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Updated: Mar 12, 2026

Measuring the Carotid to Femoral Pulse Wave Velocity Cf-PWV to Evaluate Arterial Stiffness
Published on: May 3, 2018
Carotid and aortic stiffness in essential hypertension and their relation with target organ damage: the CATOD study
Rosa Maria Bruno1, Giulia Cartoni, Francesco Stea
1aDepartment of Clinical and Experimental Medicine, University of Pisa bInstitute of Clinical Physiology - CNR, Pisa, Italy cIcahn School of Medicine at Mount Sinai, New York City, New York, USA.
Insights
Arterial stiffness in hypertensive patients shows distinct links to organ damage. Increased pulse wave velocity is tied to kidney issues, while carotid stiffness relates to heart problems.
Area of Science:
- Cardiovascular Medicine
- Nephrology
- Hypertension Research
Background:
- Arterial stiffness is a key indicator of cardiovascular risk in hypertension.
- Understanding the differential impact of aortic and carotid stiffness on organ damage is crucial for risk stratification.
Purpose of the Study:
- To investigate the association between increased aortic and/or carotid stiffness and organ damage in hypertensive patients.
- To differentiate the organ-specific damage linked to carotid-femoral pulse wave velocity (cfPWV) and carotid stiffness.
Main Methods:
- 314 essential hypertensive patients were assessed for cfPWV and carotid stiffness.
- Measurements included left ventricular hypertrophy, carotid intima-media thickness, urinary albumin-creatinin ratio, and glomerular filtration rate.
- Stiffness was defined using international reference values and local 90th percentile cutoffs.
Main Results:
- Using local 90th percentile cutoffs, increased cfPWV was linked to reduced glomerular filtration rate (renal damage).
- Increased carotid stiffness was associated with left ventricular hypertrophy (cardiac damage).
- No significant associations were found using international reference values; no additive effect of combined stiffness was observed.
Conclusions:
- Aortic and carotid stiffness are differentially associated with target organ damage in hypertension.
- cfPWV-assessed regional arterial stiffness correlates with renal damage.
- Local carotid stiffness is associated with cardiac damage.
Objective:
The objective of the study is to investigate in the hypertensive population the possible differential association between increased aortic and/or carotid stiffness and organ damage in multiple districts, such as the kidney, the vessels, and the heart.
Methods:
In 314 essential hypertensive patients, carotid-femoral pulse wave velocity (cfPWV, by applanation tonometry) and carotid stiffness (from ultrasound images analysis), together with left ventricular hypertrophy, carotid intima-media thickness, urinary albumin-creatinin ratio, and glomerular filtration rate were measured. Increased cfPWV and carotid stiffness were defined according to either international reference values or the 90th percentile of a local control group (110 age and sex-matched healthy individuals).
Results:
When considering the 90th percentile of a local control group, increased cfPWV was associated with reduced glomerular filtration rate, either when carotid stiffness was increased [odds ratio (OR) 13.27 (confidence limits (CL) 95% 3.86-45.58)] or not [OR 7.39 (CL95% 2.25-24.28)], whereas increased carotid stiffness was associated with left ventricular hypertrophy, either when cfPWV was increased [OR 2.86 (CL95% 1.15-7.09)] or not [OR 2.81 (CL95% 1.13-6.97)]. No association between increased cfPWV or carotid stiffness and target organ damage was found when cutoffs obtained by international reference values were used. The concomitance of both increased cfPWV and carotid stiffness did not have an additive effect on organ damage.
Conclusion:
Aortic and carotid stiffness are differentially associated with target organ damage in hypertensive patients. Regional arterial stiffness as assessed by cfPWV is associated with renal organ damage and local carotid stiffness with cardiac organ damage.
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