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Hemodynamic effects of blood clots trapped by an inferior vena cava filter

机译:下腔静脉捕获血凝块的血液动力学效应

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The alteration of blood flow around an OPTEASE inferior vena cava filter with one or two blood clots attached was investigated by means of computational fluid dynamics. We used a patient-specific vein wall geometry, and we generated different clot models with shapes adapted to the filter and vein wall geometries. A total of eight geometries, with one or two clots and a total clot volume of 0.5 or 1 cm(3), were considered. A non-Newtonian model for blood viscosity was adopted and the possible development of turbulence was accounted for by means of a three-equation model. Two blood flow rates were considered for each case, representative for rest and exercise conditions. In exercise conditions, flow unsteadiness and even turbulence was detected in some cases. Pressure and wall shear stress (WSS) distributions were modified in all cases. Clots attached to the filter downstream basket considerably increased averaged WSS values by up to almost 50%. In all the cases a flow recirculation region appeared downstream of the clot. The degree of flow stagnation in these regions, an indicator of propensity to thrombogenesis, was estimated in terms of mean residence times and mean blood viscosity. High levels of flow stagnation were detected in rest conditions in the wake of those clots that were placed upstream from the filter. Our results suggest that one downstream placed big clot, showing a higher tendency to induce flow instabilities and turbulence, might be more harmful than two small clots placed in tandem.
机译:通过计算流体动力学研究了附着的一个或两个血凝块的倒放距离腔静脉过滤器周围的血流的改变。我们使用了患者特定的静脉壁几何形状,我们产生了不同的凝块模型,形状适合于过滤器和静脉壁几何形状。考虑总共八个几何形状,一个或两个凝块和0.5或1cm(3)的总凝块体积。采用了一种用于血液粘度的非牛顿模型,通过三方程模型占湍流的可能发展。每种情况考虑两种血流率,代表休息和运动条件。在运动条件下,在某些情况下检测到流动不稳定且甚至湍流。在所有情况下,改变了压力和壁剪应力(WSS)分布。附加到过滤器下游篮子的凝块显着增加了平均值,平均值高达近50%。在所有情况下,流动再循环区域出现在凝块的下游。这些区域中的流动停滞程度,在平均停留时间和平均血液粘度方面估计了血栓发生的指标。在静止条件下检测高水平的流动停滞,在从过滤器上游的那些凝块之后。我们的研究结果表明,一个下游放置了大凝块,显示出诱导流动不稳定性和湍流的趋势更高,可能比串联的两个小凝块更有害。

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