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Research ArticleNeurointervention

Comparing Morphology and Hemodynamics of Stable-versus-Growing and Grown Intracranial Aneurysms

E.L. Leemans, B.M.W. Cornelissen, C.H. Slump, C.B.L.M. Majoie, J.R. Cebral and H.A. Marquering
American Journal of Neuroradiology December 2019, 40 (12) 2102-2110; DOI: https://doi.org/10.3174/ajnr.A6307
E.L. Leemans
aFrom the Departments of Biomedical Engineering and Physics (E.L.L., B.M.W.C., H.A.M.)
bRadiology and Nuclear Medicine (E.L.L., B.M.W.C., C.B.L.M.M., H.A.M.), Amsterdam UMC, Academic Medical Center, University of Amsterdam, Amsterdam, the Netherlands
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B.M.W. Cornelissen
aFrom the Departments of Biomedical Engineering and Physics (E.L.L., B.M.W.C., H.A.M.)
bRadiology and Nuclear Medicine (E.L.L., B.M.W.C., C.B.L.M.M., H.A.M.), Amsterdam UMC, Academic Medical Center, University of Amsterdam, Amsterdam, the Netherlands
cMIRA Institute for Biomedical Engineering and Technical Medicine (B.M.W.C., C.H.S.), University of Twente, Enschede, the Netherlands
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C.H. Slump
cMIRA Institute for Biomedical Engineering and Technical Medicine (B.M.W.C., C.H.S.), University of Twente, Enschede, the Netherlands
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C.B.L.M. Majoie
bRadiology and Nuclear Medicine (E.L.L., B.M.W.C., C.B.L.M.M., H.A.M.), Amsterdam UMC, Academic Medical Center, University of Amsterdam, Amsterdam, the Netherlands
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J.R. Cebral
dBioengineering and Mechanical Engineering Department, (J.R.C.), Volgenau School of Engineering, George Mason University, Fairfax, Virginia.
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H.A. Marquering
bRadiology and Nuclear Medicine (E.L.L., B.M.W.C., C.B.L.M.M., H.A.M.), Amsterdam UMC, Academic Medical Center, University of Amsterdam, Amsterdam, the Netherlands
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Abstract

BACKGROUND AND PURPOSE: Aneurysm growth has been related to higher rupture risk. A better understanding of the characteristics related to growth may assist in the treatment decisions of unruptured intracranial aneurysms. This study aimed to identify morphologic and hemodynamic characteristics associated with aneurysm growth and to determine whether these characteristics deviate further from those of stable aneurysms after growth.

MATERIALS AND METHODS: We included 81 stable and 56 growing aneurysms. 3D vascular models were segmented on CTA, MRA, or 3D rotational angiographic images. With these models, we performed computational fluid dynamics simulations. Morphologic (size, size ratios, and shape) and hemodynamic (inflow, vorticity, shear stress, oscillatory shear index, flow instability) characteristics were automatically calculated. We compared the characteristics between aneurysms that were stable and those that had grown at baseline and final imaging. The significance level after Bonferroni correction was P < .002.

RESULTS: At baseline, no significant differences between aneurysms that were stable and those that had grown were detected (P > .002). Significant differences between aneurysms that were stable and those that had grown were seen at the final imaging for shear rate, aneurysm velocity, vorticity, and mean wall shear stress (P < .002). The latter was 11.5 (interquartile range, 5.4–18.8 dyne/cm2) compared with 17.5 (interquartile range, 11.2–29.9 dyne/cm2) in stable aneurysms (P = .001). Additionally, a trend toward lower area weighted average Gaussian curvature in aneurysms that had grown was observed with a median of 6.0 (interquartile range, 3.2–10.7 cm−2) compared with 10.4 (interquartile range, 5.0–21.2 cm−2) in stable aneurysms (P = .004).

CONCLUSIONS: Morphologic and hemodynamic characteristics at baseline were not associated with aneurysm growth in our population. After growth, almost all indices increase toward values associated with higher rupture risks. Therefore, we stress the importance of longitudinal imaging and repeat risk assessment in unruptured aneurysms.

ABBREVIATIONS:

CFD
computational fluid dynamics
CLL
core-line length
EI
ellipticity index
ELAPSS
Earlier subarachnoid hemorrhage, location of the aneurysm, age, population, size, and shape of the aneurysm
GAA
area weighted average of the Gaussian curvature
IQR
interquartile range
LSA
low shear stress area
OSI
oscillatory shear index
PHASES
Population, Hypertension, Age, Size, Earlier Subarachnoid Hemorrhage, and Site
SizeR
size ratio
3DRA
3D rotational angiography
VO
mean vorticity
VOR
volume-to-ostium ratio
WSS
wall shear stress
  • © 2019 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 40 (12)
American Journal of Neuroradiology
Vol. 40, Issue 12
1 Dec 2019
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Cite this article
E.L. Leemans, B.M.W. Cornelissen, C.H. Slump, C.B.L.M. Majoie, J.R. Cebral, H.A. Marquering
Comparing Morphology and Hemodynamics of Stable-versus-Growing and Grown Intracranial Aneurysms
American Journal of Neuroradiology Dec 2019, 40 (12) 2102-2110; DOI: 10.3174/ajnr.A6307

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Comparing Morphology and Hemodynamics of Stable-versus-Growing and Grown Intracranial Aneurysms
E.L. Leemans, B.M.W. Cornelissen, C.H. Slump, C.B.L.M. Majoie, J.R. Cebral, H.A. Marquering
American Journal of Neuroradiology Dec 2019, 40 (12) 2102-2110; DOI: 10.3174/ajnr.A6307
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