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Updated: Jul 18, 2025

Measuring the Carotid to Femoral Pulse Wave Velocity Cf-PWV to Evaluate Arterial Stiffness
Published on: May 3, 2018
Central Systolic Blood Pressure as a Risk Factor for Accelerated Progression of Arterial Stiffness
Takamichi Takahashi1, Hiroki Nakano1, Kazuki Shiina1,2
1Department of Cardiology, Tokyo Medical University.
Insights
Elevated central systolic blood pressure (cSBP) is a significant risk factor for accelerated arterial stiffness progression in middle-aged Japanese men. This study confirms cSBP
Area of Science:
- Cardiovascular Physiology
- Arterial Biomechanics
- Hypertension Research
Background:
- Systolic blood pressure (SBP) normally decreases from the arterial center to periphery due to wave reflection.
- Abnormal pressure wave reflection can attenuate this gradient, leading to elevated central SBP (cSBP).
- The independent risk of elevated cSBP for arterial stiffness progression remains unclear.
Purpose of the Study:
- To investigate if elevated cSBP is an independent risk factor for accelerated arterial stiffness progression.
- To analyze the relationship between cSBP and arterial stiffness in middle-aged Japanese men.
- Utilize latent growth curve modeling (LGCM) for prospective analysis.
Main Methods:
- Prospective observational study over 9 years.
- Involved 3862 middle-aged Japanese men without prior cerebrocardiovascular disease.
- Annual measurements of brachial-ankle pulse wave velocity (baPWV) and cSBP (radial waveform SBP2).
Main Results:
- Significant increases in baPWV and SBP2 observed during follow-up (6.3±2.5 years).
- LGCM analysis confirmed SBP2 (marker of cSBP) as a significant determinant of annual baPWV changes (B=0.260, P<0.001).
- cSBP significantly predicted the rate of arterial stiffness progression.
Conclusions:
- Elevated central systolic blood pressure is an independent risk factor for accelerated arterial stiffness progression.
- Findings support the role of cSBP in the development of arterial stiffness in this population.
- Highlights the importance of monitoring cSBP in middle-aged men.
Aims:
In the arterial tree, a pressure gradient of the systolic blood pressure (SBP) is observed from the center to the periphery, with the pressure being higher in the periphery because of pressure wave reflection. However, this gradient is attenuated, with elevation of the central SBP (cSBP), in cases with abnormal pressure wave reflection in the arterial tree. It remains unclear if increase of the cSBP might be an independent risk factor for accelerated progression of arterial stiffness. We conducted this prospective observational study using latent growth curve model (LGCM) analyses to examine if elevated cSBP might be an independent risk factor for accelerated progression of the arterial stiffness in middle-aged Japanese men.
Methods:
In this 9-year prospective observational study, we analyzed the data of 3862 middle-aged Japanese men (43±10years old) without cerebrocardiovascular disease at the study baseline who had undergone repeated annual measurements of the brachial-ankle pulse wave velocity (baPWV) and cSBP, as represented by the second peak of the radial pressure waveform (SBP2) in radial pressure waveform analysis.
Results:
During the follow-up period (6.3±2.5years), significant increases of both the baPWV and SBP2 were observed in all the subjects. Analysis using the LGCM confirmed that the SBP2, a marker of the cSBP (B=0.260, P<0.001), was a significant determinant of the slope of the annual changes of the baPWV during the study period.
Conclusions:
Our finding may appear to confirm elevated cSBP as an independent risk factor for accelerated progression of the arterial stiffness in middle-aged Japanese men.
Related Concept Videos
Blood Pressure
Coronary Artery Disease I: Introduction
Factors affecting Blood pressure
Physiological Factors:
Assessment of blood pressure in brachial artery(two-step method)
Measurement of Blood Pressure
Sites for measruring blood pressure
The Brachial Artery: Primary Site for Blood Pressure Measurement

