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OPM-MEG 测量源时间序列的相位同步:在节律性正中神经刺激中的应用。

OPM-MEG Measuring Phase Synchronization on Source Time Series: Application in Rhythmic Median Nerve Stimulation.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2024;32:1426-1434. doi: 10.1109/TNSRE.2024.3381173. Epub 2024 Apr 1.

DOI:10.1109/TNSRE.2024.3381173
PMID:38530717
Abstract

The magnetoencephalogram (MEG) based on array optically pumped magnetometers (OPMs) has the potential of replacing conventional cryogenic superconducting quantum interference device. Phase synchronization is a common method for measuring brain oscillations and functional connectivity. Verifying the feasibility and fidelity of OPM-MEG in measuring phase synchronization will help its widespread application in the study of aforementioned neural mechanisms. The analysis method on source-level time series can weaken the influence of instantaneous field spread effect. In this paper, the OPM-MEG was used for measuring the evoked responses of 20Hz rhythmic and arrhythmic median nerve stimulation, and the inter-trial phase synchronization (ITPS) and inter-reginal phase synchronization (IRPS) of primary somatosensory cortex (SI) and secondary somatosensory cortex (SII) were analysed. The results find that under rhythmic condition, the evoked responses of SI and SII show continuous oscillations and the effect of resetting phase. The values of ITPS and IRPS significantly increase at the stimulation frequency of 20Hz and its harmonic of 40Hz, whereas the arrhythmic stimulation does not exhibit this phenomenon. Moreover, in the initial stage of stimulation, the ITPS and IRPS values are significantly higher at Mu rhythm in the rhythmic condition compared to arrhythmic. In conclusion, the results demonstrate the ability of OPM-MEG in measuring phase pattern and functional connectivity on source-level, and may also prove beneficial for the study on the mechanism of rhythmic stimulation therapy for rehabilitation.

摘要

基于光泵磁强计(OPM)的脑磁图(MEG)具有替代传统低温超导量子干涉仪的潜力。相位同步是测量脑振荡和功能连接的常用方法。验证 OPM-MEG 在测量相位同步方面的可行性和保真度将有助于其在上述神经机制研究中的广泛应用。基于源水平时间序列的分析方法可以减弱瞬时磁场扩展效应的影响。在本文中,使用 OPM-MEG 测量了 20Hz 节律性和非节律性正中神经刺激的诱发反应,并分析了初级体感皮层(SI)和次级体感皮层(SII)的跨试相位同步(ITPS)和区域间相位同步(IRPS)。结果发现,在节律性条件下,SI 和 SII 的诱发反应呈现连续振荡和重置相位的效应。在刺激频率为 20Hz 及其谐波 40Hz 时,ITPS 和 IRPS 值显著增加,而非节律性刺激则没有表现出这种现象。此外,在刺激的初始阶段,节律性条件下 Mu 节律的 ITPS 和 IRPS 值明显高于非节律性条件。总之,这些结果表明了 OPM-MEG 在源水平测量相位模式和功能连接的能力,这也可能有助于研究节律性刺激治疗康复的机制。

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引用本文的文献

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Oscillatory and evoked neural responses underlying gating in the primary somatosensory cortices: Evidence from optically-pumped magnetometry.初级体感皮层中门控作用背后的振荡性和诱发性神经反应:来自光泵磁力测量法的证据。
Neuroimage. 2025 Sep;318:121393. doi: 10.1016/j.neuroimage.2025.121393. Epub 2025 Jul 22.
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Decoding the Spatiotemporal Dynamics of Neural Response Similarity in Auditory Processing: A Multivariate Analysis Based on OPM-MEG.解码听觉处理中神经反应相似性的时空动态:基于OPM-MEG的多变量分析
Hum Brain Mapp. 2025 Mar;46(4):e70175. doi: 10.1002/hbm.70175.
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