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Two-dimensional cellular automaton model for mixed-culture biofilm

机译:混合培养生物膜的二维细胞自动机模型

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Structural and microbial heterogeneity occurs in almost any type of biofilm system. General approaches for the design of biofilm systems consider biofilms as homogeneous and of constant thickness. In order to improve the design of biofilms systems, models need to incorporate structural heterogeneity and the effect of inert microbial mass. We have improved a 2D biofilm model based on cellular automata (CA) and used it to simulate multidimensional biofilms with active and inert biomass including a self-organizing development. Results indicate that the presence of inert biomass within biofilm structures does not change considerably the substrate flux into the biofilm because the active biomass is located at the surface of the biofilm. Long-term simulations revealed that although the biofilm system is highly heterogeneous and the microstructure is continuously changing, the biofilm reaches a dynamic steady-state with prediction of biofilm thickness and substrate flux stabilizing on a delimited range.
机译:结构和微生物异质性几乎发生在任何类型的生物膜系统中。设计生物膜系统的一般方法将生物膜视为均匀且厚度恒定。为了改善生物膜系统的设计,模型需要结合结构异质性和惰性微生物质量的影响。我们改进了基于细胞自动机(CA)的二维生物膜模型,并使用它来模拟具有主动和惰性生物质的多维生物膜,包括自组织发展。结果表明生物膜结构内存在惰性生物质不会显着改变底物通入生物膜的通量,因为活性生物质位于生物膜的表面。长期模拟显示,尽管生物膜系统高度异质且微观结构不断变化,但生物膜达到了动态稳态,并预测了生物膜的厚度和基板通量稳定在一定范围内。

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