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正常组织和恶性组织微血管中流体与溶质传输的混合理论模型。I. 理论

A mixture theory model of fluid and solute transport in the microvasculature of normal and malignant tissues. I. Theory.

作者信息

Schuff M M, Gore J P, Nauman E A

机构信息

School of Mechanical Engineering, Purdue University, 585 Purdue Mall, West Lafayette, IN 47907-2088, USA.

出版信息

J Math Biol. 2013 May;66(6):1179-207. doi: 10.1007/s00285-012-0528-7. Epub 2012 Apr 13.

Abstract

In order to better understand the mechanisms governing transport of drugs, nanoparticle-based treatments, and therapeutic biomolecules, and the role of the various physiological parameters, a number of mathematical models have previously been proposed. The limitations of the existing transport models indicate the need for a comprehensive model that includes transport in the vessel lumen, the vessel wall, and the interstitial space and considers the effects of the solute concentration on fluid flow. In this study, a general model to describe the transient distribution of fluid and multiple solutes at the microvascular level was developed using mixture theory. The model captures the experimentally observed dependence of the hydraulic permeability coefficient of the capillary wall on the concentration of solutes present in the capillary wall and the surrounding tissue. Additionally, the model demonstrates that transport phenomena across the capillary wall and in the interstitium are related to the solute concentration as well as the hydrostatic pressure. The model is used in a companion paper to examine fluid and solute transport for the simplified case of an axisymmetric geometry with no solid deformation or interconversion of mass.

摘要

为了更好地理解药物、基于纳米颗粒的治疗方法和治疗性生物分子的运输机制,以及各种生理参数的作用,此前已经提出了一些数学模型。现有运输模型的局限性表明需要一个综合模型,该模型包括血管腔、血管壁和间质空间中的运输,并考虑溶质浓度对流体流动的影响。在本研究中,使用混合理论开发了一个描述微血管水平上流体和多种溶质瞬态分布的通用模型。该模型捕捉了实验观察到的毛细血管壁水力渗透系数对毛细血管壁和周围组织中溶质浓度的依赖性。此外,该模型表明,跨毛细血管壁和间质中的运输现象与溶质浓度以及静水压力有关。在一篇配套论文中使用该模型来研究轴对称几何形状的简化情况(无固体变形或质量互变)下的流体和溶质运输。

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