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The use of microscopy and three-dimensional visualization to evaluate the structure of microbial biofilms cultivated in the Calgary Biofilm Device

机译:使用显微镜和三维可视化评估卡尔加里生物膜设备中培养的微生物生物膜的结构

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摘要

Microbes frequently live within multicellular, solid surface-attached assemblages termed biofilms. These microbial communities have architectural features that contribute to population heterogeneity and consequently to emergent cell functions. Therefore, three-dimensional (3D) features of biofilm structure are important for understanding the physiology and ecology of these microbial systems. This paper details several protocols for scanning electron microscopy and confocal laser scanning microscopy (CLSM) of biofilms grown on polystyrene pegs in the Calgary Biofilm Device (CBD). Furthermore, a procedure is described for image processing of CLSM data stacks using amira, a virtual reality tool, to create surface and/or volume rendered 3D visualizations of biofilm microorganisms. The combination of microscopy with microbial cultivation in the CBD – an apparatus that was designed for high-throughput susceptibility testing – allows for structure-function analysis of biofilms under multivariate growth and exposure conditions>.
机译:微生物经常生活在称为生物膜的多细胞固体表面附着体中。这些微生物群落具有有助于种群异质性的结构特征,因此有助于新兴的细胞功能。因此,生物膜结构的三维(3D)特征对于理解这些微生物系统的生理学和生态学很重要。本文详细介绍了在卡尔加里生物膜设备(CBD)中在聚苯乙烯钉上生长的生物膜的扫描电子显微镜和共聚焦激光扫描显微镜(CLSM)的几种协议。此外,描述了一种使用虚拟现实工具amira 对CLSM数据堆栈进行图像处理的过程,以创建表面和/或体积渲染的生物膜微生物的3D可视化效果。显微镜和CBD中的微生物培养相结合-一种专为高通量药敏试验设计的仪器-允许在多变量生长和暴露条件下对生物膜的结构功能进行分析。>

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