Quantitative Characterization of the Hemodynamic Environment in Ruptured and Unruptured Brain Aneurysms
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Open Access
- 2 December 2010
- journal article
- research article
- Published by American Society of Neuroradiology (ASNR) in American Journal of Neuroradiology
- Vol. 32 (1) , 145-151
- https://doi.org/10.3174/ajnr.a2419
Abstract
BACKGROUND AND PURPOSE: Hemodynamics are thought to play an important role in the mechanisms of aneurysm pathogenesis, progression, and rupture. The purpose of this study was to define quantitative measures related to qualitative flow characteristics previously analyzed and to investigate their relationship to aneurysm rupture. MATERIALS AND METHODS: The hemodynamic environments in 210 cerebral aneurysms were analyzed by using image-based CFD under different flow conditions. Quantitative hemodynamic variables were defined and extracted from the simulation results. A statistical analysis of the relationship to the previous history of aneurysm rupture was performed, and the variability with flow conditions was assessed. RESULTS: Ruptured aneurysms were more likely to have larger inflow concentrations, larger MWSS, larger shear concentrations, and lower viscous dissipation ratios than unruptured aneurysms. Areas under low WSS and measures of abnormally low shear force distributions of ruptured and unruptured aneurysms were not statistically different. Although the values of hemodynamic quantities changed with different flow conditions, the statistical differences or ratios between their mean values over the ruptured and unruptured groups were maintained, for both pulsatile and steady flows. CONCLUSIONS: Concentrated inflow streams and WSS distributions with elevated levels of MWSS and low aneurysmal viscous dissipation are statistically associated with a clinical history of prior aneurysm rupture. In contrast, the area and total viscous shear force applied in the aneurysm region subjected to abnormally low WSS levels are not. This study highlights the potential for image-based CFD for investigating aneurysm-evolution mechanisms and for clinical assessment of aneurysm risks.This publication has 38 references indexed in Scilit:
- Association of Hemodynamic Characteristics and Cerebral Aneurysm RuptureAmerican Journal of Neuroradiology, 2010
- Computational Fluid Dynamics Simulations of Intracranial Aneurysms at Varying Heart Rates: A “Patient-Specific” StudyJournal of Biomechanical Engineering, 2009
- Fast numerical solutions of patient‐specific blood flows in 3D arterial systemsInternational Journal for Numerical Methods in Biomedical Engineering, 2009
- Hemodynamics of Cerebral AneurysmsAnnual Review of Fluid Mechanics, 2009
- Nascent Aneurysm Formation at the Basilar Terminus Induced by HemodynamicsStroke, 2008
- Flow–area relationship in internal carotid and vertebral arteriesPhysiological Measurement, 2008
- IMAGE-BASED COMPUTATIONAL HEMODYNAMICS METHODS AND THEIR APPLICATION FOR THE ANALYSIS OF BLOOD FLOW PAST ENDOVASCULAR DEVICESPublished by World Scientific Pub Co Pte Ltd ,2007
- Quantified aneurysm shape and rupture riskJournal of Neurosurgery, 2005
- Vessel surface reconstruction with a tubular deformable modelIEEE Transactions on Medical Imaging, 2001
- Cerebral aneurysms and variations in the circle of Willis.Stroke, 1984