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运用混合物理论对实体肿瘤生长进行建模。

Modelling solid tumour growth using the theory of mixtures.

作者信息

Byrne Helen, Preziosi Luigi

机构信息

Division of Applied Mathematics, School of Mathematical Sciences, University of Nottingham, Nottingham NG7 2RD, UK.

出版信息

Math Med Biol. 2003 Dec;20(4):341-66. doi: 10.1093/imammb/20.4.341.

Abstract

In this paper the theory of mixtures is used to develop a two-phase model of an avascular tumour, which comprises a solid, cellular, phase and a liquid phase. Mass and momentum balances which are used to derive the governing equations are supplemented by constitutive laws that distinguish the two phases and enable the stresses within the tumour to be calculated. Novel features of the model include the dependence of the cell proliferation rate on the cellular stress and the incorporation of mass exchange between the two phases. A combination of numerical and analytical techniques is used to investigate the sensitivity of equilibrium tumour configurations to changes in the model parameters. Variation of parameters such as the maximum cell proliferation rate and the rate of natural cell death yield results which are consistent with analyses performed on simpler tumour growth models and indicate that the two-phase formulation is a natural extension of the earlier models. New predictions relate to the impact of mechanical effects on the tumour's equilibrium size which decreases under increasing stress and/or external loading. In particular, as a parameter which measures the reduction in cell proliferation due to cell stress is increased a critical value is reached, above which the tumour is eliminated.

摘要

在本文中,混合物理论被用于建立一个无血管肿瘤的两相模型,该模型包含一个固体的细胞相和一个液相。用于推导控制方程的质量和动量平衡由本构定律补充,这些本构定律区分了两个相,并能够计算肿瘤内部的应力。该模型的新特性包括细胞增殖速率对细胞应力的依赖性以及两个相之间质量交换的纳入。数值和分析技术相结合,用于研究平衡肿瘤构型对模型参数变化的敏感性。诸如最大细胞增殖速率和自然细胞死亡率等参数的变化产生的结果与对更简单肿瘤生长模型进行的分析一致,并表明两相公式是早期模型的自然扩展。新的预测涉及机械效应对肿瘤平衡大小的影响,在增加的应力和/或外部负荷下肿瘤平衡大小会减小。特别是,作为衡量由于细胞应力导致细胞增殖减少的一个参数增加时,会达到一个临界值,超过该临界值肿瘤就会被消除。

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