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PROGRESS ON MULTISCALE REPRESENTATION OF CARDIAC VALVE MORPHOGENESIS

机译:心脏瓣膜形成的多尺度表达研究进展

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Executable biology at various levels of spatial scale is becoming increasingly important in order to understand the complexity exhibited in living systems. This paper describes how a multiscale systems approach can be used to integrate these models of behaviour to provide an insight into the development of cardiac valves. In particular, simulations of epithelial to mesenchymal transition using a Cellular Potts model are shown to demonstrate cell adhesion and imitate faithfully the in vivo process. As a consequence, this work also shows the importance of measurement of surface energy of adjacent cells and its effect on systemic behaviour.
机译:为了理解生命系统中表现出的复杂性,各种空间尺度上的可执行生物学变得越来越重要。本文介绍了如何使用多尺度系统方法来整合这些行为模型,以深入了解心脏瓣膜的发展。尤其是,显示了使用Cellular Potts模型进行的上皮到间充质转化的模拟证明了细胞粘附并忠实地模仿了体内过程。因此,这项工作还表明了测量相邻细胞表面能及其对全身行为的影响的重要性。

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