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Research ArticleNeurointervention

The Varying Porosity of Braided Self-Expanding Stents and Flow Diverters: An Experimental Study

A. Makoyeva, F. Bing, T.E. Darsaut, I. Salazkin and J. Raymond
American Journal of Neuroradiology March 2013, 34 (3) 596-602; DOI: https://doi.org/10.3174/ajnr.A3234
A. Makoyeva
aFrom the Department of Radiology (A.M., T.E.D., I.S., J.R.), Centre Hospitalier de l'Université de Montréal, Notre-Dame Hospital, Montreal, Quebec, Canada
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F. Bing
bService de Radiologie A (F.B.), Centre Hospitalier de l'Université Strasbourg, Strasbourg 1, Hôpital Civil, Strasbourg, France
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T.E. Darsaut
aFrom the Department of Radiology (A.M., T.E.D., I.S., J.R.), Centre Hospitalier de l'Université de Montréal, Notre-Dame Hospital, Montreal, Quebec, Canada
cDivision of Neurosurgery, Department of Surgery (T.E.D.), University of Alberta Hospital, Mackenzie Health Sciences Centre, Edmonton, Alberta, Canada.
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I. Salazkin
aFrom the Department of Radiology (A.M., T.E.D., I.S., J.R.), Centre Hospitalier de l'Université de Montréal, Notre-Dame Hospital, Montreal, Quebec, Canada
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J. Raymond
aFrom the Department of Radiology (A.M., T.E.D., I.S., J.R.), Centre Hospitalier de l'Université de Montréal, Notre-Dame Hospital, Montreal, Quebec, Canada
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American Journal of Neuroradiology: 34 (3)
American Journal of Neuroradiology
Vol. 34, Issue 3
1 Mar 2013
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Cite this article
A. Makoyeva, F. Bing, T.E. Darsaut, I. Salazkin, J. Raymond
The Varying Porosity of Braided Self-Expanding Stents and Flow Diverters: An Experimental Study
American Journal of Neuroradiology Mar 2013, 34 (3) 596-602; DOI: 10.3174/ajnr.A3234

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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 Mar 2013, 34 (3) 596-602; DOI: 10.3174/ajnr.A3234
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  • Flow-Diversion Effect of LEO Stents: Aneurysm Occlusion and Flow Remodeling of Covered Side Branches and Perforators
  • Flow Diversion with Low-Profile Braided Stents for the Treatment of Very Small or Uncoilable Intracranial Aneurysms at or Distal to the Circle of Willis
  • Compacting a Single Flow Diverter versus Overlapping Flow Diverters for Intracranial Aneurysms: A Computational Study
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  • Pipeline endovascular device for the treatment of intracranial aneurysms at the level of the circle of Willis and beyond: multicenter experience
  • Preliminary experience with the Pipeline Flex Embolization Device: technical note
  • Flow diverters: inter and intra-rater reliability of porosity and pore density measurements
  • Visual Outcomes with Flow-Diverter Stents Covering the Ophthalmic Artery for Treatment of Internal Carotid Artery Aneurysms
  • The Success of Flow Diversion in Large and Giant Sidewall Aneurysms May Depend on the Size of the Defect in the Parent Artery
  • Enhanced Aneurysmal Flow Diversion Using a Dynamic Push-Pull Technique: An Experimental and Modeling Study
  • 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
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More in this TOC Section

  • Cavernous dural AVF treated by transfacial route
  • A Retrospective Study in Tentorial DAVFs
  • Proximal Protection Devices for Carotid Stenting
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