DocumentCode :
471551
Title :
A Model-based Study of Relationship between Timing of Second Heart Sound and Systolic Blood Pressure
Author :
Zhang, Xin-Yu ; Zhang, Yuan-Ting
Author_Institution :
Joint Res. Center for Biomed. Eng., Chinese Univ. of Hong Kong, Shatin
fYear :
2006
fDate :
Aug. 30 2006-Sept. 3 2006
Firstpage :
1387
Lastpage :
1390
Abstract :
The onset of second heart sound is triggered by the closure of aortic valve due to the interaction of left ventricle and arterial system. Noninvasive experiments found that RS2 defined by the time delay from the peak of ECG R wave to the onset of the second heart sound had a close inverse correlation with arterial systolic blood pressure. However, no theoretical study has been carried out to investigate the underline connections between them. A modified model of heart-arterial system is proposed in the present study. In this model the heart is described as a pressure source depending on time, ventricular volume, outflow, and heart rate, and the arterial system as a nonlinear system incorporating a pressure-dependent compliance. Simulation results show that the modified model is able to reflect the cardiovascular function qualitatively. The results also demonstrate that RS2 is inversely correlated with aortic blood pressure under the effect of changing peripheral resistance, heart rate and contractility. The present study gives insight into the significant functional relations between the parameters characterizing the cardiovascular system and hemodynamics characteristics and provides an interpretation of the experimental observation on the relationship between RS2 and aortic blood pressure
Keywords :
acoustic variables measurement; bioacoustics; bioelectric phenomena; biomechanics; blood pressure measurement; blood vessels; cardiovascular system; electrocardiography; physiological models; ECG R wave; aortic blood pressure; aortic valve closure; arterial systolic blood pressure; cardiac muscle contractility; cardiovascular function; heart rate; heart-arterial interaction model; hemodynamics characteristics; inverse correlation; left ventricle; noninvasive measurement; nonlinear system; peripheral resistance; pressure-dependent compliance; second heart sound; time delay; Blood pressure; Cardiology; Cardiovascular system; Delay effects; Electrocardiography; Heart rate; Heart valves; Hemodynamics; Nonlinear systems; Timing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society, 2006. EMBS '06. 28th Annual International Conference of the IEEE
Conference_Location :
New York, NY
ISSN :
1557-170X
Print_ISBN :
1-4244-0032-5
Electronic_ISBN :
1557-170X
Type :
conf
DOI :
10.1109/IEMBS.2006.259507
Filename :
4462020
Link To Document :
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