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Multiple signal source localization from spatio-temporal magnetocardiogram

机译:时空心电图的多信号源定位

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Mosher et al. (1992) have proposed a new method to localize multiple dipoles from spatio-temporal biomagnetic data. The method is based on the multiple signal classification (MUSIC) developed in the field of array signal processing. However, the MUSIC fails to produce good solutions in some situations where time series from multiple dipoles are strongly correlated, multiple dipoles are closely spaced, or signal to noise ratio of time series is low. To improve the performance of the MUSIC, we propose new localization methods based on the subspace fitting framework developed by Viberg and Ottersten (1991). Simulation studies demonstrate that the new methods produce better solutions than the MUSIC in the above mentioned ill-conditioned situations. Furthermore, we apply these methods to real magnetocardiograms measured by using 64 channel SQUID magnetometers.
机译:Mosher等。 (1992)提出了一种新的方法来定位来自时空生物磁数据的多个偶极子。该方法基于阵列信号处理领域中开发的多信号分类(MUSIC)。但是,在某些情况下,MUSIC无法产生良好的解决方案,在这些情况下,多个偶极子的时间序列紧密相关,多个偶极子的间距很近,或者时间序列的信噪比很低。为了提高MUSIC的性能,我们基于Viberg和Ottersten(1991)开发的子空间拟合框架提出了新的定位方法。仿真研究表明,在上述病态情况下,新方法比MUSIC产生更好的解决方案。此外,我们将这些方法应用于使用64通道SQUID磁力计测量的真实心电图。

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