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PMID: 26897648 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Relation between wall shear stress and carotid artery wall thickening MRI versus CFD.

Journal of biomechanics ·Vol. 49 ·No. 5 ·2016-03-21 ·页码 735-741

Cibis M, Potters WV, Selwaness M, Gijsen FJ, Franco OH, Arias Lorza AM, de Bruijne M, Hofman A, van der Lugt A, Nederveen AJ, Wentzel JJ

Abstract

Wall shear stress (WSS), a parameter associated with endothelial function, is calculated by computational fluid dynamics (CFD) or phase-contrast (PC) MRI measurements. Although CFD is common in WSS (WSSCFD) calculations, PC-MRI-based WSS (WSSMRI) is more favorable in population studies; since it is straightforward and less time consuming. However, it is not clear if WSSMRI and WSSCFD show similar associations with vascular pathology. Our aim was to test the associations between wall thickness (WT) of the carotid arteries and WSSMRI and WSSCFD. The subjects (n=14) with an asymptomatic carotid plaque who underwent MRI scans two times within 4 years of time were selected from the Rotterdam Study. We compared WSSCFD and WSSMRI at baseline and follow-up. Baseline WSSMRI and WSSCFD values were divided into 3 categories representing low, medium and high WSS tertiles. WT of each tertile was compared by a one-way ANOVA test. The WSSMRI and WSSCFD were 0.50±0.13Pa and 0.73±0.25Pa at baseline. Although WSSMRI was underestimated, a significant regression was found between WSSMRI and WSSCFD (r(2)=0.71). No significant difference was found between baseline and follow-up WSS by CFD and MRI-based calculations. The WT at baseline was 1.36±0.16mm and did not change over time. The WT was 1.55±0.21mm in low, 1.33±0.20mm in medium and 1.21±0.21mm in the high WSSMRI tertiles. Similarly, the WT was 1.49±0.21mm in low, 1.33±0.20mm in medium and 1.26±0.21mm in high WSSCFD tertiles. We found that WSSMRI and WSSCFD were inversely related with WT. WSSMRI and WSSCFD patterns were similar although MRI-based calculations underestimated WSS.

Keywords
CFD Carotid arteries Early wall thickening Phase contrast MRI Wall shear stress Wall thickness
MeSH 主题词
Aged Aged, 80 and over Carotid Arteries/physiopathology Female Humans Hydrodynamics Magnetic Resonance Imaging Male Plaque, Atherosclerotic/physiopathology Stress, Mechanical
作者与单位
共 11 位作者,点击展开单位 / ORCID
Cibis Merih
Erasmus MC, Biomedical Engineering Department, Rotterdam, The Netherlands.
Potters Wouter V
AMC, Radiology Department, Amsterdam, The Netherlands.
Selwaness Mariana
Erasmus MC, Department of Epidemiology, Rotterdam, The Netherlands.
Gijsen Frank J
Erasmus MC, Biomedical Engineering Department, Rotterdam, The Netherlands.
Franco Oscar H
Erasmus MC, Department of Epidemiology, Rotterdam, The Netherlands.
Arias Lorza Andres M
Erasmus MC, Biomedical Imaging Group Rotterdam, Departments of Radiology and Medical Informatics, Rotterdam, The Netherlands.
de Bruijne Marleen
Erasmus MC, Biomedical Imaging Group Rotterdam, Departments of Radiology and Medical Informatics, Rotterdam, The Netherlands; Department of Computer Science, University of Copenhagen, Denmark.
Hofman Albert
Erasmus MC, Department of Epidemiology, Rotterdam, The Netherlands.
van der Lugt Aad
Erasmus MC, Department of Epidemiology, Rotterdam, The Netherlands.
Nederveen Aart J
AMC, Radiology Department, Amsterdam, The Netherlands.
Wentzel Jolanda J
Erasmus MC, Biomedical Engineering Department, Rotterdam, The Netherlands. Electronic address: [email protected].
Article Info
Journal
Journal of biomechanics
Abbr.
J Biomech
ISSN
1873-2380
Corresponding email
Published
2016-03-21
电子出版
2016-00-10
页码
735-741
Language
English
Country/Region
United States
NLM ID
0157375
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