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Research ArticleInterventional

Rest versus Exercise Hemodynamics for Middle Cerebral Artery Aneurysms: A Computational Study

T.J. Bowker, P.N. Watton, P.E. Summers, J.V. Byrne and Y. Ventikos
American Journal of Neuroradiology February 2010, 31 (2) 317-323; DOI: https://doi.org/10.3174/ajnr.A1797
T.J. Bowker
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P.N. Watton
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P.E. Summers
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J.V. Byrne
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Y. Ventikos
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      Online Figure 1: Grid-independence study. A, Influence of mesh resolution on the computation of the inflow/outflow region-separating line (zero normal-velocity contour line) on a plane across the neck of aneurysm 1 at peak systole. B, Influence of mesh resolution on the computation of normal-velocity profiles along a chord across the neck of aneurysm 1 at peak systole.

      Online Figure 2: A, Inlet velocity profiles for Fourier analysis, exercise condition. Solid black line indicates 10 coefficients in the Fourier series; dashed gray line, 6 coefficients; dot-dashed black line, 3 coefficients. B, RRT. I, Ten Fourier coefficients. II, Six Fourier coefficients. III, Three Fourier coefficients.
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American Journal of Neuroradiology: 31 (2)
American Journal of Neuroradiology
Vol. 31, Issue 2
1 Feb 2010
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Cite this article
T.J. Bowker, P.N. Watton, P.E. Summers, J.V. Byrne, Y. Ventikos
Rest versus Exercise Hemodynamics for Middle Cerebral Artery Aneurysms: A Computational Study
American Journal of Neuroradiology Feb 2010, 31 (2) 317-323; DOI: 10.3174/ajnr.A1797

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Rest versus Exercise Hemodynamics for Middle Cerebral Artery Aneurysms: A Computational Study
T.J. Bowker, P.N. Watton, P.E. Summers, J.V. Byrne, Y. Ventikos
American Journal of Neuroradiology Feb 2010, 31 (2) 317-323; DOI: 10.3174/ajnr.A1797
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    Annals of Biomedical Engineering 2015 43 6
  • Approximating hemodynamics of cerebral aneurysms with steady flow simulations
    A.J. Geers, I. Larrabide, H.G. Morales, A.F. Frangi
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  • Patient-Specific Computational Hemodynamics of Intracranial Aneurysms from 3D Rotational Angiography and CT Angiography: An In Vivo Reproducibility Study
    A.J. Geers, I. Larrabide, A.G. Radaelli, H. Bogunovic, M. Kim, H.A.F. Gratama van Andel, C.B. Majoie, E. VanBavel, A.F. Frangi
    American Journal of Neuroradiology 2011 32 3
  • Modelling evolution and the evolving mechanical environment of saccular cerebral aneurysms
    P. N. Watton, A. Selimovic, N. B. Raberger, P. Huang, G. A. Holzapfel, Y. Ventikos
    Biomechanics and Modeling in Mechanobiology 2011 10 1
  • Curvature effect on hemodynamic conditions at the inner bend of the carotid siphon and its relation to aneurysm formation
    Alexandra Lauric, James Hippelheuser, Mina G. Safain, Adel M. Malek
    Journal of Biomechanics 2014 47 12
  • Wall shear stress association with rupture status in volume matched sidewall aneurysms
    Alexandra Lauric, James Hippelheuser, Alex D Cohen, Laith M Kadasi, Adel M Malek
    Journal of NeuroInterventional Surgery 2014 6 6
  • Sensitivity to outflow boundary conditions and level of geometry description for a cerebral aneurysm
    S. Ramalho, A. Moura, A.M. Gambaruto, A. Sequeira
    International Journal for Numerical Methods in Biomedical Engineering 2012 28 6-7
  • A reduced-order model for wall shear stress in abdominal aortic aneurysms by proper orthogonal decomposition
    Gary Han Chang, Clemens M. Schirmer, Yahya Modarres-Sadeghi
    Journal of Biomechanics 2017 54
  • Combined Effects of Flow Diverting Strategies and Parent Artery Curvature on Aneurysmal Hemodynamics: A CFD Study
    Jinyu Xu, Zhichen Wu, Ying Yu, Nan Lv, Shengzhang Wang, Christof Karmonik, Jian-Min Liu, Qinghai Huang, Josué Sznitman
    PLOS ONE 2015 10 9
  • Induction of aneurysmogenic high positive wall shear stress gradient by wide angle at cerebral bifurcations, independent of flow rate
    Alexandra Lauric, James E. Hippelheuser, Adel M. Malek
    Journal of Neurosurgery 2019 131 2

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