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血栓生长的预测:狭窄和雷诺数的影响。

Prediction of Thrombus Growth: Effect of Stenosis and Reynolds Number.

作者信息

Hosseinzadegan Hamid, Tafti Danesh K

机构信息

Virginia Polytechnic Institute and State University, Blacksburg, VA, 24061, USA.

出版信息

Cardiovasc Eng Technol. 2017 Jun;8(2):164-181. doi: 10.1007/s13239-017-0304-3. Epub 2017 May 3.

Abstract

Shear stresses play a major role in platelet-substrate interactions and thrombus formation and growth in blood flow, where under both pathological and physiological conditions platelet adhesion and accumulation occur. In this study, a shear-dependent continuum model for platelet activation, adhesion and aggregation is presented. The model was first verified under three different shear conditions and at two heparin levels. Three-dimensional simulations were then carried out to evaluate the performance of the model for severely damaged (stripped) aortas with mild and severe stenosis degrees in laminar flow regime. For these cases, linear shear-dependent functions were developed for platelet-surface and platelet-platelet adhesion rates. It was confirmed that the platelet adhesion rate is not only a function of Reynolds number (or wall shear rate) but also the stenosis severity of the vessel. General correlations for adhesion rates of platelets as functions of stenosis and Reynolds number were obtained based on these cases. Finally using the new platelet adhesion rates, the model was applied to different experimental systems and shown to agree well with measured platelet deposition.

摘要

剪切应力在血小板与底物的相互作用以及血流中血栓的形成和生长过程中起着主要作用,在病理和生理条件下,血小板都会发生黏附与聚集。在本研究中,提出了一种用于血小板激活、黏附与聚集的剪切力依赖连续介质模型。该模型首先在三种不同剪切条件和两种肝素水平下进行了验证。然后进行了三维模拟,以评估该模型在层流状态下对轻度和重度狭窄程度的严重受损(剥离)主动脉的性能。对于这些情况,针对血小板与表面及血小板与血小板的黏附速率,开发了线性剪切力依赖函数。结果证实,血小板黏附速率不仅是雷诺数(或壁面剪切速率)的函数,也是血管狭窄严重程度的函数。基于这些情况,得出了血小板黏附速率与狭窄程度和雷诺数的一般相关性。最后,使用新的血小板黏附速率,将该模型应用于不同的实验系统,并显示与测量的血小板沉积结果吻合良好。

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