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Removal of magnetoencephalographic artifacts with temporal signal‐space separation: Demonstration with single‐trial auditory‐evoked responses

机译:通过时间信号空间分离去除脑磁图的伪影:单次听觉诱发反应的演示

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摘要

Magnetic interference signals often hamper analysis of magnetoencephalographic (MEG) measurements. Artifact sources in the proximity of the sensors cause strong and spatially complex signals that are particularly challenging for the existing interference‐suppression methods. Here we demonstrate the performance of the temporally extended signal space separation method (tSSS) in removing strong interference caused by external and nearby sources on auditory‐evoked magnetic fields—the sources of which are well established. The MEG signals were contaminated by normal environmental interference, by artificially produced additional external interference, and by nearby artifacts produced by a piece of magnetized wire in the subject's lip. After tSSS processing, even the single‐trial auditory responses had a good‐enough signal‐to‐noise ratio for detailed waveform and source analysis. Waveforms and source locations of the tSSS‐reconstructed data were in good agreement with the responses from the control condition without extra interference. Our results demonstrate that tSSS is a robust and efficient method for removing a wide range of different types of interference signals in neuromagnetic multichannel measurements. Hum Brain Mapp 2009. © 2008 Wiley‐Liss, Inc.
机译:电磁干扰信号通常会妨碍对脑磁图(MEG)测量结果的分析。传感器附近的伪像源会产生强而空间复杂的信号,这对于现有的干扰抑制方法尤其具有挑战性。在这里,我们演示了暂时扩展的信号空间分离方法(tSSS)在消除由外部和附近源对听觉诱发的磁场造成的强干扰方面的性能,该干扰源已被充分证实。 MEG信号受到正常环境干扰,人为产生的其他外部干扰以及受试者嘴唇中的一根磁化线产生的附近伪影的污染。经过tSSS处理后,即使是单次试听的听觉响应也具有足够的信噪比,可以进行详细的波形和信号源分析。 tSSS重建数据的波形和源位置与控制条件下的响应非常吻合,没有额外的干扰。我们的结果表明,tSSS是一种强大而有效的方法,可以消除神经磁多通道测量中的各种不同类型的干扰信号。嗡嗡声大脑Mapp2009。©2008 Wiley-Liss,Inc.

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