The influence of flow, vessel diameter, and non-Newtonian blood viscosity on the wall shear stress in a carotid bifurcation model for unsteady flow

被引:56
|
作者
Box, FMA
van der Geest, RJ
Rutten, MCM
Reiber, JHC
机构
[1] Leiden Univ, Med Ctr, Dept Radiol, Div Image Proc, NL-2300 RC Leiden, Netherlands
[2] Eindhoven Univ Technol, Dept Biomed Engn, Eindhoven, Netherlands
关键词
wall shear stress; vessel diameter; blood viscosity; flow rate; MRI; finite element method;
D O I
10.1097/01.rli.0000160550.95547.22
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Objectives: The atherosclerotic process in arteries is correlated with the local wall shear stress (WSS). Plaque development particularly occurs in regions with recirculation (ie, where the WSS oscillates). We investigated the effects of non-Newtonian blood viscosity, variations in flow rate, and vessel diameter on wall phenomena in a carotid bifurcation model. Materials and Methods: The flow through a model of a carotid artery bifurcation was simulated by means of the finite element method. The whole-blood viscosity is a function of shear rate, and was modeled by the Carreau-Yasuda (CY) model. Flow rate and vessel morphology were assessed with magnetic resonance imaging. Flow rate, blood viscosity, and hematocrit levels (Hct) were measured in 49 healthy volunteers. We propose an adaptation of the CY model so that differences in Hct can be incorporated; furthermore, plasma viscosity was varied in the CY model. Results: The data from our model indicate that flow increases have a larger effect on the WSS than predicted with a simple paraboloid model. Hct had more influence on the WSS when the plasma viscosity was low. Low plasma viscosity was associated with a low WSS, which implies a contradiction, because both high WSS and low plasma viscosity are thought to be indicators for a healthy system. Maximum WSS oscillations were found at the edges of the recirculation region. Conclusions: Flow and diameter changes have significant influence on wall shear stress values; the same is true for the viscosity, but to a lesser extent.
引用
收藏
页码:277 / 294
页数:18
相关论文
共 50 条
  • [31] Influence of right coronary artery motion, flow pulsatility and non-Newtonian rheology on wall shear stress metrics
    Kandangwa, Pratik
    Torii, Ryo
    Gatehouse, Peter D.
    Sherwin, Spencer J.
    Weinberg, Peter D.
    FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2022, 10
  • [32] PULSATILE NON-NEWTONIAN FLOW CHARACTERISTICS IN A 3-DIMENSIONAL HUMAN CAROTID BIFURCATION MODEL
    PERKTOLD, K
    RESCH, M
    FLORIAN, H
    JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, 1991, 113 (04): : 464 - 475
  • [33] Numerical investigation of the non-Newtonian blood flow in a bifurcation model with a non-planar branch
    Chen, J
    Lu, XY
    JOURNAL OF BIOMECHANICS, 2004, 37 (12) : 1899 - 1911
  • [34] Biomedical study of effects nanoparticles on unsteady blood (non-Newtonian) flow through a catheterized stenotic vessel
    Zaman, Akbar
    Sajid, M.
    Kousar, Nabeela
    CANADIAN JOURNAL OF PHYSICS, 2019, 97 (05) : 487 - 497
  • [35] UNSTEADY NON-NEWTONIAN FLOW IN A ROTATING SYSTEM
    BASU, U
    DEBNATH, L
    NOTICES OF THE AMERICAN MATHEMATICAL SOCIETY, 1972, 19 (07): : A778 - A778
  • [36] Unsteady Non-Newtonian Solver on Unstructured Grid for the Simulation of Blood Flow
    Li, Guojie
    Chen, Bin
    Zhou, Gaoling
    ADVANCES IN MECHANICAL ENGINEERING, 2013,
  • [37] Flow behaviour of crystallising coal ash slags: Shear viscosity, non-Newtonian flow and temperature of critical viscosity
    Kondratiev, Alex
    Ilyushechkin, Alexander
    FUEL, 2018, 224 : 783 - 800
  • [38] Wall shear stress gradient analysis within an idealized stenosis using non-newtonian flow
    Schirmer, Clemens M.
    Malek, Adel M.
    NEUROSURGERY, 2007, 61 (04) : 853 - 863
  • [39] Unsteady solute dispersion in non-Newtonian fluid flow in a tube with wall absorption
    Rana, Jyotirmoy
    Murthy, P. V. S. N.
    PROCEEDINGS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2016, 472 (2193):
  • [40] Computational Analysis of Non-Newtonian Blood Flow through Bifurcated Coronary Artery: Insights into Hemodynamics and Wall Shear Stress
    Buradi, Abdulrajak
    Khan, Md Yousuf Ahmed
    Tamilselvan, Sanjaytharan
    Kapilan, N.
    JOURNAL OF POLYMER & COMPOSITES, 2023, 11 : 160 - 168