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Effects of inter-organism interactions in biofouling on microtopographic surfaces

机译:微生物在微地形表面污垢中的相互作用

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摘要

An extended model of the surface energetic attachment (SEA) model is introduced to study the fouling of marine organisms on microtopographic surfaces, taking into account the excluded volume interaction and the attraction between the organisms. It is shown that the excluded volume interaction leads to changes in the site-typed attachment probabilities which increase with the average spore density on the surface. As a result of these changes, the spore density map is flattened under very high density fouling. The attractive interaction on the other hand leads to aggregation of spores and the average aggregate size increased with the strength of attraction. The model can be mapped to a specific experiment to determine the attachment energy parameters. In contrast to various prior empirical approaches, the extended SEA model is rigorous from the statistical mechanics viewpoint, thus it provides a reliable tool for studying complex attachment behaviors of microorganisms on topographic surfaces.
机译:引入了扩展的表面能附连模型(SEA),以研究海洋生物在微地形表面上的结垢情况,同时考虑了排除的体积相互作用和生物之间的吸引力。结果表明,排除的体积相互作用导致位点型附着概率的变化,其随表面平均孢子密度的增加而增加。这些变化的结果是,在非常高的密度结垢情况下,孢子密度图变得平坦。另一方面,有吸引力的相互作用导致孢子聚集,并且平均聚集体尺寸随吸引强度而增加。可以将模型映射到特定实验,以确定附着能参数。与各种现有的经验方法相反,从统计力学的观点来看,扩展的SEA模型是严格的,因此它为研究微生物在地形表面的复杂附着行为提供了可靠的工具。

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