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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Direct numerical simulation of cellular-scale blood flow in microvascular networks
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Direct numerical simulation of cellular-scale blood flow in microvascular networks

机译:APS-流体动力学APS分部第70届年会-事件-微血管网络中细胞尺度血流的直接数值模拟

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A direct numerical simulation method is developed to study cellular-scale blood flow in physiologically realistic microvascular networks that are constructed in silico following published in vivo images and data, and are comprised of bifurcating, merging, and winding vessels. The model resolves large deformation of individual red blood cells (RBC) flowing in such complex networks. The vascular walls and deformable interfaces of the RBCs are modeled using the immersed-boundary methods. Time-averaged hemodynamic quantities obtained from the simulations agree quite well with published in vivo data. Our simulations reveal that in several vessels the flow rates and pressure drops could be negatively correlated. The flow resistance and hematocrit are also found to be negatively correlated in some vessels. These observations suggest a deviation from the classical Poiseuille’s law in such vessels. The cells are observed to frequently jam at vascular bifurcations resulting in reductions in hematocrit and flow rate in the daughter and mother vessels. We find that RBC jamming results in several orders of magnitude increase in hemodynamic resistance, and thus provides an additional mechanism of increased in vivo blood viscosity as compared to that determined in vitro.
机译:开发了一种直接数值模拟方法来研究生理学现实的微血管网络中的细胞规模血流,该网络是根据已发表的体内图像和数据以计算机方式构建的,由分叉,合并和缠绕血管组成。该模型解决了在这种复杂网络中流动的单个红细胞(RBC)的大变形。使用浸入边界方法对红细胞的血管壁和可变形界面进行建模。从模拟获得的时间平均血液动力学量与体内发表的数据非常吻合。我们的模拟表明,在数个容器中,流速和压降可能呈负相关。在某些血管中,流动阻力和血细胞比容也呈负相关。这些观察结果表明此类船只与经典的泊瓦耶定律有偏差。观察到这些细胞经常在血管分叉处阻塞,导致子血管和母血管中的血细胞比容和流速降低。我们发现,RBC干扰导致血液动力学阻力增加几个数量级,因此与体外测定的相比,它提供了体内血液粘度增加的另一种机制。

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