首页> 外文期刊>Microbial Ecology: An International Journal >CMEIAS JFrad: A Digital Computing Tool to Discriminate the Fractal Geometry of Landscape Architectures and Spatial Patterns of Individual Cells in Microbial Biofilms
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CMEIAS JFrad: A Digital Computing Tool to Discriminate the Fractal Geometry of Landscape Architectures and Spatial Patterns of Individual Cells in Microbial Biofilms

机译:CMEIAS JFrad:一种数字计算工具,可区分微生物生物膜中景观结构的分形几何和单个细胞的空间格局

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Image analysis of fractal geometry can be used to gain deeper insights into complex ecophysiological patterns and processes occurring within natural microbial biofilm landscapes, including the scale-dependent heterogeneities of their spatial architecture, biomass, and cell-cell interactions, all driven by the colonization behavior of optimal spatial positioning of organisms to maximize their efficiency in utilization of allocated nutrient resources. Here, we introduce CMEIAS JFrad, a new computing technology that analyzes the fractal geometry of complex biofilm architectures in digital landscape images. The software uniquely features a data-mining opportunity based on a comprehensive collection of 11 different mathematical methods to compute fractal dimension that are implemented into a wizard design to maximize ease-of-use for semi-automatic analysis of single images or fully automatic analysis of multiple images in a batch process. As examples of application, quantitative analyses of fractal dimension were used to optimize the important variable settings of brightness threshold and minimum object size in order to discriminate the complex architecture of freshwater microbial biofilms at multiple spatial scales, and also to differentiate the spatial patterns of individual bacterial cells that influence their cooperative interactions, resource use, and apportionment in situ. Version 1.0 of JFrad is implemented into a software package containing the program files, user manual, and tutorial images that will be freely available at http://cme.msu.edu/cmeias/. This improvement in computational image informatics will strengthen microscopy-based approaches to analyze the dynamic landscape ecology of microbial biofilm populations and communities in situ at spatial resolutions that range from single cells to microcolonies.
机译:分形几何学的图像分析可用于更深入地了解自然微生物生物膜景观中发生的复杂生态生理模式和过程,包括其空间结构,生物量和细胞-细胞相互作用的比例依赖异质性,这些均受定居行为的驱动生物的最佳空间定位,以最大程度地利用其分配的营养资源。在这里,我们介绍CMEIAS JFrad,这是一种新的计算技术,可以分析数字风景图像中复杂的生物膜结构的分形几何形状。该软件具有独特的数据挖掘机会,它基于11种不同的数学方法的综合集合来计算分形维数,这些方法被应用到向导设计中,以最大程度地简化半自动分析单个图像或全自动分析图像的易用性批处理过程中生成多个图像。作为应用实例,使用分形维数的定量分析来优化亮度阈值和最小物体尺寸的重要变量设置,以区分多个空间尺度上的淡水微生物生物膜的复杂结构,并区分各个个体的空间模式。细菌细胞,影响它们的协同相互作用,资源利用和原地分配。 JFrad的1.0版已实现到一个包含程序文件,用户手册和教程图像的软件包中,这些文件可从http://cme.msu.edu/cmeias/免费获得。计算图像信息学的这种进步将加强基于显微镜的方法,以从单个细胞到微型菌落的空间分辨率对微生物生物膜种群和群落的动态景观生态进行原位分析。

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