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Validation of head movement correction and spatiotemporal signal space separation in magnetoencephalography

机译:脑磁图中头部运动校正和时空信号空间分离的验证

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Objective: Our aim was to assess the effectiveness and reliability of spatiotemporal signal space separation (tSSS) and movement correction (MC) in magnetoencephalography (MEG) recordings disturbed by head movements and magnetized material on the head. Methods: We recorded MEG from 20 healthy adults in stationary (reference) head position and during controlled head movements. Nearby magnetic interference sources were simulated by attaching magnetized particles on the subject's head. Auditory and somatosensory stimuli were presented. MC, tSSS and averaging were performed to obtain auditory (AEF) and somatosensory (SEF) evoked fields. Neuronal sources were modeled as equivalent current dipoles. MC was also validated by reconstructing signals generated by current dipoles in a phantom. Results: After MC, the AEF and SEF responses recorded during intermittent head movements were similar in amplitude to the reference recordings and differed by 5-7. mm in source location. The tSSS method removed artifacts due to the attached magnetized particles but did not affect the reference data. Conclusions: The methods are able to reliably recover MEG responses contaminated by movements and magnetic artifacts on the head. Significance: The combination of tSSS and MC methods is especially useful in clinical measurements, where movements and magnetic disturbances are commonly present.
机译:目的:我们的目的是评估受头部运动和头部磁化物质干扰的脑磁图(MEG)记录中时空信号空间分离(tSSS)和运动校正(MC)的有效性和可靠性。方法:我们记录了20名健康成年人在固定(参考)头部位置和受控头部运动过程中的MEG。通过将磁化粒子附着在对象的头部上来模拟附近的电磁干扰源。提出了听觉和体感刺激。进行MC,tSSS和求平均值,以获得听觉(AEF)和体感(SEF)诱发场。神经源被建模为等效电流偶极子。 MC还通过重建幻像中的电流偶极子产生的信号来验证。结果:MC后,头部间歇运动期间记录的AEF和SEF响应幅度与参考记录相似,相差5-7。源位置的毫米。 tSSS方法去除了由于附着的磁化粒子而导致的伪影,但并未影响参考数据。结论:这些方法能够可靠地恢复被头部运动和磁伪影污染的MEG反应。启示:tSSS和MC方法的结合在临床测量中特别有用,因为在临床测量中通常会出现运动和电磁干扰。

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