Aortic pulse wave velocity measured by pulse wave imaging (PWI): A comparison with applanation tonometry
Present address: LSIIT, UMR 7005 CNRS-Strasbourg University, France.
- DOI
- 10.1016/j.artres.2011.03.002How to use a DOI?
- Keywords
- Arterial stiffness; Pulse wave velocity; Ultrasound imaging; Applanation tonometry
- Abstract
Background: Arterial stiffness is a well-established indicator of cardiovascular disease outcome. Pulse Wave Velocity (PWV) is a surrogate for arterial stiffness that is measured either globally using carotid-to-femoral applanation tonometry or locally using biomedical imaging methods. Pulse Wave Imaging (PWI) is an ultrasound-based method for both qualitative visualization of the pulse wave propagation and quantitative estimation of arterial stiffness. The objective of this study is to assess the PWI performance in PWV estimation by comparing local abdominal aortic PWV values obtained by PWI to the carotid-femoral PWV measured by applanation tonometry.
Methods: A total of 18 subjects (age 18–66, 32.5 ± 14.5) with no history of cardiovascular disease were consecutively tested by both PWI and tonometry.
Results: The correlation coefficient r between values estimated with the two methods was found to be equal to 0.68. A linear regression yielded PWVPWI = 1.02* PWVtonometry +0.15. Tukey mean-difference plots indicated that PWVPWI was significantly lower than PWVtonometry (−0.3 m/s) at lower PWV values (PWV ≤ 7 m/s), whereas PWVPWI was significantly higher (+1.4 m/s) than PWVtonometry at higher PWV values (PWV > 7 m/s).
Conclusions: Despite the regional nature of the PWVPWI measurements, as opposed to the global PWVtonometry measurements, abdominal PWVPWI and carotid-femoral PWVtonometry values were found to be similar, with an average bias equal to 0.25 m/s. Such a bias and its variation with PWV may be partially explained by both physiological variations of PWV along the arterial tree and by the increasing uncertainty of the PWV estimate by PWI as PWV increases.
- Copyright
- © 2011 Association for Research into Arterial Structure and Physiology. Published by Elsevier B.V. All rights reserved.
- Open Access
- This is an open access article distributed under the CC BY-NC license.
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TY - JOUR AU - Jonathan Vappou AU - Jianwen Luo AU - Kazue Okajima AU - Marco Di Tullio AU - Elisa Konofagou PY - 2011 DA - 2011/04/03 TI - Aortic pulse wave velocity measured by pulse wave imaging (PWI): A comparison with applanation tonometry JO - Artery Research SP - 65 EP - 71 VL - 5 IS - 2 SN - 1876-4401 UR - https://doi.org/10.1016/j.artres.2011.03.002 DO - 10.1016/j.artres.2011.03.002 ID - Vappou2011 ER -