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Research ArticleNeurointervention

Effects of Flow-Diverting Device Oversizing on Hemodynamics Alteration in Cerebral Aneurysms

F. Mut and J.R. Cebral
American Journal of Neuroradiology November 2012, 33 (10) 2010-2016; DOI: https://doi.org/10.3174/ajnr.A3080
F. Mut
aFrom the Center for Computational Fluid Dynamics, College of Science, George Mason University, Fairfax, Virginia.
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J.R. Cebral
aFrom the Center for Computational Fluid Dynamics, College of Science, George Mason University, Fairfax, Virginia.
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American Journal of Neuroradiology: 33 (10)
American Journal of Neuroradiology
Vol. 33, Issue 10
1 Nov 2012
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F. Mut, J.R. Cebral
Effects of Flow-Diverting Device Oversizing on Hemodynamics Alteration in Cerebral Aneurysms
American Journal of Neuroradiology Nov 2012, 33 (10) 2010-2016; DOI: 10.3174/ajnr.A3080

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Effects of Flow-Diverting Device Oversizing on Hemodynamics Alteration in Cerebral Aneurysms
F. Mut, J.R. Cebral
American Journal of Neuroradiology Nov 2012, 33 (10) 2010-2016; DOI: 10.3174/ajnr.A3080
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  • Intraluminal Flow Diverter Design Primer for Neurointerventionalists
  • Evaluation of Outcome Prediction of Flow Diversion for Intracranial Aneurysms
  • Comparison of Pipeline Embolization Device Sizing Based on Conventional 2D Measurements and Virtual Simulation Using the Sim&Size Software: An Agreement Study
  • Compacting a Single Flow Diverter versus Overlapping Flow Diverters for Intracranial Aneurysms: A Computational Study
  • Virtual-versus-Real Implantation of Flow Diverters: Clinical Potential and Influence of Vascular Geometry
  • Relationship between aneurysm occlusion and flow diverting device oversizing in a rabbit model
  • Hemodynamic analysis of fast and slow aneurysm occlusions by flow diversion in rabbits
  • Association between hemodynamic conditions and occlusion times after flow diversion in cerebral aneurysms
  • Enhanced Aneurysmal Flow Diversion Using a Dynamic Push-Pull Technique: An Experimental and Modeling Study
  • Effect of Structural Remodeling (Retraction and Recoil) of the Pipeline Embolization Device on Aneurysm Occlusion Rate
  • Analysis of Hemodynamics and Aneurysm Occlusion after Flow-Diverting Treatment in Rabbit Models
  • Building Multidevice Pipeline Constructs of Favorable Metal Coverage: A Practical Guide
  • Variable Porosity of the Pipeline Embolization Device in Straight and Curved Vessels: A Guide for Optimal Deployment Strategy
  • Cerebral Aneurysms Treated with Flow-Diverting Stents: Computational Models with Intravascular Blood Flow Measurements
  • The Varying Porosity of Braided Self-Expanding Stents and Flow Diverters: An Experimental Study
  • Crossref (72)
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This article has been cited by the following articles in journals that are participating in Crossref Cited-by Linking.

  • Variable Porosity of the Pipeline Embolization Device in Straight and Curved Vessels: A Guide for Optimal Deployment Strategy
    M. Shapiro, E. Raz, T. Becske, P. K. Nelson
    American Journal of Neuroradiology 2014 35 4
  • Association between hemodynamic conditions and occlusion times after flow diversion in cerebral aneurysms
    Fernando Mut, Marcelo Raschi, Esteban Scrivano, Carlos Bleise, Jorge Chudyk, Rosana Ceratto, Pedro Lylyk, Juan R Cebral
    Journal of NeuroInterventional Surgery 2015 7 4
  • The Varying Porosity of Braided Self-Expanding Stents and Flow Diverters: An Experimental Study
    A. Makoyeva, F. Bing, T.E. Darsaut, I. Salazkin, J. Raymond
    American Journal of Neuroradiology 2013 34 3
  • Cerebral Aneurysms Treated with Flow-Diverting Stents: Computational Models with Intravascular Blood Flow Measurements
    M.R. Levitt, P.M. McGah, A. Aliseda, P.D. Mourad, J.D. Nerva, S.S. Vaidya, R.P. Morton, B.V. Ghodke, L.J. Kim
    American Journal of Neuroradiology 2014 35 1
  • Analysis of Hemodynamics and Aneurysm Occlusion after Flow-Diverting Treatment in Rabbit Models
    J. R. Cebral, F. Mut, M. Raschi, S. Hodis, Y.- H. Ding, B. J. Erickson, R. Kadirvel, D. F. Kallmes
    American Journal of Neuroradiology 2014 35 8
  • Building Multidevice Pipeline Constructs of Favorable Metal Coverage: A Practical Guide
    M. Shapiro, E. Raz, T. Becske, P. K. Nelson
    American Journal of Neuroradiology 2014 35 8
  • Endothelialization of over- and undersized flow-diverter stents at covered vessel side branches: An in vivo and in silico study
    Philipp Berg, Christina Iosif, Sebastien Ponsonnard, Catherine Yardin, Gábor Janiga, Charbel Mounayer
    Journal of Biomechanics 2016 49 1
  • Enhanced Aneurysmal Flow Diversion Using a Dynamic Push-Pull Technique: An Experimental and Modeling Study
    D. Ma, J. Xiang, H. Choi, T. M. Dumont, S. K. Natarajan, A. H. Siddiqui, H. Meng
    American Journal of Neuroradiology 2014 35 9
  • Stents and flow diverters in the treatment of aneurysms: device deformation in vivo may alter porosity and impact efficacy
    Fabrice Bing, Tim E. Darsaut, Igor Salazkin, Alina Makoyeva, Guylaine Gevry, Jean Raymond
    Neuroradiology 2013 55 1
  • Compacting a Single Flow Diverter versus Overlapping Flow Diverters for Intracranial Aneurysms: A Computational Study
    R.J. Damiano, V.M. Tutino, N. Paliwal, D. Ma, J.M. Davies, A.H. Siddiqui, H. Meng
    American Journal of Neuroradiology 2017 38 3

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