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February 21, 2006IEEE Transactions on Biomedical Engineering131 citations

Continuous Cardiac Output Monitoring by Peripheral Blood Pressure Waveform Analysis

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RMRamakrishna MukkamalaARAndrew ReisnerHHHoracio Hojman

Key Result

A novel technique for continuously monitoring cardiac output via mathematical analysis of peripheral arterial blood pressure waveforms yielded an overall error of 14.6% in acute swine experiments.

Structured PICO

Does mathematical analysis of peripheral arterial blood pressure waveforms accurately estimate cardiac output compared to aortic flow probes in a swine model?

P
Population
Six acute swine experiments to validate a novel technique for continuous cardiac output monitoring.
I
Intervention
Continuous monitoring of cardiac output by mathematical analysis of a peripheral arterial blood pressure waveform over 6-min intervals
C
Comparator
Aortic flow probe cardiac output
O
Outcome
Overall cardiac output errorsurrogate

A novel mathematical analysis of peripheral arterial blood pressure waveforms can estimate cardiac output with an overall error of 14.6% in a swine model.

Abstract

A clinical method for monitoring cardiac output (CO) should be continuous, minimally invasive, and accurate. However, none of the conventional CO measurement methods possess all of these characteristics. On the other hand, peripheral arterial blood pressure (ABP) may be measured reliably and continuously with little or no invasiveness. We have developed a novel technique for continuously monitoring changes in CO by mathematical analysis of a peripheral ABP waveform. In contrast to the previous techniques, our technique analyzes the ABP waveform over time scales greater than a cardiac cycle in which the confounding effects of complex wave reflections are attenuated. The technique specifically analyzes 6-min intervals of ABP to estimate the pure exponential pressure decay that would eventually result if pulsatile activity abruptly ceased (i.e., after the high frequency wave reflections vanish). The technique then determines the time constant of this exponential decay, which equals the product of the total peripheral resistance and the nearly constant arterial compliance, and computes proportional CO via Ohm's law. To validate the technique, we performed six acute swine experiments in which peripheral ABP waveforms and aortic flow probe CO were simultaneously measured over a wide physiologic range. We report an overall CO error of 14.6%.

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Cite This Study

Mukkamala et al. (2006) studied this question. Mathematical analysis of peripheral arterial blood pressure waveform vs. Aortic flow probe CO was evaluated on Overall CO error. A novel technique for continuously monitoring cardiac output via mathematical analysis of peripheral arterial blood pressure waveforms yielded an overall error of 14.6% in acute swine experiments.

synapsesocial.com/papers/6a200bb677451c29e065bac2https://doi.org/10.1109/tbme.2005.869780
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