Authors
Franja Dugar, Hamza Adel Salim, Basel Musmar, Nimer Adeeb, Mahmoud Dibas, Davide Simonato, Yan-Lin Li, Muhammed Amir Essibayi, Oktay Algin, Sherief Ghozy, Sovann V Lay, Adrien Guenego, Leonardo Renieri, Joseph Carnevale, Guillaume Saliou, Panagiotis Mastorakos, Eimad Shotar, Markus Möhlenbruch, Michael Kral, Charlotte Chung, Mohamed M Salem, Ivan Lylyk, Paul M Foreman, Hamza Shaikh, Vedran Župančić, Muhammad U Hafeez, Joshua Catapano, Muhammad Waqas, Ahmet Gurhan Gurcay, Giyas Ayberk, Muhammet Arslan, James D Rabinov, Onur Ergun, Julian Maingard, Clemens M Schirmer, Mariangela Piano, Anna L Kühn, Caterina Michelozzi, Robert M Starke, Ameer Hassan, Mark Ogilvie, Jesse Jones, Waleed Brinjikji, Marios Psychogios, Marie T Nawka, Jens Fiehler, Thi Dan Linh Nguyen-Kim, Bryan Pukenas, Jan-Karl Burkhardt, Thien Huynh, Juan Carlos Martinez-Gutierrez, Sunil A Sheth, Diana Slawski, Rabih G Tawk, Benjamin Pulli, Boris Lubicz, Pietro Panni, Ajit S Puri, Guglielmo Pero, Eytan Raz, Christoph J Griessenauer, Hamed Asadi, Adnan Siddiqui, Elad I Levy, Neil Haranhalli, David Altschul, Andrew F Ducruet, Robert W Regenhardt, Christopher J Stapleton, Peter Kan, Vladimir Kalousek, Pedro Lylyk, Srikanth Boddu, Jared Knopman, Stavropoula I Tjoumakaris, Hugo H Cuellar-Saenz, Pascal M Jabbour, Frédéric Clarençon, Nicola Limbucci, Maurizio Fuschi, Aman B Patel, Mohammad Almohammad, Andre Kemmling, Adam A Dmytriw, Peter B Sporns, WorldWideWEB Investigators
Published in
European radiology. Sep 08, 2026. Epub Sep 08, 2026.
Abstract
Small Woven EndoBridge (WEB) devices (≤ 4.5 mm) for the intracranial aneurysm treatment are technically challenging to deploy, with limited efficacy and safety data. This study compared functional, angiographic, and safety outcomes of small WEBs with large (> 4.5 mm) and very large (> 7.5 mm) WEBs.
The WorldWideWEB consortium is a retrospective, multicenter collaboration across 30 international institutions including adults with intracranial aneurysms treated with WEB. Patients were stratified into small (≤ 4.5 mm) and large (> 4.5 mm) groups; a subanalysis compared small with very large (> 7.5 mm) devices. Primary outcome was retreatment rate. Secondary outcomes included modified Rankin Scale (mRS), angiographic outcomes periprocedurally and last follow-up (FU), and safety events (intracranial hemorrhage (ICH) and thromboembolic complications (TECs)).
Among 1473 patients, 229 (15.5%) received small WEBs. Baseline characteristics were similar. Small WEBs showed lower retreatment (4.3% vs 8.8%, p = 0.04) and higher complete occlusion (periprocedurally: 57.1% vs 36.6%, p < 0.01; FU: 76.2% vs 58.5%, p < 0.01). Median mRS was comparable (1 [1-2] vs 1 [1-2], p = 0.88), as was safety (ICH 2.6% vs 0.9%, p = 0.10; TECs 3.1% vs 3.9%, p = 0.69). Very large WEBs had higher retreatment (16.1%, p < 0.001) and lower complete occlusion (periprocedurally: 32.2%, p < 0.001; FU: 50.5%, p < 0.001), with comparable safety (ICH 0.9%, p = 0.27; TECs 4.5%, p = 0.51).
Small WEBs demonstrated lower retreatment, superior anatomic and comparable clinical outcomes compared with large devices, with similar safety profiles.
Question Do small Woven EndoBridge devices have comparable efficacy and safety to larger devices for intracranial aneurysm treatment despite technical deployment challenges? Findings Small Woven EndoBridge devices (≤ 4.5 mm) achieved lower retreatment rates and superior angiographic occlusion compared with larger devices, with similar safety and functional outcomes. Clinical relevance These findings support the use of small Woven EndoBridge devices for appropriately sized aneurysms, providing reassurance that deployment challenges do not translate into worse clinical outcomes, while superior anatomic outcomes may encourage their broader adoption in clinical practice.
PMID:
42711440
Bibliographic data and abstract were imported from PubMed on 09 Sep 2026.
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