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A FULLY AUTOMATIC METHOD FOR ACCURATE PARAMETRIZATION AND RECONSTRUCTION OF ECG WAVEFORMS

机译:一种完全自动的ECG波形参数化和重构方法

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Parameterization and synthesis of electrocardiogram (ECG) recordings are some of the most challenging problems in biomedical signal processing owing to the fact that ECG signals commonly exhibit complex temporal morphology and contain numerous artifacts of data collection process. In this paper, we present a fully automatic framework for accurate and robust parameterization and reconstruction of ECG waveforms. The method uses the observed signal to ascertain a nondeterministic model for the ECG signal and employs the Dynamic Time warping (DTW) algorithm to determine a non-linear temporal relationship between the established ECG model and the individual pulses in the ECG signal. The results of parameterization provide a set of data that accurately describe the morphology of the ECG pulses. The proposed signal synthesis algorithm is able to independently account for the temporal and spatial dynamics of consecutive ECG pulses and provide a faithful reconstruction of ECG signals. Performance evaluation experiments are conducted on a database of 135 one-minute ECG recordings. The percentage rootmean- square difference measure is employed to evaluate the quality of signal reconstruction and also validate the results of signal parameterization.
机译:参数化和心电图的合成(ECG)录音是一些在生物医学信号处理由于这样的事实,ECG信号通常表现复杂的时间形态和包含数据收集过程的许多伪影的最具挑战性的问题。在本文中,我们为ECG波形的准确和强大的参数化和重建提供了一个全自动的框架。该方法使用所观察到的信号来确定ECG信号的非定值模型,并采用动态时间翘曲(DTW)算法来确定所建立的ECG模型和ECG信号中的各个脉冲之间的非线性时间关系。参数化的结果提供了一组准确描述了ECG脉冲形态的数据。所提出的信号综合算法能够独立地解释连续ECG脉冲的时间和空间动态,并提供ECG信号的忠实重建。性能评估实验是在135个一分钟的ECG录制的数据库上进行的。使用百分比rooteman-平方差异测量来评估信号重建的质量,并验证信号参数化的结果。

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