Literature DB >> 16828101

Distribution of wall shear rate throughout the arterial tree: a case study.

Pavel V Stroev1, Peter R Hoskins, William J Easson.   

Abstract

The generally accepted assumption that the arterial system remodels itself to maintain constant wall shear stress throughout is based on Murray's law, utilising the principle of minimum work for steady flow. However, blood flow in the human arterial system is pulsatile. In this work we outline a method allowing for estimation of wall shear rate in arteries using the flow waveforms as the input signal and estimate wall shear rates in the common carotid, brachial, and femoral arteries to determine the uniformity of distribution of wall shear rates throughout the arterial system. Time-dependent wall shear rates occurring in fully developed pulsatile flow were obtained using Womersley's theory. Flow waveforms and radii of the arteries measured in a young healthy male subject without any known cardiac disease using magnetic resonance taken from the literature were used as the input to the model. Peak/mean wall shear rates were found to be (1640/403.2 s(-1)) in common carotid, (908.8/84.95 s(-1)) in brachial, and (1251/134.2 s(-1)) in femoral arteries. Our findings suggest a non-uniform distribution of wall shear rates throughout the arterial system. The advantage of using this method is that such input data are being routinely recorded during diagnostic ultrasonography.

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Year:  2006        PMID: 16828101     DOI: 10.1016/j.atherosclerosis.2006.05.029

Source DB:  PubMed          Journal:  Atherosclerosis        ISSN: 0021-9150            Impact factor:   5.162


  17 in total

1.  Plaque characteristics and arterial remodeling in coronary and peripheral arterial systems.

Authors:  Yoshiki Matsuo; Takuro Takumi; Verghese Mathew; Woo-Young Chung; Gregory W Barsness; Charanjit S Rihal; Rajiv Gulati; Eric T McCue; David R Holmes; Eric Eeckhout; Ryan J Lennon; Lilach O Lerman; Amir Lerman
Journal:  Atherosclerosis       Date:  2012-05-31       Impact factor: 5.162

2.  A mathematical model for estimating the axial stress of the common carotid artery wall from ultrasound images.

Authors:  Effat Soleimani; Manijhe Mokhtari-Dizaji; Hajir Saberi; Shervin Sharif-Kashani
Journal:  Med Biol Eng Comput       Date:  2015-11-13       Impact factor: 2.602

3.  Effects of posture on shear rates in human brachial and superficial femoral arteries.

Authors:  S C Newcomer; C L Sauder; N T Kuipers; M H Laughlin; C A Ray
Journal:  Am J Physiol Heart Circ Physiol       Date:  2008-02-01       Impact factor: 4.733

4.  Model-based assessment of dynamic arterial blood volume flow from ultrasound measurements.

Authors:  C A D Leguy; E M H Bosboom; A P G Hoeks; F N van de Vosse
Journal:  Med Biol Eng Comput       Date:  2009-03-24       Impact factor: 2.602

5.  Interaction between drug delivery vehicles and cells under the effect of shear stress.

Authors:  M Godoy-Gallardo; P K Ek; M M T Jansman; B M Wohl; L Hosta-Rigau
Journal:  Biomicrofluidics       Date:  2015-06-30       Impact factor: 2.800

6.  Radiative transport in large arteries.

Authors:  Dominic Ruh; Sivaraman Subramanian; Michael Theodor; Hans Zappe; Andreas Seifert
Journal:  Biomed Opt Express       Date:  2013-12-02       Impact factor: 3.732

7.  Endothelial shear stress estimation in the human carotid artery based on Womersley versus Poiseuille flow.

Authors:  Janina C V Schwarz; Raphaël Duivenvoorden; Aart J Nederveen; Erik S G Stroes; Ed VanBavel
Journal:  Int J Cardiovasc Imaging       Date:  2014-11-18       Impact factor: 2.357

8.  Endothelial differentiation of adipose-derived stem cells: effects of endothelial cell growth supplement and shear force.

Authors:  Lauren J Fischer; Stephen McIlhenny; Thomas Tulenko; Negar Golesorkhi; Ping Zhang; Robert Larson; Joseph Lombardi; Irving Shapiro; Paul J DiMuzio
Journal:  J Surg Res       Date:  2008-07-26       Impact factor: 2.192

Review 9.  Stem cells, microenvironment mechanics, and growth factor activation.

Authors:  Rebeca M Tenney; Dennis E Discher
Journal:  Curr Opin Cell Biol       Date:  2009-07-15       Impact factor: 8.382

10.  In vivo vascular wall shear rate and circumferential strain of renal disease patients.

Authors:  Dae Woo Park; Grant H Kruger; Jonathan M Rubin; James Hamilton; Paul Gottschalk; Robert E Dodde; Albert J Shih; William F Weitzel
Journal:  Ultrasound Med Biol       Date:  2012-12-01       Impact factor: 2.998

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