Effect of flow rate ratio and positioning on a lighthouse tip ECMO return cannula.

Francesco Fiusco, Julien Lemétayer, Lars Mikael Broman, Lisa Prahl Wittberg

Journal: Biomechanics and modeling in mechanobiology 2023;22(6):1891-1899

PMID: 37454305

Abstract

Extracorporeal membrane oxygenation is a life-saving support therapy in the case of cardiopulmonary refractory failure. Its use is associated to complications due to the presence of artificial surfaces and supraphysiological stress conditions. Thus, knowledge of the fluid structures associated to each component can give insight into sources of blood damage. In this study, an experimentally validated numerical study of a conventional lighthouse tip cannula in return configuration was carried out to characterize the flow structures using water or a Newtonian blood analog with different flow rate ratios and cannula positioning and their influence on hemolysis. The results showed that strong shear layers developed where the jets from the side holes met the co-flow. Stationary backflow regions at the vessel wall were also present downstream of the cannula. In the tilted case, the recirculation was much more pronounced on the wide side and almost absent on the narrow side. Small vortical backflow structures developed at the side holes which behaved like obstacles to the co-flow, creating pairs of counter-rotating vortices, which induced locally higher risk of hemolysis. However, global hemolysis index did not show significant deviations. Across the examined flow rate ratios, the holes on the narrow side consistently reinfused a larger fraction of fluid. A radial force developed in the tilted case in a direction so as to recenter the cannula in the vessel.

© 2023. The Author(s).

Address: FLOW, Department of Engineering Mechanics, KTH Royal Institute of Technology, Stockholm, Sweden. [email protected].; FLOW, Department of Engineering Mechanics, KTH Royal Institute of Technology, Stockholm, Sweden.; ECMO Centre Karolinska, Pediatric Perioperative Medicine and Intensive Care, Karolinska University Hospital, Stockholm, Sweden.; Department of Physiology and Pharmacology, Karolinska Institutet, Stockholm, Sweden.
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