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Possible benefits of catheters with lateral holes in coronary thrombus aspiration: A computational study for different clot viscosities and vacuum pressures

机译:带侧孔导管在冠状动脉血栓抽吸术中的可能益处:不同凝块粘度和真空压力的计算研究

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摘要

According to a number of clinical studies, coronary aspiration catheters are useful tools to remove a thrombus (blood clot) blocking a coronary artery. However, these thrombectomy devices may fail to remove the blood clot entirely. Few studies have been devoted to a systematic analysis of factors affecting clot aspiration. The geometric characteristics of the aspiration catheter, the physical properties of the thrombus, and the applied vacuum pressure are crucial parameters. In this study, the aspiration of a blood clot blocking a coronary bifurcation is computationally simulated. The clot is modeled as a highly viscous fluid, and a two-phase (blood and clot) problem is solved. The effects of geometric variations in the tip of the coronary catheter, including lateral hole size and location, are investigated considering different aspiration pressures and clot viscosities. A Bird-Carreau model is adopted for blood viscosity, while a power law model is used to describe the clot rheology. Computational results for blood clot aspiration show that the presence of holes in the lateral part of the tip of the catheter can be beneficial depending on clot viscosity, hole features, and applied aspiration pressure. In general, the holes are beneficial when the clot viscosity is low, while aspiration catheters without any extra lateral holes exhibit better performance for higher clot viscosity. However, when higher aspiration pressures are applied, the catheters tend to behave relatively similarly in removing clots with various viscosities, reducing the role of the clot viscosity.
机译:根据许多临床研究,冠状动脉抽吸导管是去除阻塞冠状动脉的血栓(血凝块)的有用工具。但是,这些血栓切除装置可能无法完全清除血块。很少有研究致力于系统分析影响血块抽吸的因素。抽吸导管的几何特征,血栓的物理特性和施加的真空压力是关键参数。在这项研究中,阻塞冠状动脉分叉的血凝块的抽吸被计算机模拟。将凝块建模为高粘性流体,并解决了两相(血液和凝块)问题。考虑到不同的抽吸压力和凝块粘度,研究了冠状动脉导管尖端几何变化的影响,包括侧孔的大小和位置。血液粘度采用Bird-Carreau模型,而幂定律模型用于描述凝块流变性。血液凝块抽吸的计算结果表明,取决于凝块粘度,孔特征和施加的抽吸压力,在导管尖端的侧面部分中存在孔可能是有益的。通常,当凝块粘度低时,孔是有益的,而没有任何额外侧孔的抽吸导管对于更高的凝块粘度表现出更好的性能。然而,当施加较高的抽吸压力时,导管倾向于在去除具有各种粘度的凝块方面表现出相对相似的行为,从而降低了凝块粘度的作用。

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