Improving ECG signal denoising using wavelet transform for the prediction of malignant arrhythmias

A. Giorgio, C. Guaragnella, Domenico Andrea Giliberti
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引用次数: 10

Abstract

This paper deals with the accuracy of algorithms for the detection of ventricular late potentials (VLP) in an electrocardiographic signal (ECG), being associated with malignant arrhytmias and possible cardiac death. VLP detection is strongly influenced by signal noise. The objective of this paper is to define a denoising algorithm improving the VLPs detection. The method uses wavelet denoising, subband coding, unfortunately introducing heavy linear distortions. Therefore, an equalisation filter has been properly designed, in order to cancel the distortions. The algorithm has been implemented and successfully verified using MATLAB. Then, it has been implemented on Altera's FPGA and then verified on the evaluation board DE1-SoC. On-board processed results and theoretical results are consistent, validating the algorithm. The results show that the algorithm capability to be implemented as programmable hardware. It also could be used for upgrading ECG devices reliability in the field of heart diseases prevention.
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改进心电信号去噪的小波变换预测恶性心律失常
本文讨论了在心电图信号(ECG)中检测心室晚电位(VLP)的算法的准确性,它与恶性心律失常和可能的心源性死亡有关。VLP检测受信号噪声的影响较大。本文的目标是定义一种改进VLPs检测的去噪算法。该方法采用小波去噪,子带编码,不幸的是引入了严重的线性失真。因此,均衡滤波器已被适当地设计,以消除失真。该算法已在MATLAB中实现并成功验证。然后在Altera公司的FPGA上实现,然后在评估板DE1-SoC上进行验证。板载处理结果与理论结果一致,验证了算法的有效性。结果表明,该算法可以作为可编程硬件实现。它还可用于提高心电设备在心脏病预防领域的可靠性。
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