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PMID: 30840973 Published · ppublish English Journal Article

Patient-Specific Computational Fluid Dynamics in Ruptured Posterior Communicating Aneurysms Using Measured Non-Newtonian Viscosity : A Preliminary Study.

Journal of Korean Neurosurgical Society ·Vol. 62 ·No. 2 ·2019-03-00 ·Pages 183-192

Lee UY, Jung J, Kwak HS, Lee DH, Chung GH, Park JS, Koh EJ

Abstract

The objective of this study was to analyze patient-specific blood flow in ruptured aneurysms using obtained non-Newtonian viscosity and to observe associated hemodynamic features and morphological effects. Five patients with acute subarachnoid hemorrhage caused by ruptured posterior communicating artery aneurysms were included in the study. Patients' blood samples were measured immediately after enrollment. Computational fluid dynamics (CFD) was conducted to evaluate viscosity distributions and wall shear stress (WSS) distributions using a patient-specific geometric model and shear-thinning viscosity properties. Substantial viscosity change was found at the dome of the aneurysms studied when applying non-Newtonian blood viscosity measured at peak-systole and end-diastole. The maximal WSS of the non-Newtonian model on an aneurysm at peaksystole was approximately 16% lower compared to Newtonian fluid, and most of the hemodynamic features of Newtonian flow at the aneurysms were higher, except for minimal WSS value. However, the differences between the Newtonian and non-Newtonian flow were not statistically significant. Rupture point of an aneurysm showed low WSS regardless of Newtonian or non-Newtonian CFD analyses. By using measured non-Newtonian viscosity and geometry on patient-specific CFD analysis, morphologic differences in hemodynamic features, such as changes in whole blood viscosity and WSS, were observed. Therefore, measured non-Newtonian viscosity might be possibly useful to obtain patient-specific hemodynamic and morphologic result.

Keywords
Aneurysm Computational fluid dynamics Newtonian Non-Newtonian Viscosity Wall shear stress
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Lee Ui Yun
Department of Bionanosystem Engineering, Chonbuk National University, Jeonju, Korea.
Jung Jinmu
Division of Mechanical Design Engineering, Chonbuk National University, Jeonju, Korea. | Hemorheology Research Institute, Chonbuk National University, Jeonju, Korea.
Kwak Hyo Sung
Department of Radiology, Research Institute of Clinical Medicine of Chonbuk National University-Biomedical Research Institute of Chonbuk National University Hospital, Jeonju, Korea.
Lee Dong Hwan
Division of Mechanical Design Engineering, Chonbuk National University, Jeonju, Korea. | Hemorheology Research Institute, Chonbuk National University, Jeonju, Korea.
Chung Gyung Ho
Department of Radiology, Research Institute of Clinical Medicine of Chonbuk National University-Biomedical Research Institute of Chonbuk National University Hospital, Jeonju, Korea.
Park Jung Soo
Department of Neurosurgery, Research Institute of Clinical Medicine of Chonbuk National University-Biomedical Research Institute of Chonbuk National University Hospital, Jeonju, Korea.
Koh Eun Jeong
Department of Neurosurgery, Research Institute of Clinical Medicine of Chonbuk National University-Biomedical Research Institute of Chonbuk National University Hospital, Jeonju, Korea.
Article Info
Journal
Journal of Korean Neurosurgical Society
Abbr.
J Korean Neurosurg Soc
ISSN
2005-3711
Published
2019-03-00
Epub
2019-00-27
Pages
183-192
Language
English
Region
Korea (South)
NLM ID
101467054
Grants
National Research Foundation of Korea · 2016R1D1A3B03935132
National Research Foundation of Korea · 2017R1A4A1015681
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