首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Beat-to-beat ECG ventricular late potentials variance detection by filter bank and wavelet transform as beat-sequence filter
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Beat-to-beat ECG ventricular late potentials variance detection by filter bank and wavelet transform as beat-sequence filter

机译:搏动心电图心电图心室晚期电位变异通过滤波器组和小波变换作为搏动序列滤波器进行检测

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摘要

This paper presents a novel method that employs a wavelet transform and filter bank to detect ventricular late potentials (VLPs) from beat to beat in order to keep its variance. Conventionally, three time-domain features, which are highly related to the QRS complex endpoint, are generally accepted as criteria for classifying VLPs. Signal averaging is a general and effective de-noising method in electroencephalogram late potentials detection, but it may also eliminate the beat-to-beat variance. Other types of filter applied to the time sequence may destroy the late potentials as well when trying to filter out the noise. To preserve the variance from beat to beat as well as late potentials as much as possible, the concept of a beat-sequence filter will be introduced and the wavelet transform can be directly applied to the beat sequence, as will be demonstrated in this paper. After de-noising, instead of applying the voltage comparison on the de-noised signal to determine the QRS complex endpoint, the signal will be processed by a filter bank, and the QRS complex endpoint will be determined by consideration of the correlation between two beats. Both simulation and clinical experimental results will be presented to illustrate the effectiveness of this method.
机译:本文提出了一种新颖的方法,该方法采用小波变换和滤波器组来检测心跳的心跳后期电位(VLP),以保持心跳的方差。常规上,与QRS复杂端点高度相关的三个时域特征通常被接受为VLP分类的标准。信号平均是脑电图后期电势检测中一种通用且有效的降噪方法,但它也可以消除逐拍差异。当尝试滤除噪声时,应用于时间序列的其他类型的滤波器也可能破坏后期电位。为了尽可能保留拍子之间的差异以及后期电势,将引入拍子序列滤波器的概念,并将小波变换直接应用于拍子序列,这将在本文中进行演示。降噪后,不对降噪后的信号施加电压比较以确定QRS复数端点,而是由滤波器组处理该信号,并通过考虑两个拍子之间的相关性来确定QRS复数端点。 。仿真和临床实验结果都将被展示来说明这种方法的有效性。

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