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PMID: 35377416 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

A New Method for Quantifying Abdominal Aortic Wall Shear Stress Using Phase Contrast Magnetic Resonance Imaging and the Womersley Solution.

Journal of biomechanical engineering ·Vol. 144 ·No. 9 ·2022-00-01

Iffrig E, Timmins LH, El Sayed R, Taylor WR, Oshinski JN

Abstract

Wall shear stress (WSS) is an important mediator of cardiovascular pathologies and there is a need for its reliable evaluation as a potential prognostic indicator. The purpose of this work was to develop a method that quantifies WSS from two-dimensional (2D) phase contrast magnetic resonance (PCMR) imaging derived flow waveforms, apply this method to PCMR data acquired in the abdominal aorta of healthy volunteers, and to compare PCMR-derived WSS values to values predicted from a computational fluid dynamics (CFD) simulation. The method uses PCMR-derived flow versus time waveforms constrained by the Womersley solution for pulsatile flow in a cylindrical tube. The method was evaluated for sensitivity to input parameters, intrastudy repeatability and was compared with results from a patient-specific CFD simulation. 2D-PCMR data were acquired in the aortas of healthy men (n = 12) and women (n = 15) and time-averaged WSS (TAWSS) was compared. Agreement was observed when comparing TAWSS between CFD and the PCMR flow-based method with a correlation coefficient of 0.88 (CFD: 15.0 ± 1.9 versus MRI: 13.5 ± 2.4 dyn/cm2) though comparison of WSS values between the PCMR-based method and CFD predictions indicate that the PCMR method underestimated instantaneous WSS by 3.7 ± 7.6 dyn/cm2. We found no significant difference in TAWSS magnitude between the sexes; 8.19 ± 2.25 versus 8.07 ± 1.71 dyn/cm2, p = 0.16 for men and women, respectively.

Keywords
MRI abdominal aortic aneurysm biomechanics cardiovascular risk phase contrast magnetic resonance (PCMR) sex
MeSH 主题词
Aorta, Abdominal/diagnostic imaging Blood Flow Velocity Female Humans Magnetic Resonance Imaging Male Models, Cardiovascular Stress, Mechanical
作者与单位
共 5 位作者,点击展开单位 / ORCID
Iffrig Elizabeth
Department of Medicine, Department of Biomedical Engineering, School of Medicine, Emory University, 101 Woodruff Circle, Atlanta, GA 30322; Georgia Institute of Technology, Emory University, 101 Woodruff Circle, Atlanta, GA 30322.
Timmins Lucas H
Department of Biomedical Engineering, Scientific Computing and Imaging Institute, University of Utah, 36 S. Wasatch Drive SMBB, Rm. 3100, Salt Lake City, UT 84112.
El Sayed Retta
Department of Biomedical Engineering, School of Medicine, Emory University, 1364 Clifton Road, Atlanta, GA 30322; Georgia Institute of Technology, 1364 Clifton Road, Atlanta, GA 30322.
Taylor W Robert
Division of Cardiology, Department of Medicine, Emory University School of Medicine, 101 Woodruff Cir, Atlanta, GA 30322; Department of Biomedical Engineering, Emory University School of Medicine, 101 Woodruff Cir, Atlanta, GA 30322; Cardiology Division, Georgia Institute of Technology, Atlanta Veterans Affairs Medical Center, Atlanta, GA 30322.
Oshinski John N
Department of Radiology & Imaging Sciences, Department of Biomedical Engineering, School of Medicine, Emory University, 1364 Clifton Road, Atlanta, GA 30322; Georgia Institute of Technology, 1364 Clifton Road, Atlanta, GA 30322.
Article Info
Journal
Journal of biomechanical engineering
Abbr.
J Biomech Eng
ISSN
1528-8951
Published
2022-00-01
Language
English
Country/Region
United States
NLM ID
7909584
基金资助
NIBIB NIH HHS · R01 EB027774 · United States
NIAID NIH HHS · R38 AI140299 · United States
NCATS NIH HHS · UL1 TR002378 · United States
NCATS NIH HHS · 3 UL1 TR002378 · United States
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