瞬时血流中止血过程的数值研究

Gábor Závodszky, G. Paál
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引用次数: 0

摘要

血栓形成是一个深入研究的领域,提出了几个悬而未决的问题。相当多的潜在过程仍然没有得到很好的理解。这种不确定性源于这样一个事实,即我们体内的血液凝固机制涉及一个相当复杂的反应级联,有很多成分。这些潜在的动态过程跨越了几个学科的领域(因为有生物力学和生化反应以及流体动力学成分)。在这项研究中,被认为是最具影响力的因素被选中,并与瞬态流场相结合,瞬态流场不仅对心脏压力波起作用,而且对由于血栓形成而改变的血管几何形状起作用。虽然自由度的数量大大减少,但该模型已经能够定性地再现体内测量止血的结果。DOI: 10.17489 / biohun / 2014/2/03
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical investigation of the hemostasis process in transient blood flow
Abstract Thrombus formation is a thoroughly researched area, posing several unanswered questions. Quite many of the underlying processes are still not well understood. This uncertainty arises from the fact that the blood clotting mechanism in our bodies involves a rather complex reaction cascade with plenty of components. These underlying dynamic processes stretch over the domains of several disciplines (as there are biomechanical and biochemical reactions as well as fluid dynamical components). In this study the factors thought to be the most infl uential were selected and coupled with the transient fl ow fi eld that reacts not only to the cardiac pressure waves but also to the changing geometry of the vessel due to the clot formation. Although the number of degrees of freedom is reduced heavily, this model is already capable of qualitatively reproducing the results of in-vivo measured hemostasis. DOI:  10.17489/biohun/2014/2/03
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