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首页> 外文期刊>Journal of artificial organs: The official journal of the Japanese Society for Artificial Organs >Development and validation of models for the investigation of blood clotting in idealized stenoses and cerebral aneurysms.
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Development and validation of models for the investigation of blood clotting in idealized stenoses and cerebral aneurysms.

机译:在理想的狭窄和脑动脉瘤中研究凝血模型的开发和验证。

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摘要

An in vitro model of blood clotting is presented using hypercoaguable milk as an analog for blood. Milk clot formation was studied for periods of 2, 5, 10, 20, and 30 min within an idealized stenosis geometry. Clot formation was recorded using photography, clot casting, and clot mass calculation. The distribution of clot within the fluid was seen to be in good agreement with a previous study that used a residence time model to predict areas of clot formation in thrombin solution. A numerical model was formulated within computational fluid dynamics package CFX that allowed local activation of blood clotting to be simulated. This model was applied to the analysis of an idealized cerebral aneurysm geometry. An idealized coil geometry was included within the aneurysm and clotting fluid concentration and fluid residence time were modeled using transport equations within CFX. The viscosity of the fluid was defined as a function of both residence time and clotting fluid concentration. The model was seen to produce features consistent with observations of thrombosis within cerebral aneurysms, while avoiding the unrealistic build up of clot in near-wall regions that is associated with a pure residence time model.
机译:使用高凝牛奶作为血液类似物,提出了体外凝血模型。在理想的狭窄几何形状内研究了2、5、10、20和30分钟的乳凝块形成。使用照相,凝块浇铸和凝块质量计算记录凝块形成。流体中的血块分布与先前的研究(使用停留时间模型预测凝血酶溶液中的血凝块形成区域)非常吻合。在计算流体动力学软件包CFX中制定了一个数值模型,该模型可以模拟凝血的局部激活。该模型被用于分析理想的脑动脉瘤的几何形状。理想的线圈几何结构包括在动脉瘤内,并且使用CFX内的转运方程对凝血液浓度和流体停留时间进行建模。流体的粘度定义为停留时间和凝结流体浓度的函数。可以看到该模型产生的特征与脑动脉瘤内血栓形成的观察结果相符,同时避免了与纯停留时间模型相关的近壁区域血凝块的不现实积累。

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