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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >On the application of optical forward-scattering to bacterial identification in an automated clinical analysis perspective
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On the application of optical forward-scattering to bacterial identification in an automated clinical analysis perspective

机译:从自动临床分析的角度探讨光学前向散射在细菌鉴定中的应用

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The Optical Forward Scattering (OFS) technique can be used to identify pathogens by direct observation of bacteria colonies growing on a culture plate. The identification is based on the acquisition of scattering images from isolated colonies and their subsequent comparison with reference images acquired from known bacteria. The technique has been mainly studied for the identification of pathogens in the food-safety field. This paper focuses on the possibility of extending the applicability of the technique to the field of clinical laboratory automation. This scenario requires that the paradigm of image acquisition at fixed colony-dimension, well established in the food-safety applications, should be substituted by an acquisition at fixed incubation time. As a consequence, the scatterometer must be adjustable in real-time for adapting to the actual features of the bacterial colony. The paper describes an OFS system prototype qualified by the possibility to tune both the laser beam diameter and the acquisition camera field of view. Preliminary experiments on bacteria cultures from pathogens causing infections of the urinary tract show that the proposed approach is promising for the development of an automated bacteria identification station. The new OFS approach also involves an alternative method for building a reference image database for subsequent image analysis. (C) 2015 Elsevier B.V. All rights reserved.
机译:光学前向散射(OFS)技术可用于通过直接观察培养板上生长的细菌菌落来鉴定病原体。识别基于从分离菌落的散射图像的采集,以及它们随后与从已知细菌采集的参考图像的比较。该技术主要用于食品安全领域中病原体的鉴定。本文重点探讨了将该技术的适用性扩展到临床实验室自动化领域的可能性。这种情况要求在食品安全应用中建立良好的固定菌落尺寸下的图像采集范例,应以固定孵育时间的采集代替。因此,散射仪必须实时可调,以适应细菌菌落的实际特征。该论文描述了一种OFS系统原型,该原型通过对激光束直径和采集相机视场进行调谐的可能性进行了验证。对来自引起尿路感染的病原体的细菌培养物的初步实验表明,所提出的方法对于自动化细菌鉴定站的开发很有希望。新的OFS方法还涉及一种用于建立参考图像数据库以进行后续图像分析的替代方法。 (C)2015 Elsevier B.V.保留所有权利。

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