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首页> 外文期刊>Biomedical and Health Informatics, IEEE Journal of >A Multi Rate Marginalized Particle Extended Kalman Filter for P and T Wave Segmentation in ECG Signals
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A Multi Rate Marginalized Particle Extended Kalman Filter for P and T Wave Segmentation in ECG Signals

机译:用于心电信号中P波和T波分割的多速率边缘化粒子扩展卡尔曼滤波器

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摘要

The marginalized particle extended Kalman filter (MP-EKF) has been known as an effective model-based nonlinear Bayesian framework in the field of electrocardiogram (ECG) signal denoising. In this paper, we reveal another potential capability of an MP-EKF and propose a multirate MP-EKF based framework for P- and T-wave segmentation in ECG signals. The proposed multirate implementation of MP-EKF leads to better estimation of states and avoids unwanted errors in estimation procedure. The behavior of particles in the multirate MP-EKF is controlled by a novel particle weighting strategy that helps the particles adapt themselves with respect to ECG signal trajectory. After ECG filtering, a novel morphology-based algorithm uses the estimates of a multirate MP-EKF to determine the Pand T-wave fiducial points. This algorithm is a combination of well-known morphological operators such as "opening," closing, "top-hat," and "bottom-hat" transforms. The segme ntation performance of the proposed algorithm was evaluated on QT database and it showed promising results in comparison to other Bayesian frameworks such as partially collapsed Gibbs sampler and extended Kalman filter.
机译:在心电图(ECG)信号降噪领域中,边缘化粒子扩展卡尔曼滤波器(MP-EKF)被公认为一种有效的基于模型的非线性贝叶斯框架。在本文中,我们揭示了MP-EKF的另一种潜在功能,并提出了一种基于MP-EKF的多速率框架,用于ECG信号的P波和T波分段。所提出的MP-EKF的多速率实现方式可以更好地估计状态,并避免估计过程中出现不必要的错误。多速率MP-EKF中的粒子行为由一种新颖的粒子加权策略控制,该策略可帮助粒子针对ECG信号轨迹进行自适应。经过ECG滤波后,一种新颖的基于形态学的算法使用多速率MP-EKF的估计来确定Pand T波基准点。该算法是众所周知的形态运算符的组合,例如“打开”,“关闭”,“顶帽”和“底帽”变换。在QT数据库上评估了该算法的分割性能,与其他贝叶斯框架(例如部分折叠的Gibbs采样器和扩展的Kalman滤波器)相比,该算法显示出了可喜的结果。

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