Saccular Aneurysms on Straight and Curved Vessels Are Subject to Different Hemodynamics: Implications of Intravascular Stenting

Our aim was to examine hemodynamic implications of intravascular stenting in the canine venous pouch (sidewall or straight-vessel) and rabbit elastase (curved-vessel) aneurysm models. Flow dynamics in stented (Wallstent) and nonstented versions were studied by using computational fluid dynamics simu...

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Bibliographic Details
Published inAmerican Journal of Neuroradiology Vol. 27; no. 9; pp. 1861 - 1865
Main Authors Meng, H, Wang, Z, Kim, M, Ecker, R.D, Hopkins, L.N
Format Journal Article
LanguageEnglish
Published Oak Brook, IL Am Soc Neuroradiology 01.10.2006
American Society of Neuroradiology
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Summary:Our aim was to examine hemodynamic implications of intravascular stenting in the canine venous pouch (sidewall or straight-vessel) and rabbit elastase (curved-vessel) aneurysm models. Flow dynamics in stented (Wallstent) and nonstented versions were studied by using computational fluid dynamics simulations and in vitro flow visualization, with a focus on stent placement effects on aneurysmal flow stagnancy and flow impingement. Results show that sidewall and curved aneurysm models have fundamentally different hemodynamics (shear-driven versus inertia-driven) and thus stent placement outcomes.
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ISSN:0195-6108
1936-959X