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Published on: December 2, 2014
Arterial stiffness, wave reflections, and the risk of coronary artery disease
Thomas Weber1, Johann Auer, Michael F O'Rourke
1Cardiology Department of the General Hospital of the Kreuzschwestern, Wels, Austria. thomas.weber@khwels.at
Insights
Noninvasive measures of arterial stiffness, like augmentation index (AIx), strongly predict coronary artery disease risk, especially in younger men. This offers a valuable screening tool for cardiovascular disease.
Area of Science:
- Cardiovascular Medicine
- Biomedical Engineering
- Vascular Physiology
Background:
- Invasive arterial stiffness measurements predict coronary atherosclerosis but are impractical for widespread screening.
- Noninvasive methods are needed for efficient risk stratification in large patient populations.
Purpose of the Study:
- To evaluate noninvasive arterial stiffness and wave reflection markers for predicting coronary artery disease (CAD).
- To assess the association between augmentation index (AIx) and augmented pressure (AP) with CAD risk.
Main Methods:
- Prospective enrollment of 465 symptomatic men undergoing coronary angiography.
- Noninvasive quantification of arterial stiffness and wave reflections using applanation tonometry and transfer function analysis.
- Calculation of augmented pressure (AP) and augmentation index (AIx) from radial artery waveforms.
Main Results:
- Higher AIx was significantly associated with increased CAD risk in univariate analysis (OR, 4.06).
- This association remained significant in multivariate analysis (OR, 6.91), independent of traditional risk factors.
- The risk association was particularly strong in younger men (≤60 years), with unadjusted OR of 8.25 and adjusted OR of 16.81.
Conclusions:
- Noninvasively determined AIx and AP are robust, independent risk markers for premature coronary artery disease.
- These noninvasive parameters reflect arterial stiffening and wave reflections, aiding in cardiovascular risk assessment.
Background:
Increased arterial stiffness, determined invasively, has been shown to predict a higher risk of coronary atherosclerosis. However, invasive techniques are of limited value for screening and risk stratification in larger patient groups.
Methods And Results:
We prospectively enrolled 465 consecutive, symptomatic men undergoing coronary angiography for the assessment of suspected coronary artery disease. Arterial stiffness and wave reflections were quantified noninvasively using applanation tonometry of the radial artery with a validated transfer function to generate the corresponding ascending aortic pressure waveform. Augmented pressure (AP) was defined as the difference between the second and the first systolic peak, and augmentation index (AIx) was AP expressed as a percentage of the pulse pressure. In univariate analysis, a higher AIx was associated with an increased risk for coronary artery disease (OR, 4.06 for the difference between the first and the fourth quartile [1.72 to 9.57; P<0.01]). In multivariate analysis, after controlling for age, height, presence of hypertension, HDL cholesterol, and medications, the association with coronary artery disease risk remained significant (OR, 6.91; P<0.05). The results were exclusively driven by an increase in risk with premature vessel stiffening in the younger patient group (up to 60 years of age), with an unadjusted OR between AIx quartiles I and IV of 8.25 (P<0.01) and a multiple-adjusted OR between these quartiles of 16.81 (P<0.05).
Conclusions:
AIx and AP, noninvasively determined manifestations of arterial stiffening and increased wave reflections, are strong, independent risk markers for premature coronary artery disease.
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