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Adaptive filtering in phase space for foetal electrocardiogram estimation from an abdominal electrocardiogram signal and a thoracic electrocardiogram signal

机译:相空间中的自适应滤波可根据腹部心电图信号和胸部心电图信号估算胎儿心电图

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摘要

In this study, an adaptive filtering in phase space for foetal electrocardiogram (ECG) extraction from a maternal abdominal ECG signal and a thoracic ECG signal is proposed. The phase space trajectory is reconstructed with one abdominal ECG signal and one thoracic ECG signal from a pregnant women. The non-linear and time-variant relationship between the thoracic ECG signal and maternal ECG component in abdominal signal is built by the adaptive local modelling in phase space, and the maternal ECG component in abdominal ECG signal can be estimated, which is then subtracted from the abdominal ECG signal to obtain a foetal ECG estimate. The local modelling process is carried on the spatial neighbouring points of each point in phase space, not on the temporal neighbouring points of each point in time sequence as usual. This can utilise the geometric information of the periodic ECG signal, and the simpler local relationship represented in phase space makes the estimation of the relationship easier and more accurate. Compared with the classical adaptive filter, the proposed method has shown the improved robustness and fidelity in restoration of the foetal ECG, testing with synthetic and real ECG signals.
机译:在这项研究中,提出了一种相空间中的自适应滤波,用于从孕妇腹部ECG信号和胸部ECG信号中提取胎儿心电图(ECG)。用一个孕妇的腹部ECG信号和一个胸部ECG信号重建相空间轨迹。通过在相空间中进行自适应局部建模,建立胸壁心电信号与腹部信号中母体心电信号之间的非线性和时变关系,可以估算出腹部心电信号中的母体心电图分量,然后将其减去腹部ECG信号以获得胎儿ECG估计值。局部建模过程是在相空间中每个点的空间相邻点上进行的,而不是像往常一样在时间序列上的每个点的时间相邻点上进行的。这可以利用周期性ECG信号的几何信息,并且在相空间中表示的更简单的局部关系使得对关系的估计更加容易和准确。与经典的自适应滤波器相比,该方法在胎儿心电图的恢复,合成和真实心电图信号测试中显示出了更高的鲁棒性和保真度。

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  • 来源
    《Signal Processing, IET》 |2012年第3期|p.171-177|共7页
  • 作者

    Wei Z.; Hongxing L.; Jianchun C.;

  • 作者单位

    School of Electronic Science and Engineering, Nanjing University, Nanjing, People's Republic of China, School of Electronic Information, Jiangsu University of Science and Technology, Zhenjiang, People's Republic of China;

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