENEURO.0222-23.2023. Print 2023 Dec.
Magnetoencephalography based on superconducting quantum interference devices (SQUIDs) has been shown to improve the diagnosis and surgical treatment decision for presurgical evaluation of drug-resistant epilepsy. Still, its use remains limited because of several constraints such as cost, fixed helmet size, and the obligation of immobility. A new generation of sensors, optically pumped magnetometers (OPMs), could overcome these limitations. In this study, we validate the ability of helium-based OPM (He-OPM) sensors to record epileptic brain activity thanks to simultaneous recordings with intracerebral EEG [stereotactic EEG (SEEG)]. We recorded simultaneous SQUIDs-SEEG and 4He-OPM-SEEG signals in one patient during two sessions. We show that epileptic activities on intracerebral EEG can be recorded by OPMs with a better signal-to noise ratio than classical SQUIDs. The OPM sensors open new venues for the widespread application of magnetoencephalography in the management of epilepsy and other neurologic diseases and fundamental neuroscience.
基于超导量子干涉器件(SQUIDs)的脑磁图(MEG)已被证明可改善耐药性癫痫的术前评估的诊断和手术治疗决策。然而,由于成本、固定头盔尺寸和不可移动性等限制,其应用仍然有限。新一代传感器,光泵磁强计(OPM),可以克服这些限制。在这项研究中,我们通过与颅内脑电图[立体定向脑电图(SEEG)]的同步记录,验证了氦基 OPM(He-OPM)传感器记录癫痫脑活动的能力。我们在一名患者的两次治疗过程中同时记录了 SQUIDs-SEEG 和 4He-OPM-SEEG 信号。我们表明,OPM 可以记录颅内 EEG 上的癫痫活动,其信噪比优于经典的 SQUIDs。OPM 传感器为在癫痫和其他神经疾病以及基础神经科学的管理中广泛应用脑磁图开辟了新的途径。