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PMID: 20348532 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The effect of dynamic vessel motion on haemodynamic parameters in the right coronary artery: a combined MR and CFD study.

The British journal of radiology ·Vol. 82 Spec No 1 ·2009-01-00 ·页码 S24-32

Torii R, Keegan J, Wood NB, Dowsey AW, Hughes AD, Yang GZ, Firmin DN, Mcg Thom SA, Xu XY

Abstract

Human right coronary artery (RCA) haemodynamics is investigated using computational fluid dynamics (CFD) based on subject-specific information from magnetic resonance (MR) acquisitions. The dynamically varying vascular geometry is reconstructed from MR images, incorporated in CFD in conjunction with pulsatile flow conditions obtained from MR velocity mapping performed on the same subject. The effects of dynamic vessel motion on instantaneous and cycle-averaged haemodynamic parameters, such as wall shear stress (WSS), time-averaged WSS (TAWSS) and oscillatory shear index (OSI), are examined by comparing an RCA model with a time-varying geometry and those with a static geometry, corresponding to nine different time-points in the cardiac cycle. The results show that the TAWSS is similar for the dynamic and static wall models, both qualitatively and quantitatively (correlation coefficient 0.89-0.95). Conversely, the OSI shows much poorer correlations (correlation coefficient 0.38-0.60), with the best correspondence being observed with the static models constructed from images acquired in late diastole (at t = 0 and 800 ms, the cardiac cycle is 900 ms). These findings suggest that neglecting dynamic motion of the RCA is acceptable if TAWSS is the primary focus but may result in underestimation of haemodynamic parameters related to the oscillatory nature of the blood flow.

MeSH 主题词
Adult Blood Flow Velocity/physiology Coronary Vessels/anatomy & histology,physiology Hemodynamics Hemorheology/physiology Humans Image Processing, Computer-Assisted/methods Magnetic Resonance Angiography/methods Male Models, Cardiovascular Motion Pulsatile Flow/physiology Stress, Mechanical
作者与单位
共 9 位作者,点击展开单位 / ORCID
Torii R
Department of Chemical Engineering, Imperial College, London, UK. [email protected]
Keegan J
Wood N B
Dowsey A W
Hughes A D
Yang G-Z
Firmin D N
Mcg Thom S A
Xu X Y
Article Info
Journal
The British journal of radiology
Abbr.
Br J Radiol
ISSN
1748-880X
Corresponding email
Published
2009-01-00
页码
S24-32
Language
English
Country/Region
England
NLM ID
0373125
基金资助
British Heart Foundation · PG/04/078 · United Kingdom
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