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Research ArticleNeurointervention
Open Access

Influence of Hemodynamic Factors on Rupture of Intracranial Aneurysms: Patient-Specific 3D Mirror Aneurysms Model Computational Fluid Dynamics Simulation

G. Lu, L. Huang, X.L. Zhang, S.Z. Wang, Y. Hong, Z. Hu and D.Y. Geng
American Journal of Neuroradiology August 2011, 32 (7) 1255-1261; DOI: https://doi.org/10.3174/ajnr.A2461
G. Lu
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L. Huang
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X.L. Zhang
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S.Z. Wang
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Y. Hong
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Z. Hu
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D.Y. Geng
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Abstract

BACKGROUND AND PURPOSE: Hemodynamics factors play an important role in the rupture of cerebral aneurysms. The purpose of this study was to evaluate the impact of hemodynamic factors on the rupture of the MANs with 3D reconstruction model CFD simulation.

MATERIALS AND METHODS: RDSA was performed in 9 pairs of intracranial MANs. Each pair was divided into ruptured and unruptured groups. The hemodynamic factors of the aneurysms and their parent arteries were compared.

RESULTS: There was a significant difference in the WSS at peak systole between the regions of the aneurysms and their parent arteries in the ruptured group (ie, 6.49 ± 3.48 Pa versus 8.78 ± 3.57 Pa, P =.015) but not in the unruptured group (ie, 9.80 ± 4.12 Pa versus 10.17 ± 7.48 Pa, P =.678). The proportion of the low WSS area to the whole area of the aneurysms was 12.20 ± 18.08% in the ruptured group and 3.96 ± 6.91% in the unruptured group; the difference between the 2 groups was statistically significant (P =.015). The OSI was 0.0879 ± 0.0764 in the ruptured group, which was significantly higher than that of the unruptured group (ie, 0.0183 ± 0.0191, P =.008).

CONCLUSIONS: MANs may be a useful disease model to investigate possible causes linked to ruptured aneurysms. The ruptured aneurysms manifested lower WSS compared with their parent arteries, a higher proportion of the low WSS area to the whole area of aneurysm, and higher OSI compared with the unruptured aneurysms.

Abbreviations

ACA
anterior cerebral artery
CFD
computational fluid dynamics
EC
endothelial cell
IA
intracranial aneurysms
MAN
mirror aneurysm
MCA
middle cerebral artery
NO
nitric oxide
OSI
oscillatory shear index
RDSA
rotation digital subtraction angiography
VSM
vascular smooth muscle
WSS
wall shear stress
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American Journal of Neuroradiology: 32 (7)
American Journal of Neuroradiology
Vol. 32, Issue 7
1 Aug 2011
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Cite this article
G. Lu, L. Huang, X.L. Zhang, S.Z. Wang, Y. Hong, Z. Hu, D.Y. Geng
Influence of Hemodynamic Factors on Rupture of Intracranial Aneurysms: Patient-Specific 3D Mirror Aneurysms Model Computational Fluid Dynamics Simulation
American Journal of Neuroradiology Aug 2011, 32 (7) 1255-1261; DOI: 10.3174/ajnr.A2461

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Influence of Hemodynamic Factors on Rupture of Intracranial Aneurysms: Patient-Specific 3D Mirror Aneurysms Model Computational Fluid Dynamics Simulation
G. Lu, L. Huang, X.L. Zhang, S.Z. Wang, Y. Hong, Z. Hu, D.Y. Geng
American Journal of Neuroradiology Aug 2011, 32 (7) 1255-1261; DOI: 10.3174/ajnr.A2461
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