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Modelling cell motility and chemotaxis with evolving surface finite elements

机译:用不断发展的表面有限元模拟细胞运动性和趋化性

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摘要

We present a mathematical and a computational framework for the modelling of cell motility. The cell membrane is represented by an evolving surface, with the movement of the cell determined by the interaction of various forces that act normal to the surface. We consider external forces such as those that may arise owing to inhomogeneities in the medium and a pressure that constrains the enclosed volume, as well as internal forces that arise from the reaction of the cells' surface to stretching and bending. We also consider a protrusive force associated with a reaction–diffusion system (RDS) posed on the cell membrane, with cell polarization modelled by this surface RDS. The computational method is based on an evolving surface finite-element method. The general method can account for the large deformations that arise in cell motility and allows the simulation of cell migration in three dimensions. We illustrate applications of the proposed modelling framework and numerical method by reporting on numerical simulations of a model for eukaryotic chemotaxis and a model for the persistent movement of keratocytes in two and three space dimensions. Movies of the simulated cells can be obtained from .
机译:我们提出了用于细胞运动建模的数学和计算框架。细胞膜以不断演变的表面为代表,细胞的运动由垂直于表面作用的各种力的相互作用决定。我们考虑外力,例如由于培养基中的不均匀性和限制封闭体积的压力而可能产生的外力,以及由于细胞表面对拉伸和弯曲的反应而产生的内力。我们还考虑了与细胞膜上的反应扩散系统(RDS)相关的突出力,并通过该表面RDS对细胞极化进行了建模。该计算方法基于演化表面有限元方法。通用方法可以解决细胞运动中产生的大变形,并可以在三个维度上模拟细胞迁移。我们通过报告真核趋化性模型和角质形成细胞在两个和三个空间维度上持续运动的模型的数值模拟,来说明所提出的建模框架和数值方法的应用。可以从中获得模拟单元的影片。

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