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Use of an automatic cell-counting system with LED illumination for enumeration of marine bacteria

机译:使用带有LED照明的自动细胞计数系统来计数海洋细菌

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The concentration of a quatic bacteria is basic information required to evaluate the status of environments and to assess bacterial contribution to material cycles. However, the standard direct counting method using epifluorescence microscopy (EFM) is tedious and there is variation in the counts among workers. Here an automatic counting system that consists of Bioplorer (BP) and image analysis has been applied to marine bacteria. BP is composed of a light-emitting diode (LED) illuminant, an optical unit, a driving stage and a charge-coupled device camera. In combination with fluorescent labeling and simplified membrane filtration, bacteria are enumerated auto matically. The reproducibility, sensitivity and accuracy of the system were tested for natural marine bacteria, in comparison with EFM and flow cytometry (FCM). The counts obtained by BP showed good correlation with those obtained by EFM and FCM methods. The counts were significantly higher in inshore and oceanic samples, indicating high sensitivity with low background noise. Considering its reproducibility, objectivity, ease of use and compact size, BP can be used as a routine tool for counting aquatic bacteria in substitution for EFM or FCM.
机译:水生细菌的浓度是评估环境状况和评估细菌对物质循环的贡献所需的基本信息。但是,使用落射荧光显微镜(EFM)的标准直接计数方法很繁琐,并且工人之间的计数存在差异。在这里,由Bioplorer(BP)和图像分析组成的自动计数系统已应用于海洋细菌。 BP由发光二极管(LED)照明器,光学单元,驱动台和电荷耦合器件照相机组成。结合荧光标记和简化的膜过滤,可以自动枚举细菌。与EFM和流式细胞术(FCM)相比,测试了该系统对天然海洋细菌的重现性,灵敏度和准确性。通过BP获得的计数与通过EFM和FCM方法获得的计数显示出良好的相关性。近岸和海洋样品中的计数明显更高,表明灵敏度高且背景噪声低。考虑到其可重复性,客观性,易用性和紧凑的尺寸,BP可以用作计数水生细菌的常规工具,以代替EFM或FCM。

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