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◆ ASAIO Journal2026-02-02· Axillary artery

Extracorporeal Membrane Oxygenation Related Axillary Artery Cannulation and Aortic Hemodynamics: Insights From Computational Fluid Dynamics

Jan Coveliers, Emanuele Gasparotti, Emanuele Vignali, Paolo Meani, Marilena Mazzoli, Mariusz Kowalewski, E Huizinga, Karthik Gutta, Giulia Piccirillo, Wouter Huberts, Hamed Moradi, Michele Di Mauro, Robert J. Holtackers, Monique de Jong, Sandro Gelsomino, Domenico Paparella, Erik Körver, Arne R Doddema, Michal Kawczinski, Sam Heuts, Elham Bidar, Dorela Haxhiademi, Simona Celi, Roberto Lorusso

原始摘要(英文原文)· Original abstract
Axillary and subclavian artery cannulation for veno-arterial extracorporeal membrane oxygenation (V-A ECMO) offers clinical advantages but introduces complex flow dynamics within the aortic arch. This study employed patient-specific computational fluid dynamics (CFD) models derived from 10 computed tomography (CT)-based geometries to simulate ECMO flow via either the right axillary artery or left axillary artery access under varying levels of cardiac dysfunction. Three distinct flow behaviors were observed-descending-directed, arch-split, and retrograde aortic valve (AV)-directed patterns-depending on access site, support level, and aortic geometry. Right axillary artery access more frequently resulted in retrograde flow, particularly in type III arch configurations. In contrast, left axillary artery cannulation promoted antegrade or arch-split flow, independent of arch morphology. These findings suggest that left axillary artery access may provide more favorable antegrade flow hemodynamics in V-A ECMO, particularly when native cardiac output is impaired. Computational fluid dynamics modeling offers valuable insights to guide individualized cannulation strategies based on patient anatomy and cardiac function.
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Extracorporeal Membrane Oxygenation Related Axillary Artery Cannulation and Aortic Hemodynamics: Insights From Computational Fluid Dynamics — 科研速览 Science Skim