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OtherNeurointervention

Computational Simulation of Therapeutic Parent Artery Occlusion to Treat Giant Vertebrobasilar Aneurysm

Tamer Hassan, Masayuki Ezura, Eugene V. Timofeev, Teiji Tominaga, Tsutomu Saito, Akira Takahashi, Kazuyoshi Takayama and Takashi Yoshimoto
American Journal of Neuroradiology January 2004, 25 (1) 63-68;
Tamer Hassan
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Masayuki Ezura
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Eugene V. Timofeev
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Teiji Tominaga
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Tsutomu Saito
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Akira Takahashi
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Kazuyoshi Takayama
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Takashi Yoshimoto
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Abstract

Summary: We applied computational fluid dynamics (CFD) analysis to assess 3D digital subtraction angiography findings in a patient with a giant vertebrobasilar aneurysm to simulate and compare the consequences of left and right vertebral artery occlusion. The balloon occlusion test suggested that occlusion of the right vertebral artery is the better way to treat this patient’s aneurysm from the point of view of aneurysmal thrombosis and isolation from the circulation. The computer simulation supported this conclusion, at the same time indicating that from the point of view of pressure distribution on the wall of the aneurysm, the right vertebral occlusion may be also accompanied by an undesirable effect. A high-pressure area on the aneurysm wall in systole was revealed. This high pressure potentially could lead to subsequent aneurysmal growth, which indeed occurred, as was revealed by a follow-up examination 6 months later. This study is a good example of possible future applications of CFD in patients with cerebrovascular disease before therapeutic intervention.

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American Journal of Neuroradiology: 25 (1)
American Journal of Neuroradiology
Vol. 25, Issue 1
1 Jan 2004
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Tamer Hassan, Masayuki Ezura, Eugene V. Timofeev, Teiji Tominaga, Tsutomu Saito, Akira Takahashi, Kazuyoshi Takayama, Takashi Yoshimoto
Computational Simulation of Therapeutic Parent Artery Occlusion to Treat Giant Vertebrobasilar Aneurysm
American Journal of Neuroradiology Jan 2004, 25 (1) 63-68;

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Computational Simulation of Therapeutic Parent Artery Occlusion to Treat Giant Vertebrobasilar Aneurysm
Tamer Hassan, Masayuki Ezura, Eugene V. Timofeev, Teiji Tominaga, Tsutomu Saito, Akira Takahashi, Kazuyoshi Takayama, Takashi Yoshimoto
American Journal of Neuroradiology Jan 2004, 25 (1) 63-68;
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  • Computational Fluid Dynamics in Highly Complex Geometries Using MPI-Parallel Lattice Boltzmann Methods: A Biomedical Engineering Application
  • Hemodynamic characteristics of stable and unstable vertebrobasilar dolichoectatic and fusiform aneurysms
  • Generalized versus Patient-Specific Inflow Boundary Conditions in Computational Fluid Dynamics Simulations of Cerebral Aneurysmal Hemodynamics
  • Cerebral Aneurysms Treated with Flow-Diverting Stents: Computational Models with Intravascular Blood Flow Measurements
  • Computational fluid dynamic simulation to assess flow characteristics of an in vitro aneurysm model
  • Balloon test occlusion and endosurgical parent artery sacrifice for the evaluation and management of complex intracranial aneurysmal disease
  • Computational modelling for cerebral aneurysms: risk evaluation and interventional planning
  • Aneurysm Growth Occurs at Region of Low Wall Shear Stress: Patient-Specific Correlation of Hemodynamics and Growth in a Longitudinal Study
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