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Discrimination of Multiple Sources of 3D Biomagnetic Field usingFrequency and Phase Analyses

机译:使用频率和相位分析的三维生物磁场多种来源的判断

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This paper describes the usefulness of 3D biomagnetic field measurements for discriminating multiple sources closely located and overlapped in time such as in magnetocardiogram(MCG) and magnetoencephalogram (MEG), using frequency and phase analysis. 3D MCG measurements with 48 positions on the chest wall were carried out on normal subjects and on a patient with Wolff-Parkinson-White (WPW) syndrome using a 3D vector second-order gradiometer connected to 39-channel SQUIDs, which can simultaneously detect magnetic fields perpendicular (Bz) and tangential (Bx, By) to the chest wall. To discriminate multiple sources activating in the heart we developed a signal processing method consisting of singular value decomposition(SVD) to estimate the number of equivalent sources, time-frequency analysis to calculate the frequency spectrum of 3D MCG wave-forms, and coherency analysis to calculate phase coherency at each measurement position. We were able to discriminate multiple sources consisting of the source of an accessory pathway and the source of a normal pathway hidden by an intense signal such as the delta wave of the WPW patient, using coherency analysis with the tangential component (Bx, By) added to the normal component(Bz).
机译:本文介绍了用于区分频率和相位分析的识别密切围绕和磁铁(MCG)和磁性脑图(MEG)重叠的多个源的3D生物磁场测量的有用性。 3D MCG测量与胸壁上有48个位置的MCG测量在正常受试者和使用Wolff-Parkinson-White(WPW)综合征的患者身上使用连接到39沟道鱿鱼的3D矢量二阶渐变计,可以同时检测磁性围绕胸壁垂直(BZ)和切向(BX,B)到胸壁。为了区分心脏激活的多个来源,我们开发了由奇异值分解(SVD)组成的信号处理方法,以估计等效源,时频分析的数量,以计算3D MCG波形的频谱,以及相干性分析计算每个测量位置的相色差。我们能够区分由附件途径的来源和由诸如WPW患者的ΔVear的ΔVave的强烈信号隐藏的正常通路来源的多个来源,使用与切向组分(Bx,by)添加的一致性分析到正常组分(BZ)。

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