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Improved Turnaround Times | Median time to first decision: 12 days

Research ArticleNeurointervention
Open Access

Hemodynamics of 8 Different Configurations of Stenting for Bifurcation Aneurysms

K. Kono and T. Terada
American Journal of Neuroradiology October 2013, 34 (10) 1980-1986; DOI: https://doi.org/10.3174/ajnr.A3479
K. Kono
aFrom the Department of Neurosurgery, Wakayama Rosai Hospital, Wakayama, Japan.
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T. Terada
aFrom the Department of Neurosurgery, Wakayama Rosai Hospital, Wakayama, Japan.
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Abstract

BACKGROUND AND PURPOSE: SACE is performed for complex aneurysms. There are several configurations of stent placement for bifurcation aneurysms. We investigated hemodynamics among 8 different configurations of stent placement, which may relate to the recanalization rate.

MATERIALS AND METHODS: We created a silicone block model of a patient-specific asymmetric bifurcation aneurysm. Enterprise closed-cell stents were deployed in the model as various configurations. 3D images of these stents were obtained by micro-CT. We performed CFD simulations for a no-stent model and 8 stent models: a single stent from a proximal vessel to a right or left distal vessel, a horizontal stent, a kissing-Y stent with a uniformly narrowed structure, a nonoverlapping-Y stent, a virtual-Y stent with no narrowed structure (fusion of 2 single stents), and 2 different crossing-Y stents with a focally narrowed structure. Hemodynamic parameters were evaluated.

RESULTS: Cycle-averaged velocity and WSS in the aneurysm were reduced because of stent placement in the following order: single stent (19% reduction in cycle-averaged velocity) < nonoverlapping-Y stent (29%) < virtual-Y stent (32%) < horizontal stent (39%) < kissing-Y stent (48%) < crossing-Y stent (54%). Kissing- and crossing-Y stents redirected impingement flow into the distal vessels because of lowered porosity of stents due to narrowed structures.

CONCLUSIONS: Among 8 different configurations of stent placement, kissing- and crossing-Y stents showed the strongest reduction in flow velocity in the aneurysm because of lowered porosity of stents and redirection of impingement flow. This may be a desirable reconstruction of flow hemodynamics and may decrease recanalization rates in SACE.

ABBREVIATIONS:

CFD
computational fluid dynamics
L
left
PCA
posterior cerebral artery
R
right
SACE
stent-assisted coil embolization
WSS
wall shear stress
  • © 2013 by American Journal of Neuroradiology

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American Journal of Neuroradiology: 34 (10)
American Journal of Neuroradiology
Vol. 34, Issue 10
1 Oct 2013
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Cite this article
K. Kono, T. Terada
Hemodynamics of 8 Different Configurations of Stenting for Bifurcation Aneurysms
American Journal of Neuroradiology Oct 2013, 34 (10) 1980-1986; DOI: 10.3174/ajnr.A3479

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Hemodynamics of 8 Different Configurations of Stenting for Bifurcation Aneurysms
K. Kono, T. Terada
American Journal of Neuroradiology Oct 2013, 34 (10) 1980-1986; DOI: 10.3174/ajnr.A3479
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  • Safety and effectiveness of the Low Profile Visualized Intraluminal Support (LVIS and LVIS Jr) devices in the endovascular treatment of intracranial aneurysms: results of the TRAIL multicenter observational study
  • The Role of Hemodynamics in Intracranial Bifurcation Arteries after Aneurysm Treatment with Flow-Diverter Stents
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  • Dual Stenting Using Low-Profile LEO Baby Stents for the Endovascular Management of Challenging Intracranial Aneurysms
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