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首页> 外文期刊>Thrombosis Research: An International Journal on Vascular Obstruction, Hemorrhage and Hemostasis >An overview of mathematical modeling of thrombus formation under flow
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An overview of mathematical modeling of thrombus formation under flow

机译:流动下血栓形成的数学模型概述

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摘要

In the last decade numerous mathematical models have been formulated to investigate specific components of the clotting system such as the tissue factor pathway of coagulation. Sophisticated, multiscale models were developed to better understand the interplay of flow-mediated transport, platelet deposition, and coagulation kinetics, and their overall effect on thrombus formation. Promotion of thrombus growth is partially due to the well-known pro-coagulant roles of platelets like the surface-dependent coagulation reactions. Iterations of theoretical model predictions and experiment have helped to elucidate anticoagulant roles of platelets as well. These roles include paving over the subendothelium and hindering transport of substrates to and from enzyme complexes which can strongly affect thrombus formation. In this review, we give a brief overview of theoretical models of thrombus formation under flow and some of the experiments that motivated them and were motivated by them.
机译:在过去的十年中,已经建立了许多数学模型来研究凝血系统的特定组成部分,例如凝血的组织因子途径。开发了复杂的多尺度模型,以更好地了解流动介导的运输,血小板沉积和凝血动力学之间的相互作用,以及它们对血栓形成的总体影响。血栓生长的促进部分归因于血小板的众所周知的促凝血作用,例如表面依赖性凝血反应。理论模型的预测和实验的迭代也有助于阐明血小板的抗凝作用。这些作用包括铺在内皮下层上,并阻碍底物与酶复合物之间的运输,这可能会严重影响血栓的形成。在这篇综述中,我们简要概述了血流形成的理论模型,以及一些激发它们并受其激发的实验。

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