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April 15, 2022Journal of Clinical Medicine42 citationsOpen Access

Non-Invasive Assessment of Arterial Stiffness: Pulse Wave Velocity, Pulse Wave Analysis and Carotid Cross-Sectional Distensibility: Comparison between Methods

PSPaolo SalviFVFilippo ValbusaAKAnna Kearney‐Schwartz

Key Result

Carotid-femoral pulse wave velocity showed a significant inverse correlation with local carotid cross-sectional distensibility (r = -0.75; p < 0.001).

Study Design

Type

Cross-Sectional (n=75)

Structured PICO

P
Population
75 volunteers, average age 53.5 years, 50 females
I
Intervention
Non-invasive assessment of arterial stiffness using carotid-femoral pulse wave velocity (PWV), carotid-radial PWV, and central pulse waveform analysis
O
Outcome
Correlation between carotid distensibility and carotid-femoral PWV, augmentation index, and central pulse pressuresurrogate

Carotid-femoral pulse wave velocity strongly correlates with local carotid cross-sectional distensibility, supporting its use as a reliable non-invasive measure of aortic stiffness.

Main Result

Effect estimate: r = -0.75

p-value: p=<0.001

Abstract

Background: The stiffening of large elastic arteries is currently estimated in research and clinical practice by propagative and non-propagative models, as well as parameters derived from aortic pulse waveform analysis. Methods: Common carotid compliance and distensibility were measured by simultaneously recording the diameter and pressure changes during the cardiac cycle. The aortic and upper arm arterial distensibility was estimated by measuring carotid−femoral and carotid−radial pulse wave velocity (PWV), respectively. The augmentation index and blood pressure amplification were derived from the analysis of central pulse waveforms, recorded by applanation tonometry directly from the common carotid artery. Results: 75 volunteers were enrolled in this study (50 females, average age 53.5 years). A significant inverse correlation was found between carotid distensibility and carotid−femoral PWV (r = −0.75; p < 0.001), augmentation index (r = −0.63; p < 0.001) and central pulse pressure (r = −0.59; p < 0.001). A strong correlation was found also between the total slope of the diameter/pressure rate carotid curves and aortic distensibility, quantified from the inverse of the square of carotid−femoral PWV (r = 0.67). No correlation was found between carotid distensibility and carotid−radial PWV. Conclusions: This study showed a close correlation between carotid−femoral PWV, evaluating aortic stiffness by using the propagative method, and local carotid cross-sectional distensibility.

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Cite This Study

Salvi et al. (2022) conducted a cross-sectional in Arterial stiffness (n=75). Carotid-femoral pulse wave velocity vs. Carotid cross-sectional distensibility was evaluated on Correlation between carotid distensibility and carotid-femoral PWV (r = -0.75, p=<0.001). Carotid-femoral pulse wave velocity showed a significant inverse correlation with local carotid cross-sectional distensibility (r = -0.75; p < 0.001).

synapsesocial.com/papers/6a0db3aa6e03bc61cb09e208https://doi.org/10.3390/jcm11082225
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