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Updated: Mar 29, 2026

Measuring the Carotid to Femoral Pulse Wave Velocity Cf-PWV to Evaluate Arterial Stiffness
Published on: May 3, 2018
Relation of Central Arterial Stiffness to Incident Heart Failure in the Community
Connie W Tsao1, Asya Lyass2, Martin G Larson2
1Cardiovascular Division, Department of Medicine, Beth Israel Deaconess Medical Center, Boston, MA (C.W.T.) Framingham Heart Study, Framingham, MA (C.W.T., A.L., M.G.L., D.L., E.J.B., R.S.V.).
Insights
Increased aortic stiffness, measured by inverse-transformed carotid-femoral pulse wave velocity (iCFPWV), is linked to a higher risk of developing heart failure (HF). This finding highlights aortic stiffness as a potential target for HF prevention strategies.
Area of Science:
- Cardiovascular Medicine
- Biomedical Engineering
- Gerontology
Background:
- Arterial stiffness, pressure pulsatility, and wave reflection are established cardiovascular disease risk factors.
- The relationship between central aortic stiffness, hemodynamics, and incident heart failure (HF) requires further elucidation.
Purpose of the Study:
- To investigate the association between central aortic stiffness and hemodynamics with the incidence of clinical heart failure (HF).
Main Methods:
- Prospective study of 2539 Framingham Heart Study participants without HF.
- Applanation tonometry used to measure carotid-femoral pulse wave velocity (CFPWV), central pulse pressure, forward wave amplitude, and augmentation index.
- Inverse-transformed CFPWV (iCFPWV) analyzed for association with incident HF over a median of 10.1 years.
Main Results:
- Higher iCFPWV was significantly associated with an increased risk of incident HF in a graded manner (HR per SDU 1.29, P=0.037).
- iCFPWV showed a significant association with HF with reduced ejection fraction in age- and sex-adjusted models (P=0.0037).
- Central pulse pressure and forward wave amplitude were associated with HF in initial models but not after multivariable adjustment.
Conclusions:
- Greater aortic stiffness, indicated by higher iCFPWV, is associated with an elevated risk of developing heart failure in a community-based sample.
- Aortic stiffness may represent a modifiable risk factor for heart failure, warranting further investigation for therapeutic interventions.
Background:
Arterial stiffness, pressure pulsatility, and wave reflection are associated with cardiovascular disease. Left ventricular function is coupled to proximal aortic properties, but the association of central aortic stiffness and hemodynamics with incident clinical heart failure (HF) is not well described.
Methods And Results:
Framingham Study participants without clinical HF (n=2539, mean age 64 years, 56% women) underwent applanation tonometry to measure carotid-femoral pulse wave velocity (CFPWV), central pulse pressure, forward wave amplitude, and augmentation index. CFPWV was inverse-transformed to reduce heteroscedasticity and multiplied by -1 to restore effect direction (iCFPWV). Over 10.1 (range 0.04-12.9) years, 170 HF events developed. In multivariable-adjusted analyses, iCFPWV was associated with incident HF in a continuous, graded fashion (hazards ratio [HR] per SD unit [SDU] 1.29, 95% confidence interval [CI] 1.02-1.64, P=0.037). iCFPWV was associated with HF with reduced ejection fraction (HR=1.69/SDU, 95% CI 1.19-2.42, P=0.0037) in age- and sex-adjusted models, which was attenuated in multivariable-adjusted models (P=0.065). Central pulse pressure and forward wave amplitude were associated with HF in age- and sex-adjusted models (per SDU, HR=1.20, 95% CI 1.06-1.37, P=0.006, and HR=1.15, 95% CI 1.01-1.31, P=0.036, respectively), but not in multivariable-adjusted models (both P≥0.28). Augmentation index was not associated with HF risk (P≥0.19 in all models).
Conclusions:
In our prospective investigation of a large community-based sample of middle-aged to elderly individuals, greater aortic stiffness (reflected by higher iCFPWV) was associated with increased risk of HF. Future studies may investigate the impact of modifying aortic stiffness in reducing the community burden of HF.
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