中文版 | English
Title

Validation of the Reduced Unified Continuum Formulation Against In Vitro 4D-Flow MRI

Author
Corresponding AuthorMarsden, Alison L.
Publication Years
2022-08-01
DOI
Source Title
ISSN
0090-6964
EISSN
1573-9686
Abstract

We previously introduced and verified the reduced unified continuum formulation for vascular fluid-structure interaction (FSI) against Womersley's deformable wall theory. Our present work seeks to investigate its performance in a patient-specific aortic setting in which assumptions of idealized geometries and velocity profiles are invalid. Specifically, we leveraged 2D magnetic resonance imaging (MRI) and 4D-flow MRI to extract high-resolution anatomical and hemodynamic information from an in vitro flow circuit embedding a compliant 3D-printed aortic phantom. To accurately reflect experimental conditions, we numerically implemented viscoelastic external tissue support, vascular tissue prestressing, and skew boundary conditions enabling in-plane vascular motion at each inlet and outlet. Validation of our formulation is achieved through close quantitative agreement in pressures, lumen area changes, pulse wave velocity, and early systolic velocities, as well as qualitative agreement in late systolic flow structures. Our validated suite of FSI techniques offers a computationally efficient approach for numerical simulation of vascular hemodynamics. This study is among the first to validate a cardiovascular FSI formulation against an in vitro flow circuit involving a compliant vascular phantom of complex patient-specific anatomy.

Keywords
URL[Source Record]
Indexed By
SCI ; EI
Language
English
SUSTech Authorship
Others
Funding Project
National Institutes of Health[
WOS Research Area
Engineering
WOS Subject
Engineering, Biomedical
WOS Accession No
WOS:000840293600001
Publisher
EI Accession Number
20223412600623
EI Keywords
3D printers ; Acoustic wave velocity ; Blood vessels ; Continuum mechanics ; Hemodynamics ; Phantoms ; Tissue ; Wave propagation
ESI Classification Code
Biomedical Engineering:461.1 ; Biological Materials and Tissue Engineering:461.2 ; Magnetism: Basic Concepts and Phenomena:701.2 ; Printing Equipment:745.1.1 ; Imaging Techniques:746 ; Acoustic Waves:751.1 ; Mechanics:931.1
ESI Research Field
MOLECULAR BIOLOGY & GENETICS
Data Source
Web of Science
Citation statistics
Cited Times [WOS]:1
Document TypeJournal Article
Identifierhttp://kc.sustech.edu.cn/handle/2SGJ60CL/382550
DepartmentDepartment of Mechanics and Aerospace Engineering
Affiliation
1.Stanford Univ, Dept Bioengn, Clark Ctr E1-3 318 Campus Dr, Stanford, CA 94305 USA
2.Southern Univ Sci & Technol, Dept Mech & Aerosp Engn, Shenzhen 518055, Guangdong, Peoples R China
3.Southern Univ Sci & Technol, Guangdong Hong Kong Macao Joint Lab Data Driven F, Shenzhen 518055, Guangdong, Peoples R China
4.Stanford Univ, Dept Pediat Cardiol, Stanford, CA 94305 USA
5.Stanford Univ, Dept Radiol, Stanford, CA 94305 USA
6.Tech Univ Munich, Dept Informat, D-85748 Garching, Germany
7.Vet Affairs Hlth Care Syst, Div Radiol, Palo Alto, CA 94304 USA
8.Stanford Univ, Inst Computat & Math Engn, Stanford, CA 94305 USA
Recommended Citation
GB/T 7714
Lan, Ingrid S.,Liu, Ju,Yang, Weiguang,et al. Validation of the Reduced Unified Continuum Formulation Against In Vitro 4D-Flow MRI[J]. ANNALS OF BIOMEDICAL ENGINEERING,2022.
APA
Lan, Ingrid S.,Liu, Ju,Yang, Weiguang,Zimmermann, Judith,Ennis, Daniel B.,&Marsden, Alison L..(2022).Validation of the Reduced Unified Continuum Formulation Against In Vitro 4D-Flow MRI.ANNALS OF BIOMEDICAL ENGINEERING.
MLA
Lan, Ingrid S.,et al."Validation of the Reduced Unified Continuum Formulation Against In Vitro 4D-Flow MRI".ANNALS OF BIOMEDICAL ENGINEERING (2022).
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