CERMEP-Imagerie du Vivant, MEG Departement, 69000 Lyon, France.
CRNL, UMR_S 1028, HCL, Université Lyon 1, 69000 Lyon, France.
Sensors (Basel). 2023 Mar 3;23(5):2801. doi: 10.3390/s23052801.
MagnetoEncephaloGraphy (MEG) provides a measure of electrical activity in the brain at a millisecond time scale. From these signals, one can non-invasively derive the dynamics of brain activity. Conventional MEG systems (SQUID-MEG) use very low temperatures to achieve the necessary sensitivity. This leads to severe experimental and economical limitations. A new generation of MEG sensors is emerging: the optically pumped magnetometers (OPM). In OPM, an atomic gas enclosed in a glass cell is traversed by a laser beam whose modulation depends on the local magnetic field. MAGHealth is developing OPMs using Helium gas (He-OPM). They operate at room temperature with a large dynamic range and a large frequency bandwidth and output natively a 3D vectorial measure of the magnetic field. In this study, five He-OPMs were compared to a classical SQUID-MEG system in a group of 18 volunteers to evaluate their experimental performances. Considering that the He-OPMs operate at real room temperature and can be placed directly on the head, our assumption was that He-OPMs would provide a reliable recording of physiological magnetic brain activity. Indeed, the results showed that the He-OPMs showed very similar results to the classical SQUID-MEG system by taking advantage of a shorter distance to the brain, despite having a lower sensitivity.
磁脑图(MEG)以毫秒级的时间尺度提供大脑电活动的测量。从这些信号中,可以非侵入性地推断大脑活动的动态。传统的 MEG 系统(SQUID-MEG)使用极低的温度来实现必要的灵敏度。这导致了严重的实验和经济限制。新一代的 MEG 传感器正在出现:光学泵浦磁力计(OPM)。在 OPM 中,玻璃管中的原子气体通过激光束穿过,激光束的调制取决于局部磁场。MAGHealth 正在使用氦气(He-OPM)开发 OPM。它们在室温下工作,具有大的动态范围和大的频率带宽,并输出磁场的原生 3D 矢量测量。在这项研究中,五台 He-OPM 与一组 18 名志愿者中的经典 SQUID-MEG 系统进行了比较,以评估它们的实验性能。考虑到 He-OPM 实际上在室温下运行并且可以直接放置在头部,我们假设 He-OPM 将提供对生理磁脑活动的可靠记录。实际上,结果表明,尽管灵敏度较低,但由于与大脑的距离较短,He-OPM 表现出与经典 SQUID-MEG 系统非常相似的结果。