Related Experiment Video
Updated: Feb 25, 2026

Novel and Innovative Hybrid Technique for Type A Aortic Dissection
Published on: March 28, 2025
Novel Occlusion-Reopening Technique for Perigraft Seromas in Arteriovenous Grafts: A Multicenter Case Report
Wenshen Pu1, Yong Xu2, Jiali Liu3
1Department of Nephrology, Baoshan People's Hospital, Baoshan, China.
Abstract:
Arteriovenous grafts remain crucial for hemodialysis access despite the risk of perigraft seromas (PSs)-sterile fluid collections causing graft compression, thrombosis, and dysfunction. Current treatments (surgical drainage and compression therapy) show high recurrence rates. We describe a novel occlusion-reopening technique for refractory PSs in 5 patients receiving hemodialysis (mean age, 62.6 years) with expanded polytetrafluoroethylene AVGs. All seromas developed at arterial anastomoses (1-43 days after placement) and recurred after conventional therapies. Our protocol involved (1) intentional graft occlusion via manual compression to induce thrombosis, (2) complete surgical seroma evacuation with pseudocapsule preservation, and (3) percutaneous transluminal angioplasty using 6-mm balloons for graft reopening (see Fig 1 for details). Technical success was achieved in all cases, with immediate restoration of thrill/bruit and mean post-percutaneous transluminal angioplasty flow of 1320 mL/min. No seroma recurrences occurred during follow-up, and all AVGs remained functional. The occlusion-reopening technique addresses PS pathophysiology by eliminating fluid production through temporary thrombosis while preserving graft architecture. This approach demonstrates 100% efficacy in our series for recurrent PSs unresponsive to standard therapies, offering a reproducible solution with durable outcomes.
More Related Videos
15:21Training a Sophisticated Microsurgical Technique: Interposition of External Jugular Vein Graft in the Common Carotid Artery in Rats
Published on: November 11, 2012
20:33A Case Series of Successful Abdominal Closure Utilizing a Novel Technique Combining a Mechanical Closure System with a Biologic Xenograft that Accelerates Wound Healing
Published on: July 4, 2019