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Multicolour digital image analysis system for identification of bacteria and concurrent assessment of their respiratory activity

机译:用于识别细菌并同时评估其呼吸活动的多色数字图像分析系统

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Aims: To develop a rapid and simple multicolour digital image analysis system for simultaneous identification of bacteria and assessment of their metabolic activity.Methods and Results: We developed an image analyser capable of distinguishing triple-stained bacterial cells. Bacteria were stained with a nucleic acid stain, a fluorescent antibody and a fluorescent metabolic indicator for enumeration, species identification and assessment of metabolic activity. This multicolour image analyser was used to simultaneously identify Escherichia coli O157:H7 in milk samples and assess their respiratory activity. The images of the triple-stained bacteria were captured using a combination of blue light and u.v. excitation and an epifluorescence microscope and were processed by our image analyser. We found a good correlation between the counts of actively respiring (r = 0.93) and total (r = 0.94) E. coli O157:H7 measured by digital image analysis and visual observation.Conclusion: The multicolour digital image analysis system described here was able to quantify active pathogenic micro-organisms within 2 h.Significance and Impact of the Study: This multicolour image analysis allows the rapid and simultaneous quantification of bacteria, identification of species and assessment of metabolic activity.
机译:目的:开发一种快速简单的彩色数字图像分析系统,用于同时鉴定细菌和评估其代谢活性。方法和结果:我们开发了一种能够区分三重染色细菌细胞的图像分析仪。用核酸染色剂,荧光抗体和荧光代谢指示剂对细菌进行染色,以进行计数,物种鉴定和代谢活性评估。该彩色图像分析仪用于同时识别牛奶样品中的大肠杆菌O157:H7并评估其呼吸活动。使用蓝光和紫外光的组合捕获三重染色细菌的图像。激发和落射荧光显微镜,并由我们的图像分析仪处理。我们发现通过数字图像分析和目测观察到的主动呼吸计数(r = 0.93)与总呼吸计数(r = 0.94)大肠杆菌O157:H7之间具有良好的相关性。结论:此处描述的多色数字图像分析系统能够在2 h内对活性病原微生物进行定量。研究的意义和影响:这种多色图像分析可以快速且同时地定量细菌,鉴定物种和评估代谢活性。

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