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Effect of Fluid Friction on Interstitial Fluid Flow Coupled with Blood Flow through Solid Tumor Microvascular Network

机译:固体摩擦微血管网络对流体摩擦对间质液流动与血液流动的影响

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摘要

A solid tumor is investigated as porous media for fluid flow simulation. Most of the studies use Darcy model for porous media. In Darcy model, the fluid friction is neglected and a few simplified assumptions are implemented. In this study, the effect of these assumptions is studied by considering Brinkman model. A multiscale mathematical method which calculates fluid flow to a solid tumor is used in this study to investigate how neglecting fluid friction affects the solid tumor simulation. The mathematical method involves processes such as blood flow through vessels and solute and fluid diffusion, convective transport in extracellular matrix, and extravasation from blood vessels. The sprouting angiogenesis model is used for generating capillary network and then fluid flow governing equations are implemented to calculate blood flow through the tumor-induced capillary network. Finally, the two models of porous media are used for modeling fluid flow in normal and tumor tissues in three different shapes of tumors. Simulations of interstitial fluid transport in a solid tumor demonstrate that the simplifications used in Darcy model affect the interstitial velocity and Brinkman model predicts a lower value for interstitial velocity than the values that Darcy model predicts.
机译:研究实体瘤作为用于流体流动模拟的多孔介质。大多数研究将Darcy模型用于多孔介质。在达西模型中,流体摩擦被忽略,并实现了一些简化的假设。在本研究中,通过考虑Brinkman模型来研究这些假设的效果。本研究中使用一种多尺度数学方法来计算流向实体瘤的流体,以研究忽略流体摩擦如何影响实体瘤的模拟。数学方法涉及过程,例如通过血管的血流以及溶质和流体的扩散,在细胞外基质中的对流运输以及从血管的渗出。使用发芽血管生成模型来生成毛细血管网络,然后执行流体流量控制方程式,以计算通过肿瘤诱发的毛细血管网络的血液流量。最后,使用两种多孔介质模型对三种不同形状的肿瘤在正常组织和肿瘤组织中的流体流动进行建模。实体瘤中组织间液运输的模拟表明,Darcy模型中使用的简化会影响组织间速度,Brinkman模型预测组织间速度的值要比Darcy模型所预测的值低。

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