Literature DB >> 31132952

Pulse Wave Velocities Derived From Cuff Ambulatory Pulse Wave Analysis.

Joseph E Schwartz1,2, Peter U Feig3, Joseph L Izzo4.   

Abstract

Pulse wave velocity (PWV), a measure of arterial stiffness, is an independent risk factor for cardiovascular morbidity and mortality. We investigated the relationship of ambulatory brachial cuff-based oscillometric PWV (oPWV) to 2 known correlates: age and brachial systolic blood pressure (SBP). In 234 participants in the Masked Hypertension Study, we analyzed 7284 validated hourly ambulatory SBP and oPWV readings using the Mobil-O-Graph monitor, which uses a proprietary pulse wave analysis algorithm to determine oPWV. Carotid-femoral PWV (cfPWV) was also measured. Mixed linear models were developed to estimate oPWV from age and ambulatory SBP. Participants were 34% male, with mean (SD) age 52.8 (9.9) years, SBP 123.8 (18.4) mm Hg, and oPWV 7.6 (1.3) m/s and cfPWV of 7.7 (1.7) m/s. The relationship of oPWV to age and SBP is given below: [Formula: see text] Age uniquely accounted for an estimated 75% of the total variation of oPWV, whereas SBP uniquely accounted for 20%; these findings were confirmed in an external validation dataset. Together, age and SBP accounted for 99.1% of the total variance of oPWV but (only) 40.2% of the variance of cfPWV. The correlation between oPWV and cfPWV was 0.58 but was only 0.11 after controlling for age and SBP. We conclude that the Mobil-O-Graph's oPWV is nearly completely explained by age and SBP and its relationship to cfPWV is because of their shared associations with age and SBP. Other hemodynamic variables derived from oscillometric pulse wave analysis may be useful and deserve additional scrutiny.

Entities:  

Keywords:  blood pressure; hemodynamics; pulse wave analysis

Mesh:

Year:  2019        PMID: 31132952      PMCID: PMC6679929          DOI: 10.1161/HYPERTENSIONAHA.119.12756

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


  39 in total

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4.  Performance of pulse wave velocity measured using a brachial cuff in a community setting.

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Authors:  Kennedy Cruickshank; Lisa Riste; Simon G Anderson; John S Wright; Graham Dunn; Ray G Gosling
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9.  Accuracy of a Newly-Introduced Oscillometric Device for the Estimation of Arterial Stiffness Indices in Patients on Peritoneal Dialysis: A Preliminary Validation Study.

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10.  Pulse wave velocity and cognitive function in older adults.

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  14 in total

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Journal:  Arterioscler Thromb Vasc Biol       Date:  2019-12-26       Impact factor: 8.311

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Journal:  J Am Coll Cardiol       Date:  2019-09-03       Impact factor: 24.094

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Authors:  Ian B Wilkinson; Kaisa M Mäki-Petäjä; Gary F Mitchell
Journal:  Arterioscler Thromb Vasc Biol       Date:  2020-02-27       Impact factor: 8.311

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5.  Accuracy Difference of Noninvasive Blood Pressure Measurements by Sex and Height.

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6.  Effect of Intensive Blood Pressure Control on Aortic Stiffness in the SPRINT-HEART.

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Journal:  Hypertension       Date:  2021-03-29       Impact factor: 10.190

7.  Clinical Applications Measuring Arterial Stiffness: An Expert Consensus for the Application of Cardio-Ankle Vascular Index.

Authors:  Matthew J Budoff; Bruce Alpert; Julio A Chirinos; Bo Fernhall; Naomi Hamburg; Kazuomi Kario; Iftikhar Kullo; Kunihiro Matsushita; Toru Miyoshi; Hirofumi Tanaka; Ray Townsend; Paul Valensi
Journal:  Am J Hypertens       Date:  2022-05-10       Impact factor: 3.080

8.  Comparing oscillometric and tonometric methods to assess pulse wave velocity: a population-based study.

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9.  Improvement of Arterial Stiffness One Month after Bariatric Surgery and Potential Mechanisms.

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10.  Low muscle strength and increased arterial stiffness go hand in hand.

Authors:  Maximilian König; Nikolaus Buchmann; Ute Seeland; Dominik Spira; Elisabeth Steinhagen-Thiessen; Ilja Demuth
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