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PMID: 36908295 Published · epublish English Journal Article

Modeling flow in an in vitro anatomical cerebrovascular model with experimental validation.

Frontiers in medical technology ·Vol. 5 ·2023-00-00 ·页码 1130201

Bhardwaj S, Craven BA, Sever JE, Costanzo F, Simon SD, Manning KB

Abstract

Acute ischemic stroke (AIS) is a leading cause of mortality that occurs when an embolus becomes lodged in the cerebral vasculature and obstructs blood flow in the brain. The severity of AIS is determined by the location and how extensively emboli become lodged, which are dictated in large part by the cerebral flow and the dynamics of embolus migration which are difficult to measure in vivo in AIS patients. Computational fluid dynamics (CFD) can be used to predict the patient-specific hemodynamics and embolus migration and lodging in the cerebral vasculature to better understand the underlying mechanics of AIS. To be relied upon, however, the computational simulations must be verified and validated. In this study, a realistic in vitro experimental model and a corresponding computational model of the cerebral vasculature are established that can be used to investigate flow and embolus migration and lodging in the brain. First, the in vitro anatomical model is described, including how the flow distribution in the model is tuned to match physiological measurements from the literature. Measurements of pressure and flow rate for both normal and stroke conditions were acquired and corresponding CFD simulations were performed and compared with the experiments to validate the flow predictions. Overall, the CFD simulations were in relatively close agreement with the experiments, to within ±7% of the mean experimental data with many of the CFD predictions within the uncertainty of the experimental measurement. This work provides an in vitro benchmark data set for flow in a realistic cerebrovascular model and is a first step towards validating a computational model of AIS.

Keywords
acute ischemic stroke cerebral blood flow cerebrovascular model fluid dynamics image based modeling
作者与单位
共 6 位作者,点击展开单位 / ORCID
Bhardwaj Saurabh
Department of Biomedical Engineering, Pennsylvania State University, University Park, PA, United States.
Craven Brent A
Office of Science and Engineering Laboratories, Center for Devices and Radiological Health, U.S. Food and Drug Administration, Silver Spring, MD, United States.
Sever Jacob E
Department of Biomedical Engineering, Pennsylvania State University, University Park, PA, United States.
Costanzo Francesco
Department of Biomedical Engineering, Pennsylvania State University, University Park, PA, United States. | Department of Engineering Science and Mechanics, Pennsylvania State University, University Park, PA, United States.
Simon Scott D
Department of Neurosurgery, Penn State Hershey Medical Center, Hershey, PA, United States.
Manning Keefe B
Department of Biomedical Engineering, Pennsylvania State University, University Park, PA, United States. | Department of Surgery, Penn State Hershey Medical Center, Hershey, PA, United States.
Article Info
Journal
Frontiers in medical technology
Abbr.
Front Med Technol
ISSN
2673-3129
Published
2023-00-00
电子出版
2023-00-23
页码
1130201
Language
English
Country/Region
Switzerland
NLM ID
101772626
基金资助
NHLBI NIH HHS · R01 HL146921 · United States
勘误 / 撤稿关联
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