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计算机系统应用英文版:2016,25(2):157-161
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均值滤波和形态学在振荡脉搏波提取中应用
(1.中国科学院大学, 北京 100049;2.中国科学院 沈阳计算技术研究所, 沈阳 110168;3.东北大学, 沈阳 110819;4.中国石油管道公司, 廊坊 065000)
Application of Average Filter and Morphology in Oscillation Pulse Wave Extraction
(1.University of Chinese Academy of Sciences, Beijing 100049, China;2.Shenyang Institute of Computing Technology, Chinese Academy of Sciences, Shenyang 110168, China;3.Northeastern University, Shenyang 110819, China;4.Petro China Pipeline Company, Langfang 065000, China)
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Received:May 26, 2015    Revised:June 27, 2015
中文摘要: 目前,市场上85%以上的电子血压计均采用振荡法进行血压测量,振荡法血压测量的关键步骤就是从原始的采集信号中提取出纯净振荡脉搏波用于血压计算.本文将采用自己研制的基于上气式的血压数据采集装置进行数据采集,针对采集过程中由于电机振荡、呼吸以及身体移动和电子元器件温度变化等因素所引起的高频噪声和基线漂移,提出了滑动均值滤波和数学形态学结合的去噪方法.经过实验验证表明,该方法有效地去除了振荡脉搏波中的高频噪声和基漂信号;通过信号频谱分析表明,明显降低了信号高频段的幅值,信噪比得到了良好的改善,提高了血压测量的精度.
Abstract:At present, in the market, more than 85% of the electronic sphygmomanometers adopt oscillometric method to measure blood pressure. The key step of oscillometric method is to extract the pure oscillation pulse wave from the original signals, which is used for the measurement of blood pressure. This paper will use the self-made device based on the flation of blood pressure data acquisition to collect data. In the view of the high frequency noise and baseline drifting caused by the motor oscillation, respiration and body movement, electronic component temperature changes and so on, method of combination of moving average filter and mathematical morphology is proposed. The experimental result shows that this method can effectively eliminate the high frequency noise and drift signal in the oscillation pulse wave. The signal spectrum analysis shows that it clearly reduces the amplitude of high frequency signal, makes the SNR get a good improvement, and improves the accuracy of blood pressure measurement.
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张笑东,蒲宝明,霍红,李相泽,李姣姣.均值滤波和形态学在振荡脉搏波提取中应用.计算机系统应用,2016,25(2):157-161
ZHANG Xiao-Dong,PU Bao-Ming,HUO Hong,LI Xiang-Ze,LI Jiao-Jiao.Application of Average Filter and Morphology in Oscillation Pulse Wave Extraction.COMPUTER SYSTEMS APPLICATIONS,2016,25(2):157-161