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Published on: January 28, 2020
Pulse waveform characteristics predict cardiovascular events and mortality in patients undergoing coronary
Thomas Weber1, Michael F O'Rourke, Elisabeth Lassnig
1Cardiology Department, Klinikum Wels-Grieskirchen, Wels, Austria.
Insights
Pulse waveform characteristics, like Augmentation Index (AIx), independently predict cardiovascular events in coronary patients. These noninvasive measures offer valuable prognostic information beyond traditional blood pressure readings.
Area of Science:
- Cardiovascular Medicine
- Biomedical Engineering
- Clinical Cardiology
Background:
- Arterial wave reflections influence cardiovascular health.
- Pulse waveform characteristics, such as Augmentation Index (AIx) and pulse wave transit time, measure these reflections.
- Previous studies suggested an association with cardiovascular morbidity, but independent predictive value for outcomes was unclear.
Purpose of the Study:
- To determine if pulse waveform characteristics predict cardiovascular outcomes independently of brachial blood pressure.
- To assess the prognostic value of AIx and pulse wave transit time in patients with coronary artery disease.
Main Methods:
- Prospective study of 520 male patients undergoing coronary angiography.
- Radial applanation tonometry used to measure AIx and pulse wave transit time.
- Aortic pressure curve generated via validated transfer function.
Main Results:
- During 49 months follow-up, 170 patients experienced a primary endpoint (composite of mortality, MI, stroke, revascularization).
- Increased AIx was associated with a higher risk of cardiovascular events.
- Increased pulse wave transit time was associated with a lower risk of cardiovascular events.
- These associations remained significant after adjusting for brachial blood pressure and other clinical factors.
Conclusions:
- Pulse waveform characteristics independently predict cardiovascular events in patients with coronary artery disease.
- Noninvasive pulse waveform analysis provides valuable prognostic information.
- These findings support the clinical utility of AIx and pulse wave transit time in cardiovascular risk assessment.
Objectives:
Pulse waveform characteristics (Augmentation Index--AIx and pulse wave transit time) are measures of the timing and extent of arterial wave reflections. Although previous studies reported an independent association with cardiovascular morbidity, it remains to be established that waveform characteristics, derived from noninvasive pulse waveform analysis, predict cardiovascular outcomes independent of and additional to brachial blood pressure.
Methods:
We prospectively assessed AIx, heart-rate corrected AIx, and pulse wave transit time, using radial applanation tonometry and a validated transfer function to generate the aortic pressure curve, in 520 male patients undergoing coronary angiography. Primary endpoint was a composite of all-cause mortality, myocardial infarction, stroke, cardiac, cerebrovascular, and peripheral revascularization.
Results:
During a follow-up of 49 months, 170 patients reached the primary endpoint. On the basis of Cox proportional hazards regression models, all pressure waveform characteristics predicted the primary endpoint. A 10% increase of AIx and heart-rate corrected AIx was associated with a 20.5% (95% confidence interval 6.5-36.4, P = 0.003) and 31.4% (95% confidence interval 13.2-52.6, P = 0.0004) increased risk of the primary endpoint, respectively. A 10-ms increase of pulse wave transit time was associated with a 20.8% (95% confidence interval 10.8-29.6, P = 0.0001) lower risk of the primary endpoint. In multiple adjusted models, AIx, heart-rate corrected AIx, and pulse wave transit time were independently associated with the combined endpoint even after adjustments for brachial blood pressure, age, extent of coronary artery disease, clinical characteristics, and medications.
Conclusion:
The study provides evidence that pulse waveform characteristics consistently and independently predict cardiovascular events in coronary patients.
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