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NUMERICAL HEMODYNAMICS ANALYSIS FOR CEREBRAL ANEURYSM WITH POROUS INSERTS

Volume 21, Edição 13, 2018, pp. 1439-1448
DOI: 10.1615/JPorMedia.2019028847
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RESUMO

This numerical study uses the ANSYS Fluent Computational Fluid Dynamics (CFD) tool to assess coil parameters that affect the hemodynamics characteristics after aneurysm endovascular coiling. The study focuses on investigating the effect of coils' compactness and coils' diameter on the hemodynamics of the blood and mainly on the wall shear stresses (WSS). Using Darcy's law, a porous media model for fibrous mesh is used to represent the embolic coils space inside an idealized terminal-type cerebral aneurysm model. The results show that as the coil radius increases, the WSS decreases. Also, the results show that as coiled space porosity increases from 0.1 up to 0.9, the inflow rate crossing to the aneurysm increases. Regions with highest compactness are showing the lowest WSS. Our conclusion is that it is better to use larger coil diameters while assuring porosity is kept at low values (lower than 0.2).

CITADO POR
  1. Hamdan Mohammad O., Alargha Hashem M., Khashan Saud, Aziz Waseem H., CFD Investigation of the Effect of Cerebral Aneurysms Size on Wall Stresses and Strain, 2019 Advances in Science and Engineering Technology International Conferences (ASET), 2019. Crossref

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