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Multiscale-Wavelet Regularization Method for the Inverse Problem of Electrocardiography

机译:心电图反问题的多尺度小波正则化方法

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Purpose: The objective of the inverse problem in electrocardiography (ECG) is noninvasively to recover regional information about intra-cardiac electrical events for diagnosis by reconstructing the heart surface potential distribution from body surface potentials. However, ECG inverse problem is ill-posed, new regularization methods are needed to obtain a more accurate solution. Methods: In this paper, we propose a new approach which utilize different regularization methods in wavelet domain to solve the ECG inverse problem. Due to the different distribution of ECG signal in different wavelet coefficients which effect on heart surface potential reconstruction, our method applies different regularization methods for different wavelet coefficients. Conclusion: We use the weighted underestimate indicator(WUI) and the weighted overestimate indicator(WOI) of lesion to evaluate our methods on the basis of public simulation dataset. By comparing results of the reconstruction of heart surface potentials of our new approach with the other two traditional approaches, Tikhnonv regularization method in time domain and Tikhnonv regularization method in wavelet domain, it is proved that our approach can improve the accuracy of the solution of ECG inverse problem.
机译:目的:心电逆问题的目的是通过从体表电位重建心脏表面电位分布,无创地恢复心脏内电事件的区域信息,以进行诊断。然而,心电逆问题是不适定的,需要新的正则化方法来获得更精确的解。方法:本文提出了一种利用小波域不同正则化方法求解心电逆问题的新方法。由于ECG信号在不同小波系数中的分布不同,从而影响心脏表面电位的重建,我们的方法对不同的小波系数采用不同的正则化方法。结论:基于公共模拟数据集,我们使用病变的加权低估指数(WUI)和加权高估指数(WOI)来评估我们的方法。通过与其他两种传统方法——时域Tikhnonv正则化方法和小波域Tikhnonv正则化方法的心脏表面电位重建结果的比较,证明了该方法可以提高ECG逆问题解的精度。

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