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首页> 外文期刊>Journal of Mathematical Biology >Simulation of glioblastoma growth using a 3D multispecies tumor model with mass effect
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Simulation of glioblastoma growth using a 3D multispecies tumor model with mass effect

机译:用3D多层肿瘤模型进行肿块效应模拟胶质母细胞瘤生长

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摘要

In this article, we present a multispecies reaction-advection-diffusion partial differential equation coupled with linear elasticity for modeling tumor growth. The model aims to capture the phenomenological features of glioblastoma multiforme observed in magnetic resonance imaging (MRI) scans. These include enhancing and necrotic tumor structures, brain edema and the so-called mass effect, a term-of-art that refers to the deformation of brain tissue due to the presence of the tumor. The multispecies model accounts for proliferating, invasive and necrotic tumor cells as well as a simple model for nutrition consumption and tumor-induced brain edema. The coupling of the model with linear elasticity equations with variable coefficients allows us to capture the mechanical deformations due to the tumor growth on surrounding tissues. We present the overall formulation along with a novel operator-splitting scheme with components that include linearly-implicit preconditioned elliptic solvers, and a semi-Lagrangian method for advection. We also present results showing simulated MRI images which highlight the capability of our method to capture the overall structure of glioblastomas in MRIs.
机译:在本文中,我们介绍了一种与用于建模肿瘤生长的线性弹性耦合的多数反应 - 平面扩散部分微分方程。该模型旨在捕获在磁共振成像(MRI)扫描中观察到的胶质母细胞瘤多形态的现象学特征。这些包括增强和坏死的肿瘤结构,脑水肿和所谓的质量效应,是指由于肿瘤的存在而导致脑组织的变形。多数模型占增殖,侵入性和坏死性肿瘤细胞以及一种简单的营养消耗和肿瘤诱导的脑水肿模型。具有可变系数的线性弹性方程的模型的耦合允许我们由于围绕组织上的肿瘤生长而捕获机械变形。我们介绍了整体配方以及一种具有包括线性隐含的预处理椭圆求解器的组件的新型操作员分裂方案,以及用于平行的半拉格朗日方法。我们还存在显示模拟MRI图像的结果,该模拟MRI图像突出了我们在MRIS中捕获胶质母细胞瘤的整体结构的能力。

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