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Computational modelling and simulation of cancer growth and migration within a 3D heterogeneous tissue: The effects of fibre and vascular structure

机译:3D异质组织内癌症生长和迁移的计算建模和仿真:纤维和血管结构的影响

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The term cancer covers a multitude of bodily diseases, broadly categorised by having cells which do not behave normally. Since cancer cells can arise from any type of cell in the body, cancers can grow in or around any tissue or organ making the disease highly complex. Our research is focused on understanding the specific mechanisms that occur in the tumour microenvironment via mathematical and computational modeling. We present a 3D individual-based model which allows one to simulate the behaviour of, and spatio-temporal interactions between, cells, extracellular matrix fibres and blood vessels. Each agent (a single cell, for example) is fully realised within the model and interactions are primarily governed by mechanical forces between elements. However, as well as the mechanical interactions we also consider chemical interactions, for example, by coupling the code to a finite element solver to model the diffusion of oxygen from blood vessels to cells. The current state of the art of the model allows us to simulate tumour growth around an arbitrary blood-vessel network or along the striations of fibrous tissue. (C) 2019 Elsevier B.V. All rights reserved.
机译:癌症一词涵盖多种身体疾病,大致上可以归类为具有无法正常运行的细胞。由于癌细胞可以来自体内任何类型的细胞,因此癌症可以在任何组织或器官内或周围生长,从而使疾病高度复杂。我们的研究重点是通过数学和计算模型来了解肿瘤微环境中发生的具体机制。我们提出了一种基于3D个人的模型,该模型可以模拟细胞,细胞外基质纤维和血管的行为,以及它们之间的时空相互作用。模型中完全实现了每个代理(例如单个单元),并且交互作用主要由元素之间的机械力控制。但是,除了机械相互作用外,我们还考虑化学相互作用,例如,通过将代码耦合到有限元求解器上,以模拟氧气从血管到细胞的扩散。该模型的最新技术水平使我们能够模拟任意血管网络周围或纤维组织条纹周围的肿瘤生长。 (C)2019 Elsevier B.V.保留所有权利。

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