Literature DB >> 27821616

Aortic-Brachial Pulse Wave Velocity Ratio: A Blood Pressure-Independent Index of Vascular Aging.

Catherine Fortier1, Aboubacar Sidibé1, Marie-Pier Desjardins1, Karine Marquis1, Sacha A De Serres1, Fabrice Mac-Way1, Mohsen Agharazii2.   

Abstract

Aortic stiffness, a cardiovascular risk factor, depends on the operating mean arterial pressure (MAP). The impact of aortic stiffness on cardiovascular outcomes is proposed to be mediated by the attenuation or the reversal of the arterial stiffness gradient. We hypothesized that arterial stiffness gradient is less influenced by changes in MAP. We aimed to study the relationship between MAP and aortic stiffness, brachial stiffness, and arterial stiffness gradient. In a cross-sectional study of a dialysis cohort (group A, n=304) and a cohort of hypertensive or kidney transplant recipient with an estimated glomerular filtration rate of >45 mL/min/1.73 m2 (group B, n=114), we assessed aortic and brachial stiffness by measuring carotid-femoral and carotid-radial pulse wave velocities (PWV). We used aortic-brachial PWV ratio as a measure of arterial stiffness gradient. Although there was a positive relationship between MAP and carotid-femoral PWV (R2=0.10 and 0.08; P<0.001 and P=0.003) and MAP and carotid-radial PWV (R2=0.22 and 0.12; P<0.001 and P<0.001), there was no statistically or clinically significant relationship between MAP and aortic-brachial PWV ratio (R2=0.0002 and 0.0001; P=0.8 and P=0.9) in group A and B, respectively. Dialysis status and increasing age increased the slope of the relationship between MAP and cf-PWV. However, we found no modifying factor (age, sex, dialysis status, diabetes mellitus, cardiovascular disease, and class of antihypertensive drugs) that could affect the lack of relationship between MAP and aortic-brachial PWV ratio. In conclusion, these results suggest that aortic-brachial PWV ratio could be considered as a blood pressure-independent measure of vascular aging.
© 2016 American Heart Association, Inc.

Entities:  

Keywords:  aorta; arterial pressure; arterial stiffness; hemodynamics; pulse wave velocity

Mesh:

Year:  2016        PMID: 27821616     DOI: 10.1161/HYPERTENSIONAHA.116.08409

Source DB:  PubMed          Journal:  Hypertension        ISSN: 0194-911X            Impact factor:   10.190


  15 in total

1.  FGF23-klotho axis, bone fractures, and arterial stiffness in dialysis: a case-control study.

Authors:  L-C Desbiens; A Sidibé; R-V Ung; C Fortier; M Munger; Y-P Wang; S-K Bisson; K Marquis; M Agharazii; F Mac-Way
Journal:  Osteoporos Int       Date:  2018-06-29       Impact factor: 4.507

Review 2.  Options for Dealing with Pressure Dependence of Pulse Wave Velocity as a Measure of Arterial Stiffness: An Update of Cardio-Ankle Vascular Index (CAVI) and CAVI0.

Authors:  Bart Spronck; Tammo Delhaas; Mark Butlin; Koen D Reesink; Alberto P Avolio
Journal:  Pulse (Basel)       Date:  2017-09-07

3.  Aortic-to-brachial artery stiffness gradient is not blood pressure independent.

Authors:  Matthew K Armstrong; Martin G Schultz; Dean S Picone; James E Sharman
Journal:  J Hum Hypertens       Date:  2019-01-10       Impact factor: 3.012

4.  Aortic-Radial Pulse Wave Velocity Ratio in End-stage Renal Disease Patients: Association with Age, Body Tissue Hydration Status, Renal Failure Etiology and Five Years of Hemodialysis.

Authors:  Daniel Bia; Rodolfo Valtuille; Cintia Galli; Sandra Wray; Ricardo Armentano; Yanina Zócalo; Edmundo Cabrera-Fischer
Journal:  High Blood Press Cardiovasc Prev       Date:  2017-01-19

Review 5.  Proinflammatory Arterial Stiffness Syndrome: A Signature of Large Arterial Aging.

Authors:  Mingyi Wang; Robert E Monticone; Kimberly R McGraw
Journal:  J Vasc Res       Date:  2018-08-02       Impact factor: 1.934

Review 6.  Aortic-Brachial Pulse Wave Velocity Ratio: A Measure of Arterial Stiffness Gradient Not Affected by Mean Arterial Pressure.

Authors:  Catherine Fortier; Marie-Pier Desjardins; Mohsen Agharazii
Journal:  Pulse (Basel)       Date:  2017-10-19

Review 7.  Prediabetes in Colombia: Expert Consensus.

Authors:  Patricio López-Jaramillo; Carlos Calderón; Jorge Castillo; Iván Darío Escobar; Enrique Melgarejo; Gustavo Adolfo Parra
Journal:  Colomb Med (Cali)       Date:  2017-12-30

8.  Impact of seasonality and air pollutants on carotid-femoral pulse wave velocity and wave reflection in hypertensive patients.

Authors:  Marina Di Pilla; Rosa Maria Bruno; Francesco Stea; Luciano Massetti; Stefano Taddei; Lorenzo Ghiadoni; Pietro Amedeo Modesti
Journal:  PLoS One       Date:  2017-02-23       Impact factor: 3.240

9.  The aortic-femoral arterial stiffness gradient is blood pressure independent in older adults: the atherosclerosis risk in communities (ARIC) study.

Authors:  Keeron Stone; Simon Fryer; James Faulkner; Michelle L Meyer; Kevin Heffernan; Anna Kucharska-Newton; Gabriel Zieff; Craig Paterson; Kunihiro Matsushita; Timothy M Hughes; Hirofumi Tanaka; Lee Stoner
Journal:  J Hypertens       Date:  2021-12-01       Impact factor: 4.844

10.  Physical Activity, Sedentary Behavior and Sleep Time:Association with Cardiovascular Hemodynamic Parameters, Blood Pressure and Structural and Functional Arterial Properties in Childhood.

Authors:  Mariana Gómez-García; Daniel Bia; Yanina Zócalo
Journal:  J Cardiovasc Dev Dis       Date:  2021-05-31
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