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一种用于静脉-动脉体外膜肺氧合的新型引流插管的研发与评估

Development and Evaluation of a Novel Drainage Cannula for Venoarterial Extracorporeal Membrane Oxygenation.

作者信息

Wickramarachchi Avishka, Shirejini Saeedreza Zeibi, Vatani Ashkan, Rana Akshita, Khamooshi Mehrdad, Šeman Michael, Liao Sam, Jap Edwina, Nguyen Tuan H, Alt Karen, Burrell Aidan, Pellegrino Vincent A, Kaye David M, Hagemeyer Christoph E, Gregory Shaun D

机构信息

From the Cardio-Respiratory Engineering and Technology Laboratory, Mechanical and Aerospace Engineering, Monash University, Clayton, Victoria, Australia.

Australian Centre for Blood Diseases, Monash University, Melbourne, Victoria, Australia.

出版信息

ASAIO J. 2025 Mar 1;71(3):235-244. doi: 10.1097/MAT.0000000000002360. Epub 2024 Dec 19.

Abstract

A critical factor in thrombus formation during venoarterial extracorporeal membrane oxygenation (VA ECMO) is prothrombotic flow dynamics generated by the drainage cannula's design. This study aimed to create and evaluate a novel drainage cannula design which optimized blood flow dynamics to reduce thrombus formation. Computational fluid dynamics (CFD) was used to iteratively vary drainage cannula design parameters such as inner wall shape and side hole shape. The final novel design was then placed in an ex vivo blood circulation loop, and compared against a Bio-Medicus cannula (n = 6, each). Clot volume, hemolysis, and other parameters were measured to assess thrombus formation markers. The novel design consisted of a parabolic inner wall profile with closely spaced side holes angled at 30º to align with flow. When tested in the ex vivo loop, the novel design resulted in lower instances (two vs . four) and volumes of clot in the cannula (360.5 ± 254.8 vs . 1258.0 ± 651.7 µl) when compared to the Bio-Medicus cannula. Results from tests assessing hemolysis, platelet activation, and other thrombotic markers revealed a noninferior relationship between the novel and Bio-Medicus designs. Future work will explore the clinical applicability of these findings.

摘要

在静脉-动脉体外膜肺氧合(VA ECMO)期间血栓形成的一个关键因素是引流插管设计所产生的促血栓形成血流动力学。本研究旨在创建并评估一种新型引流插管设计,该设计可优化血流动力学以减少血栓形成。采用计算流体动力学(CFD)反复改变引流插管的设计参数,如内壁形状和侧孔形状。然后将最终的新型设计置于体外血液循环回路中,并与Bio-Medicus插管(每组n = 6)进行比较。测量凝块体积、溶血及其他参数以评估血栓形成标志物。新型设计包括一个抛物线形内壁轮廓,其紧密排列的侧孔与血流方向呈30°角。在体外回路中进行测试时,与Bio-Medicus插管相比,新型设计导致插管内凝块出现的次数(2次对4次)和体积更低(360.5±254.8微升对1258.0±651.7微升)。评估溶血、血小板活化及其他血栓形成标志物的测试结果显示,新型设计与Bio-Medicus设计之间存在非劣效关系。未来的工作将探索这些发现的临床适用性。

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