Damage to Polymer Coatings on Microguidewire Tips through Shaping and J-wiring for Optimizing Flow Diverter Deployment: A Scanning Electron Microscopy Study
Rasmus Holmboe Dahl, Esben Thormann, René Wugt Larsen, Goetz Benndorf
Copenhagen University Hospital Rigshospitalet Technical University of Denmark Baylor College of Medicine
内容与影响
Achieving adequate wall apposition is a crucial technical goal when deploying flow diverters to treat wide-neck cerebral aneurysms. The socalled J-wiring technique is a common method used to optimize flow diverter wall apposition. However, the frictional interaction between the shaping device and the microguidewire tip during the formation of the J-loop, as well as the interaction between the J-loop and the flow diverter during J-wiring, may potentially cause damage to the guidewire's coating. Three frequently used guidewires were tested in vitro in a silicone aneurysm model. Manual J-shaping of guidewire tips, along with the J-wiring technique (including J-shaping), caused damage to the surface coating of guidewires, as observed by scanning electron microscopy. Therefore, both mechanisms may contribute to the generation of polymer micro-fragments in patients treated with flow diversion.
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生物医学Cerebrospinal fluid and hydrocephalus
Intracranial Aneurysms: Treatment and Complications · Vascular Malformations Diagnosis and Treatment
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