Beat-to-beat stroke volume estimation from aortic pressure waveform in conscious rats: comparison of models.
- 1 September 2001
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Heart and Circulatory Physiology
- Vol. 281 (3) , H1148-H1155
- https://doi.org/10.1152/ajpheart.2001.281.3.h1148
Abstract
Several methods for estimating stroke volume (SV) were tested in conscious, freely moving rats in which ascending aortic pressure and cardiac flow were simultaneously (beat-to-beat) recorded. We compared two pulse-contour models to two new statistical models including eight parameters extracted from the pressure waveform in a multiple linear regression. Global as well as individual statistical models gave higher correlation coefficients between estimated and measured SV (model 1, r = 0.97; model 2, r = 0.96) than pulse-contour models (model 1, r = 0.83; model 2, r = 0.91). The latter models as well as statistical model 1 used the pulsatile systolic area and thus could be applied to only 47 +/- 17% of the cardiac beats. In contrast, statistical model 2 used the pressure-increase characteristics and was therefore established for all of the cardiac beats. The global statistical model 2 applied to data sets independent of those used to establish the model gave reliable SV estimates: r = 0.54 +/- 0.07, a small bias between -8% to +10%, and a mean precision of 7%. This work demonstrated the limits of pulse-contour models to estimate SV in conscious, unrestrained rats. A multivariate statistical model using eight parameters easily extracted from the aortic waveform could be applied to all cardiac beats with good precision.Keywords
This publication has 19 references indexed in Scilit:
- Assessment of cardiac sympathetic regulation by respiratory‐related arterial pressure variability in the ratThe Journal of Physiology, 1999
- A software package for non-invasive, real-time beat-to-beat monitoring of stroke volume, blood pressure, total peripheral resistance and for assessment of autonomic functionAn updated and improved software version for Windows 95/NT and the complete biosignal electronics (ECG, ICG, beat-to-beat and oscillometric blood pressure and pulse oxymetry) will be supplied in a compact instrument by: CNSystems Medical Equipment Inc. Heinrichstrasse 22 A-8010 Graz, Austria, Europe. Tel: +43/316/3631-0; Fax: +43/316/3631-20; E-mail: sales@cnsystems.at; Internet: http.//www.cnsytems.atComputers in Biology and Medicine, 1998
- Assessment of cardiac output from noninvasive determination of arterial pressure profile in subjects at restEuropean Journal of Applied Physiology, 1994
- Pulse contour cardiac output in surgical intensive care unit patientsJournal of Clinical Anesthesia, 1993
- Continuous cardiac output monitoring by pulse contour during cardiac surgeryEuropean Heart Journal, 1990
- STATISTICAL METHODS FOR ASSESSING AGREEMENT BETWEEN TWO METHODS OF CLINICAL MEASUREMENTThe Lancet, 1986
- Cyclic changes in arterial pulse during respiratory support.Circulation, 1983
- Hemodynamics of Experimentally Hypertensive Rats in Conscious and Anesthetized StatesJapanese Heart Journal, 1976
- Hemodynarnics of Spontaneously Hypertensive Rats in Conscious StateJapanese Heart Journal, 1975
- Estimation of Stroke Volume in the Dog by a Pulse Contour MethodCirculation Research, 1970