DocumentCode :
2925091
Title :
A blood pressure monitor with robust noise reduction system under linear cuff inflation and deflation
Author :
Usuda, Takashi ; Kobayashi, Naoki ; Takeda, Sunao ; Kotake, Yoshifumi
Author_Institution :
Nihon Kohden Corp., Tokyo, Japan
fYear :
2010
fDate :
Aug. 31 2010-Sept. 4 2010
Firstpage :
1226
Lastpage :
1229
Abstract :
We have developed the non-invasive blood pressure monitor which can measure the blood pressure quickly and robustly. This monitor combines two measurement mode: the linear inflation and the linear deflation. On the inflation mode, we realized a faster measurement with rapid inflation rate. On the deflation mode, we realized a robust noise reduction. When there is neither noise nor arrhythmia, the inflation mode incorporated on this monitor provides precise, quick and comfortable measurement. Once the inflation mode fails to calculate appropriate blood pressure due to body movement or arrhythmia, then the monitor switches automatically to the deflation mode and measure blood pressure by using digital signal processing as wavelet analysis, filter bank, filter combined with FFT and Inverse FFT. The inflation mode succeeded 2440 measurements out of 3099 measurements (79%) in an operating room and a rehabilitation room. The new designed blood pressure monitor provides the fastest measurement for patient with normal circulation and robust measurement for patients with body movement or severe arrhythmia. Also this fast measurement method provides comfortableness for patients.
Keywords :
blood pressure measurement; fast Fourier transforms; medical signal processing; patient monitoring; signal denoising; wavelet transforms; FFT; arrhythmia; body movement; deflation; deflation mode; digital signal processing; filter bank; linear cuff inflation; noninvasive blood pressure monitor; operating room; rehabilitation room; robust noise reduction system; wavelet analysis; Biomedical monitoring; Blood pressure; Hemorrhaging; Monitoring; Motion measurement; Noise; Pressure measurement; Algorithms; Artifacts; Blood Pressure Determination; Computer Simulation; Diagnosis, Computer-Assisted; Equipment Design; Equipment Failure Analysis; Linear Models; Models, Cardiovascular; Reproducibility of Results; Sensitivity and Specificity; Sphygmomanometers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2010 Annual International Conference of the IEEE
Conference_Location :
Buenos Aires
ISSN :
1557-170X
Print_ISBN :
978-1-4244-4123-5
Type :
conf
DOI :
10.1109/IEMBS.2010.5626440
Filename :
5626440
Link To Document :
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