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MATHEMATICAL BASED MODEL OF STREPTOMYCES GROWTH ON WOODEN MATERIAL

机译:基于数学的链霉菌在木质材料上生长的模型

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A mathematical model for the growth of filamentous microorganisms has been tested by comparison of model predictions with data on growth of Streptomyces on building wood material. Growth of Streptomyces resulted in movement of filament classes to increasing the size, while shear forces produced mycelial fragments which entered the smallest size class, from which they grew to form further colonies on building surface materials. Quantification of Streptomyces growth in the model is based on the mould index used in the experiments for visual inspection. The model consists of differential equations describing the growth rate of the mould index in different fuctuating conditions including the effect of exposure time, temperature, relative humidity and dry periods. Temperature and humidity conditions favourable for mould growth are presented as a mathematical model. The modified model generated predictions which agreed closely with experimental data on biomass concentration, distribution, number of colonies and colonies radius during their growth on building wood material, thereby supporting the assumptions on which the model was based. The numerical values of the parameters included in the model are fitted for pine and spruce sapwood, but the functional form of the model can be reasoned to be valid also for other wood-based materials.
机译:通过将模型预测与链霉菌在建筑木材材料上生长的数据进行比较,测试了丝状微生物生长的数学模型。链霉菌的生长导致细丝类的运动增加尺寸,而剪切力产生的菌丝体碎片进入最小尺寸的类,从中菌丝碎片生长成在建筑表面材料上进一步形成菌落。模型中链霉菌生长的定量是基于用于目视检查的实验中使用的霉菌指数。该模型由微分方程组成,这些微分方程描述了在不同起伏条件下霉菌指数的增长率,包括暴露时间,温度,相对湿度和干燥时间的影响。数学模型给出了有利于霉菌生长的温度和湿度条件。修改后的模型产生的预测与在木质建筑材料上生长期间生物量浓度,分布,菌落数和菌落半径的实验数据非常吻合,从而支持了该模型所基于的假设。该模型中包含的参数的数值适用于松木和云杉边材,但可以认为该模型的功能形式对其他木质材料也有效。

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