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首页> 外文期刊>Image analysis and stereology >QUANTIFICATION OF BIOFILMS IN MULTI-SPECTRAL DIGITAL1 VOLUMES FROM CONFOCAL LASER-SCANNING MICROSCOPES
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QUANTIFICATION OF BIOFILMS IN MULTI-SPECTRAL DIGITAL1 VOLUMES FROM CONFOCAL LASER-SCANNING MICROSCOPES

机译:共聚焦激光扫描显微镜对多光谱数字1卷中生物膜的定量

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Populations of bacteria in sludge flocs and biofilm marked by fluorescence marked with fluorescent probes are digitised with a confocal laser scanning microscope. These data are used to analyse the microbial community structure, to obtain information on the localisation of specific bacterial groups and to examine gene expression. This information is urgently required for an in-depth understanding of the function and, more generally, the microbial ecology of biofilms. Methods derived from quantitative image analysis are applied to digitised data from confocal laser scanning microscopes to obtain quantitative descriptions of volumetric, topological (and topographical) properties of different compartments of the components under research. In addition to free-moving flocs, also biofilms attached to a substratum in an experimental environment are analysed. Growth form as well as interaction of components are quantitatively described. Classical measurements of volume and intensity (shape, distribution) and distance dependent interaction measurements using methods from mathematical morphology are performed. Mainly image (volume) processing methods are outlined. Segmented volumes are globally and individually (in terms of 3Dconnected components) measured and used for distance mapping transform as well as for estimation of geodesic distances from the substrate. All transformations are applied on the 3D data set. Resulting distance distributions are quantified and related to information on the identity and activity of the probe-identified bacteria.
机译:用共聚焦激光扫描显微镜将污泥絮状物和生物膜中的细菌种群(用荧光探针标记的荧光标记)数字化。这些数据用于分析微生物群落结构,获得有关特定细菌群定位的信息并检查基因表达。迫切需要此信息,以深入了解生物膜的功能以及更广泛的微生物生态。将从定量图像分析中得出的方法应用于共聚焦激光扫描显微镜的数字化数据,以获得对所研究组件不同隔室的体积,拓扑(和地形)特性的定量描述。除了可自由移动的絮凝物外,还分析了在实验环境中附着于基质的生物膜。定量描述了生长形式以及组分之间的相互作用。使用数学形态学方法对体积和强度(形状,分布)进行经典的测量,并进行距离相关的相互作用测量。主要概述了图像(体积)处理方法。分割后的体积被全局和单独地测量(以3D连接的组件表示),并用于距离映射转换以及到基板的测地距离估计。所有转换均应用于3D数据集。量化所得的距离分布,并将其与有关探针鉴定细菌的身份和活性的信息相关。

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