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Development of a real-time system of monitoring bacterial colonygrowth and registering the forward-scattering pattern

机译:开发监测细菌菌落生长并注册前向散射模式的实时系统

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Early detection and classification of pathogenic bacteria species is crucial to food safety. The previous BARDOT (BActeria Rapid Detection by using Optical light scattering Technology) system is capable of classifying the bacterial colonies of around 1-1.5mm diameter within 24-36 hours of incubation. However, in order to further reduce the detection time and synchronize the detection operation with the bacterial cultivation, a micro-incubator is developed that not only grows bacteria at 37°C but also enables forward scatterometry. This new design feature enables us to continuously characterize the light scattering patterns of the bacterial colonies throughout their growing stages. Some experimental results from this new system are demonstrated and compared with the images obtained from phase contrast microscopy and a confocal displacement meter to show the possibility of earlier identification of bacteria species. Moreover, this paper also explains the updated optical and mechanical modules for the beam waist control to accommodate the smaller bacteria colony detection.
机译:致病菌种的早期检测和分类是对食品安全至关重要。先前BARDOT(细菌快速检测通过使用光学光散射技术)系统能够24-36小时温育的内周围1-1.5mm直径的细菌菌落进行分类的。然而,为了进一步减少检测时间和与细菌培养同步检测操作,微培养箱开发,不仅在37℃下生长的细菌,而且使向前散射。这种新的设计功能,让我们在他们的成长阶段,不断表征细菌菌落的光散射图案。从这个新系统的一些实验结果证明,并与相衬显微镜和共聚焦位移计显示的菌种的鉴定较早的可能性获得的图像进行比较。此外,本文还说明了束腰控制,以适应较小的菌落检测更新的光学和机械模块。

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