Understanding of boundary conditions imposed at multiple outlets in computational haemodynamic analysis of cerebral aneurysm

Author:

Shimano Kenjiro1,Serigano Shota2,Ikeda Naoki1,Yuchi Tomoki1,Shiratori Suguru1,Nagano Hideaki1

Affiliation:

1. Department of Mechanical Systems Engineering, Faculty of Engineering, Tokyo City University

2. Graduate School of Integrative Science and Engineering, Tokyo City University

Publisher

Japanese Society of Biorheology

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference65 articles.

1. 1. Radaelli AG, Augsburger L, Cebral JR, Ohta M, Rüfenacht DA, Balossino R, Benndorf G, Hose DR, Marzo A, Metcalfe R, Mortier P, Mut F, Reymond P, Socci L, Verhegghe B, Frangi AF. Reproducibility of haemodynamical simulations in a subject-specific stented aneurysm model—A report on the Virtual Intracranial Stenting Challenge 2007. J Biomech. 2008; 41: 2069–81. doi: 10.1016/j.jbiomech.2008.04.035

2. 2. Steinman DA, Hoi Y, Fahy P, Morris L, Walsh MT, Aristokleous N, Anayiotos AS, Papaharilaou Y, Arzani A, Shadden SC, Berg P, Janiga G, Bols J, Segers P, Bressloff NW, Cibis M, Gijsen FH, Cito S, Pallarés J, Browne LD, Costelloe JA, Lynch AG, Degroote J, Vierendeels J, Fu W, Qiao A, Hodis S, Kallmes DF, Kalsi H, Long Q, Kheyfets VO, Finol EA, Kono K, Malek AM, Lauric A, Menon PG, Pekkan K, Moghadam ME, Marsden AL, Oshima M, Katagiri K, Peiffer V, Mohamied Y, Sherwin SJ, Schaller J, Goubergrits L, Usera G, Mendina M, Valen-Sendstad K, Habets DF, Xiang J, Meng H, Yu Y, Karniadakis GE, Shaffer N, Loth F. Variability of computational fluid dynamics solutions for pressure and flow in a giant aneurysm: The ASME 2012 Summer Bioengineering Conference CFD Challenge. J Biomech Eng. 2013; 135(2): 021016–021016-13. doi: 10.1115/1.4023382

3. 3. Janiga G, Berg P, Sugiyama S, Kono K, Steinman DA. The Computational Fluid Dynamics Rupture Challenge 2013-Phase I: Prediction of Rupture Status in Intracranial Aneurysms. Am J Neuroradiol. 2015; 36(3): 530–6. doi: 10.3174/ajnr.A4157

4. 4. Cito S, Geers AJ, Arroyo MP, Palero VR, Pallarés J, Vernet A, Blasco J, San Román L, Fu W, Qiao A, Janiga G, Miura Y, Ohta M, Mendina M, Usera G, Frangi AF. Accuracy and reproducibility of patient-specific hemodynamic models of stented intracranial aneurysms: Report on the Virtual Intracranial Stenting Challenge 2011. Ann Biomed Eng. 2015; 43: 154–67. doi: 10.1007/s10439-014-1082-9

5. 5. Berg P, Roloff C, Beuing O, Voss S, Sugiyama S, Aristokleous N, Anayiotos AS, Ashton N, Revell A, Bressloff NW, Brown AG, Chung BJ, Cebral JR, Copelli G, Fu W, Qiao A, Geers AJ, Hodis S, Dragomir-Daescu D, Nordahl E, Suzen YB, Khan MO, Valen-Sendstad K, Kono K, Menon PG, Albal PG, Mierka O, Münster R, Morales HG, Bonnefous O, Osman J, Goubergrits L, Pallares J, Cito S, Passalacqua A, Piskin S, Pekkan K, Ramalho S, Marques N, Sanchi S, Schumacher KR, Sturgeon J, Švihlová H, Hron J, Usera G, Mendina M, Xiang J, Meng H, Steinman DA, Janiga G. The Computational Fluid Dynamics Rupture Challenge 2013—Phase II: Variability of Hemodynamic Simulations in Two Intracranial Aneurysms. J Biomech Eng. 2015; 137(12): 121008–121008-13. doi: 10.1115/1.4031794

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