心电信号处理的多级自适应滤波

Rizwan Qureshi, M. Uzair, K. Khurshid
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引用次数: 18

摘要

在这个忙碌和竞争的世界里,虽然我们对父母和亲人有很多感情,但我们不可能总是和他们在一起。信息技术领域的进步为医疗保健探索了新的途径,电子医疗系统越来越受欢迎。美国公司Biotelemetry为大约100万名患者提供无线医疗设施。它是第一个在家中或任何地方为患者提供实时心电监测、分析和响应的设备。在自动心电分析或电子医疗系统中,心电波形的分析是自动完成的,而不是由医生来完成的,因此嘈杂的心电信号会导致错误的临床诊断。在数据采集或传输过程中,信号中会嵌入几种类型的伪影,这些伪影会降低信号质量,使信号不能忠实于临床诊断。对于自动心电图分析,这些伪影应该被抑制。在文献中发现了许多技术来去除这些伪影,如小波变换、神经网络和自适应滤波器。本文提出了一种新的自适应心电信号处理算法。单级自适应滤波器由于只有一个参考输入,只能从心电信号中去除一种伪影。所提出的多级滤波器可以消除多种类型的伪影,因为有多个参考输入,所以它可以应用于发现多种类型干扰的系统,前提是有关干扰的先验知识是可用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multistage Adaptive filter for ECG signal processing
In this busy and competitive world, though we have a lot of affection with our parents and loved ones, we can not always be with them. The advancement in the field of information technology explores new paths for healthcare and E-health systems are becoming increasingly popular. The American company Biotelemetry provides healthcare facilities wirelessly to approximately one million patients. It was the first to provide real time heartbeat ECG monitoring, analysis and response to the patients at home or anywhere. In automatic ECG analysis or E-health Systems, The analysis of the ECG wave is done automatically, instead of a doctor so a noisy ECG signal will lead to wrong clinical diagnosis. During data acquisition or transmission, several types of artifacts are embedded in the signal which degrades the signal quality and the signal does not remain faithful for clinical diagnosis. For automatic ECG analysis these artifacts should be suppressed. Many techniques are found in the literature to remove these artifacts like wavelet transform, Neural Networks and Adaptive filters. In this paper we propose novel adaptive algorithm for processing of ECG signal. A single stage adaptive filter can remove only one type of artifact from the ECG because it has only one reference input. The proposed multistage filter can eliminate multiple types of artifacts because of multiple reference inputs so it can be applied to the systems where multiple types of interference are found, provided that the apriori knowledge about the interference is available.
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