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PMID: 33808514 Published · epublish English Journal Article

Comparison of Hemodynamic Visualization in Cerebral Arteries: Can Magnetic Resonance Imaging Replace Computational Fluid Dynamics?

Journal of personalized medicine ·Vol. 11 ·No. 4 ·2021-03-30

Ngo MT, Lee UY, Ha H, Jin N, Chung GH, Kwak YG, Jung J, Kwak HS

Abstract

A multimodality approach was applied using four-dimensional flow magnetic resonance imaging (4D flow MRI), time-of-flight magnetic resonance angiography (TOF-MRA) signal intensity gradient (SIG), and computational fluid dynamics (CFD) to investigate the 3D blood flow characteristics and wall shear stress (WSS) of the cerebral arteries. TOF-MRA and 4D flow MRI were performed on the major cerebral arteries in 16 healthy volunteers (mean age 34.7 ± 7.6 years). The flow rate measured with 4D flow MRI in the internal carotid artery, middle cerebral artery, and anterior cerebral artery were 3.8, 2.5, and 1.2 mL/s, respectively. The 3D blood flow pattern obtained through CFD and 4D flow MRI on the cerebral arteries showed reasonable consensus. CFD delivered much greater resolution than 4D flow MRI. TOF-MRA SIG and CFD WSS of the major cerebral arteries showed reasonable consensus with the locations where the WSS was relatively high. However, the visualizations were very different between TOF-MRA SIG and CFD WSS at the internal carotid artery bifurcations, the anterior cerebral arteries, and the anterior communicating arteries. 4D flow MRI, TOF-MRA SIG, and CFD are complementary methods that can provide additional insight into the hemodynamics of the human cerebral artery.

Keywords
cerebral arteries computational fluid dynamics (CFD) four-dimensional flow magnetic resonance imaging (4D flow MRI) hemodynamics visualization signal intensity gradient from time-of-flight magnetic resonance angiography (TOF-MRA SIG)
作者与单位
共 8 位作者,点击展开单位 / ORCID
Ngo Minh Tri ORCID
Department of Radiology and Research Institute of Clinical Medicine of Jeonbuk National University, Biomedical Research Institute of Jeonbuk National University Hospital, Jeon-ju 54907, Korea.
Lee Ui Yun ORCID
Division of Mechanical Design Engineering, Jeonbuk National University, Jeon-ju 54896, Korea.
Ha Hojin
Department of Mechanical and Biomedical Engineering, Kangwon National University, Chuncheon 24341, Korea.
Jin Ning
Siemens Medical Solutions USA, Inc., Chicago, IL 60089, USA.
Chung Gyung Ho
Department of Radiology and Research Institute of Clinical Medicine of Jeonbuk National University, Biomedical Research Institute of Jeonbuk National University Hospital, Jeon-ju 54907, Korea.
Kwak Yeong Gon
Department of Radiology and Research Institute of Clinical Medicine of Jeonbuk National University, Biomedical Research Institute of Jeonbuk National University Hospital, Jeon-ju 54907, Korea.
Jung Jinmu
Division of Mechanical Design Engineering, Jeonbuk National University, Jeon-ju 54896, Korea. | Hemorheology Research Institute, Jeonbuk National University, Jeon-ju 54896, Korea.
Kwak Hyo Sung ORCID
Department of Radiology and Research Institute of Clinical Medicine of Jeonbuk National University, Biomedical Research Institute of Jeonbuk National University Hospital, Jeon-ju 54907, Korea.
Article Info
Journal
Journal of personalized medicine
Abbr.
J Pers Med
ISSN
2075-4426
Published
2021-03-30
电子出版
2021-00-30
Language
English
Country/Region
Switzerland
NLM ID
101602269
基金资助
National Research Foundation of Korea · NRF-2019R1I1A3A01060695
National Research Foundation of Korea · NRF-2019R1I1A3A01059720
National Research Foundation of Korea · NRF-2020R1A2C1008089
National Research Foundation of Korea · NRF-2020R1A4A2002817
Fund of Biomedical Research Institute, Jeonbuk National University Hospital · Fund of Biomedical Research Institute
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