DocumentCode :
833635
Title :
Real-Time Monitoring of Respiration Rhythm and Pulse Rate During Sleep
Author :
Xin Zhu ; Wenxi Chen ; Nemoto, T. ; Kanemitsu, Y. ; Kitamura, K. ; Yamakoshi, K. ; Daming Wei
Author_Institution :
Dept. of Inf. Syst., Univ. of Aizu, Fukushima
Volume :
53
Issue :
12
fYear :
2006
Firstpage :
2553
Lastpage :
2563
Abstract :
A noninvasive and unconstrained real-time method to detect the respiration rhythm and pulse rate during sleep is presented. By employing the agrave trous algorithm of the wavelet transformation (WT), the respiration rhythm and pulse rate can be monitored in real-time from a pressure signal acquired with a pressure sensor placed under a pillow. The waveform for respiration rhythm detection is derived from the 26 scale approximation, while that for pulse rate detection is synthesized by combining the 24 and 25 scale details. To minimize the latency in data processing and realize the highest real-time performance, the respiration rhythm and pulse rate are estimated by using waveforms directly derived from the WT approximation and detail components without the reconstruction procedure. This method is evaluated with data collected from 13 healthy subjects. By comparing with detections from finger photoelectric plethysmograms used for pulse rate detection, the sensitivity and positive predictivity were 99.17% and 98.53%, respectively. Similarly, for respiration rhythm, compared with detections from nasal thermistor signals, results were 95.63% and 95.42%, respectively. This study suggests that the proposed method is promising to be used in a respiration rhythm and pulse rate monitor for real-time monitoring of sleep-related diseases during sleep
Keywords :
bioelectric phenomena; haemodynamics; medical signal processing; plethysmography; pneumodynamics; pressure sensors; sleep; wavelet transforms; a trous algorithm; finger photoelectric plethysmograms; nasal thermistor signals; pressure sensor; pressure signal; pulse rate detection; real-time monitoring; respiration rhythm; sleep; wavelet transformation; Biomedical measurements; Cardiac disease; Cardiovascular diseases; Condition monitoring; Heart rate; Heart rate measurement; Information systems; Rhythm; Sleep; Strain measurement; à trous algorithm; pulse rate; real-time monitor; respiration rhythm; sleep monitor; wavelet transformation; Adult; Algorithms; Computer Systems; Diagnosis, Computer-Assisted; Female; Heart Rate; Humans; Male; Manometry; Polysomnography; Pressure; Respiratory Mechanics; Sleep;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2006.884641
Filename :
4015625
Link To Document :
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