A fast sample entropy for pulse rate variability analysis

被引:0
|
作者
Lijuan Chou
Shengrong Gong
Haiping Yang
Jicheng Liu
Yongxin Chou
机构
[1] Changshu Institute of Technology,School of Electrical and Automatic Engineering
[2] Northeast Petroleum University,School of Computer and Information Technology
[3] Changshu Institute of Technology,School of Computer Science and Engineering
关键词
Pulse rate variability; Pulse signal; Sample entropy; Signal processing in real time; Low time-consumption;
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中图分类号
学科分类号
摘要
Sample entropy is an effective nonlinear index for analyzing pulse rate variability (PRV) signal, but it has problems with a large amount of calculation and time consumption. Therefore, this study proposes a fast sample entropy calculation method to analyze the PRV signal according to the microprocessor process of data updating and the principle of sample entropy. The simulated data and PRV signal are employed as experimental data to verify the accuracy and time consumption of the proposed method. The experimental results on simulated data display that the proposed improved sample entropy can improve the operation rate of the entropy value by a maximum of 47.6 times and an average of 28.6 times and keep the entropy value unchanged. Experimental results on PRV signal display that the proposed improved sample entropy has great potential in the real-time processing of physiological signals, which can increase approximately 35 times.
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页码:1603 / 1617
页数:14
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