电容感应
信号(编程语言)
自适应滤波器
电容
电容耦合
噪音(视频)
加速度
计算机科学
远程病人监护
工件(错误)
滤波器(信号处理)
降噪
电子工程
人工智能
工程类
计算机视觉
电极
电气工程
医学
物理
电压
图像(数学)
操作系统
放射科
经典力学
程序设计语言
量子力学
作者
Lin Xu,Chiara Rabotti,Yijing Zhang,Sotir Ouzounov,Pieter Harpe,Massimo Mischi
标识
DOI:10.1109/tim.2018.2884041
摘要
Electrocardiography (ECG) measurements are essential components in clinical diagnosis and monitoring. Conventional ECG measurements produce discomfort to the patients due to the use of gel and direct skin contact. Capacitive electrodes can measure ECG signals through an isolation layer; they are especially suitable for long-term ambulatory monitoring. However, capacitive ECG measurements are severely affected by motion artifacts (MAs) due to variable coupling distance. Adaptive filtering has been widely used for MA reduction in ECG measurements. Unfortunately, a reference signal recorded by additional sensors is required for the existing adaptive-filtering methods, limiting their applicability in ambulatory settings. In this paper on capacitive ECG recordings, a novel adaptivefiltering method is proposed for MA removal, where the reference signal is extracted from the power-line interference (PLI). PLI is particularly evident in a capacitive ECG due to unbalanced coupling capacitance. Along with MAs, electrode movement causes variations in the PLI amplitude. By demodulating the PLI, a reference signal reflecting variations in the coupling capacitance can be extracted for adaptive MA removal. The proposed method was evaluated both by simulations and real data and compared with the acceleration-based adaptive-filtering method. Comparable or higher ECG signal-to-noise ratio was achieved by the proposed method with a computational cost of 79 μs/iteration, indicating effective MA removal. The proposed method may, therefore, lead to improved analysis of capacitive ECG signals in ambulatory settings.
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