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A biophysical model of tumor invasion

机译:肿瘤侵袭的生物物理模型

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摘要

Three-dimensional finite element computations of a cancer invasion model with nonlinear density-dependent diffusion and haptotactic sensitivity function are presented. The nonlinear model includes three key variables, namely the cancer cell density, the extra cellular matrix (ECM) density and the matrix degrading enzymes (MDE) concentration. In order to investigate the effects of tumor growth and invasion on a realistic geometry, the interactions between the cancer cells and the host tissue are incorporated into the model. The convergence study and the validation are first performed for the proposed numerical scheme. Then the effects of nonlinear diffusion and ECM-dependent haptotaxis on tumor growth and invasion in three-dimensional geometries are presented. Finally, several numerical simulations are performed with different combinations of nonlinear diffusion and haptotaxis functions to get an insight into the tumor invasion on a realistic (breast) geometry. The proposed computational model can be used to predict the location and shape of the tumor in realistic geometries at a particular instance. (C) 2016 Elsevier B.V. All rights reserved.
机译:提出了具有非线性密度依赖扩散和触觉敏感性函数的癌症侵袭模型的三维有限元计算。非线性模型包括三个关键变量,即癌细胞密度,细胞外基质(ECM)密度和基质降解酶(MDE)浓度。为了研究肿瘤生长和侵袭对真实几何学的影响,将癌细胞与宿主组织之间的相互作用纳入模型。首先对所提出的数值方案进行了收敛性研究和验证。然后提出了非线性扩散和ECM依赖性触觉对三维几何形状中肿瘤生长和侵袭的影响。最后,使用非线性扩散和触觉函数的不同组合执行了几个数值模拟,以洞察现实的(乳房)几何形状上的肿瘤浸润情况。所提出的计算模型可用于在特定情况下预测现实几何形状中肿瘤的位置和形状。 (C)2016 Elsevier B.V.保留所有权利。

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