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Comparison of two stents in modifying cerebral aneurysm hemodynamics

  • Minsuok Kim
  • , Dale B. Taulbee
  • , Markus Tremmel
  • , Hui Meng
  • SUNY Buffalo

Research output: Contribution to journalArticlepeer-review

145 Scopus citations

Abstract

There is a general lack of quantitative understanding about how specific design features of endovascular stents (struts and mesh design, porosity) affect the hemodynamics in intracranial aneurysms. To shed light on this issue, we studied two commercial high-porosity stents (Tristar stent™ and Wallstent®) in aneurysm models of varying vessel curvature as well as in a patient-specific model using Computational Fluid Dynamics. We investigated how these stents modify hemodynamic parameters such as aneurysmal inflow rate, stasis, and wall shear stress, and how such changes are related to the specific designs. We found that the flow damping effect of stents and resulting aneurysmal stasis and wall shear stress are strongly influenced by stent porosity, strut design, and mesh hole shape. We also confirmed that the damping effect is significantly reduced at higher vessel curvatures, which indicates limited usefulness of high-porosity stents as a stand-alone treatment. Finally, we showed that the stasis-inducing performance of stents in 3D geometries can be predicted from the hydraulic resistance of their flat mesh screens. From this, we propose a methodology to cost-effectively compare different stent designs before running a full 3D simulation.

Original languageEnglish
Pages (from-to)726-741
Number of pages16
JournalAnnals of Biomedical Engineering
Volume36
Issue number5
DOIs
StatePublished - May 2008

Keywords

  • Anatomical aneurysm
  • Cerebral aneurysm
  • Computational fluid dynamics
  • Hemodynamics
  • Hydraulic resistance
  • Stent design
  • Tristar stent™
  • Vessel geometry
  • Wallstent®

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