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首页> 外文期刊>International journal for numerical methods in biomedical engineering >Capillary networks in tumor angiogenesis: From discrete endothelial cells to phase-field averaged descriptions via isogeometric analysis
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Capillary networks in tumor angiogenesis: From discrete endothelial cells to phase-field averaged descriptions via isogeometric analysis

机译:肿瘤血管生成中的毛细血管网络:从离散的内皮细胞到通过等几何分析的相场平均描述

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摘要

Tumor angiogenesis, the growth of new capillaries from preexisting ones promoted by the starvation and hypoxia of cancerous cell, creates complex biological patterns. These patterns are captured by a hybrid model that involves high-order partial differential equations coupled with mobile, agent-based components. The continuous equations of the model rely on the phase-field method to describe the intricate interfaces between the vasculature and the host tissue. The discrete equations are posed on a cellular scale and treat tip endothelial cells as mobile agents. Here, we put the model into a coherent mathematical and algorithmic framework and introduce a numerical method based on isogeometric analysis that couples the discrete and continuous descriptions of the theory. Using our algorithms, we perform numerical simulations that show the development of the vasculature around a tumor. The new method permitted us to perform a parametric study of the model. Furthermore, we investigate different initial configurations to study the growth of the new capillaries. The simulations illustrate the accuracy and efficiency of our numerical method and provide insight into the dynamics of the governing equations as well as into the underlying physical phenomenon.
机译:肿瘤血管生成是由癌细胞的饥饿和缺氧促进的,从先前存在的新毛细血管的生长,形成了复杂的生物学模式。这些模式由包含高阶偏微分方程和可移动的基于代理的组件的混合模型捕获。该模型的连续方程依赖于相场方法来描述脉管系统和宿主组织之间的复杂界面。离散方程式在细胞尺度上提出,并将尖端内皮细胞视为移动剂。在这里,我们将模型放入一个连贯的数学和算法框架中,并引入了一种基于等几何分析的数值方法,该方法结合了离散和连续的理论描述。使用我们的算法,我们执行数值模拟,以显示肿瘤周围脉管系统的发育。新方法使我们能够对模型进行参数研究。此外,我们调查了不同的初始配置,以研究新毛细血管的生长。这些仿真说明了我们数值方法的准确性和效率,并提供了对控制方程动力学以及潜在物理现象的深入了解。

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