Braided stents and their impact in intracranial aneurysm treatment for distal locations: from flow diverters to low profile stents

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TitreBraided stents and their impact in intracranial aneurysm treatment for distal locations: from flow diverters to low profile stents
Type de publicationJournal Article
Year of Publication2019
AuteursIosif C, Biondi A
JournalEXPERT REVIEW OF MEDICAL DEVICES
Volume16
Pagination237-251
Date PublishedMAR 4
Type of ArticleReview
ISSN1743-4440
Mots-clésbraided stents, computational fluid dynamics, diffusion weighted imaging, Endovascular, Endovascular treatment, Flow diversion, Flow diverting stents, intracranial aneurysm
Résumé

Introduction: Intracranial aneurysms in distal locations are sometimes difficult to treat due to their branching locations and the presence of blister-like or very wide-necked aneurysms. Braided intracranial stents, including flow diverters (FDs) and low-profile braided intracranial stents (LPBSs) may provide additional advantages, due to their flow-diverting properties. Areas covered: The use of FDs in off-label, distal intracranial locations has been increasing with promising outcomes and has given rise to the LPBS, which has less flow-diverting properties, allowing for easier use in distal branching sites through 0.017MODIFIER LETTER PRIME microcatheters. These devices have shifted the interest from the aneurysm's sac filling to the regional remodeling through the effect of flow diversion. The purpose of this article is to discuss their functionality, safety, performance, and perspectives through a critical review of important publications of the last 11.5 years (January 2007 to July 2018) on the use of these devices at and beyond the circle of Willis. Expert opinion: FDs modify the regional anatomy thus careful pre-procedural consideration of the regional hemodynamic equilibrium is mandatory, as well as effective antiplatelet regimen. LPBSs provide moderate flow-diversion effect, which may be an advantage, especially for very distal and small aneurysms.

DOI10.1080/17434440.2019.1575725