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PMID: 21279441 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Correlation between local hemodynamics and lesion distribution in a novel aortic regurgitation murine model of atherosclerosis.

Annals of biomedical engineering ·Vol. 39 ·No. 5 ·2011-05-00 ·页码 1414-22

Hoi Y, Zhou YQ, Zhang X, Henkelman RM, Steinman DA

Abstract

Following surgical induction of aortic valve regurgitation (AR), extensive atherosclerotic plaque development along the descending thoracic and abdominal aorta of Ldlr⁻/⁻ mice has been reported, with distinct spatial distributions suggestive of a strong local hemodynamic influence. The objective of this study was to test, using image-based computational fluid dynamics (CFD), whether this is indeed the case. The lumen geometry was reconstructed from micro-CT scanning of a control Ldlr⁻/⁻ mouse, and CFD simulations were carried out for both AR and control flow conditions derived from Doppler ultrasound measurements and literature data. Maps of time-averaged wall shear stress magnitude (TAWSS), oscillatory shear index (OSI) and relative residence time (RRT) were compared against the spatial distributions of plaque stained with oil red O, previously acquired in a group of AR and control mice. Maps of OSI and RRT were found to be consistent with plaque distributions in the AR mice and the absence of plaque in the control mice. TAWSS was uniformly lower under control vs. AR flow conditions, suggesting that levels (> 100 dyn/cm²) exceeded those required to alone induce a pro-atherogenic response. Simulations of a straightened CFD model confirmed the importance of anatomical curvature for explaining the spatial distribution of lesions in the AR mice. In summary, oscillatory and retrograde flow induced in the AR mice, without concomitant low shear, may exacerbate or accelerate lesion formation, but the distinct anatomical curvature of the mouse aorta is responsible for the spatial distribution of lesions.

MeSH 主题词
Animals Aorta, Abdominal/physiopathology Aorta, Thoracic/physiopathology Aortic Valve Insufficiency/genetics,physiopathology Atherosclerosis/genetics,physiopathology Disease Models, Animal Hemodynamics Mice Mice, Knockout Models, Cardiovascular Stress, Physiological
作者与单位
共 5 位作者,点击展开单位 / ORCID
Hoi Yiemeng
Biomedical Simulation Laboratory, Department of Mechanical & Industrial Engineering, University of Toronto, Toronto, ON, Canada.
Zhou Yu-Qing
Zhang Xiaoli
Henkelman R Mark
Steinman David A
Article Info
Journal
Annals of biomedical engineering
Abbr.
Ann Biomed Eng
ISSN
1573-9686
Published
2011-05-00
电子出版
2011-00-29
页码
1414-22
Language
English
Country/Region
United States
NLM ID
0361512
基金资助
Canadian Institutes of Health Research · 102590 · Canada
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