DocumentCode :
2629353
Title :
Simulation of Estimating the Blood Pressure Using an Arterial Pressure-Volume Model
Author :
Yoon, Sang-hwa ; Jung, Jae-hee ; Jeon, Ah-young ; Kim, In-cheol ; Kang, Sung-chul ; Kim, Jae-hyoung ; Kim, Cheol-han ; Ye, Soo-young ; Jeon, Gye-rok
Author_Institution :
PhysioLab Co. Ltd, Busan
fYear :
2007
fDate :
21-23 Nov. 2007
Firstpage :
2181
Lastpage :
2186
Abstract :
The abstract is to be in an analysis on the conventional the blood pressure estimation method using an oscillometric sphygmomanometer was performed through a computer simulation using an arterial pressure-volume (APV) model. Traditionally, the maximum amplitude algorithm (MAP) was applied on the oscillation waveforms of the APV model to obtain the mean arterial pressure and the characteristic ratio. The estimation of mean arterial pressure and characteristic ratio was significantly affected with the shape of the blood pressure waveforms and the cutoff frequency of high-pass filter (HPL) circuitry. Experimental errors are due to these effects when estimating blood pressure. To find out an algorithm independent from the influence of waveform shapes and parameters of HPL, the volume oscillation of the APV model and the phase shift of the oscillation with fast Fourier transform (FFT) were testified while increasing the cuff pressure from 1 mmHg to 200 mmHg (1 mmHg per second). The phase shift between the ranges of volume oscillation was then only observed between the systolic and the diastolic blood pressures. The same results were also obtained from the simulations performed on two different the arterial blood pressure waveforms and one hyperthermia waveform.
Keywords :
blood pressure measurement; fast Fourier transforms; high-pass filters; manometers; medical computing; arterial pressure-volume model; blood pressure estimation; computer simulation; fast Fourier transform; high-pass filter circuitry; maximum amplitude algorithm; oscillometric sphygmomanometer; Blood pressure; Circuits; Computational modeling; Computer simulation; Cutoff frequency; Fast Fourier transforms; Filters; Frequency estimation; Performance analysis; Shape;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Convergence Information Technology, 2007. International Conference on
Conference_Location :
Gyeongju
Print_ISBN :
0-7695-3038-9
Type :
conf
DOI :
10.1109/ICCIT.2007.412
Filename :
4420577
Link To Document :
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