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Optical elastic scattering for early label-free identification of clinical pathogens

机译:光学弹性散射用于早期无标签鉴定临床病原体

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We report here on the ability of elastic light scattering in discriminating Gram+, Gram- and yeasts at an early stage of growth (6h). Our technique is non-invasive, low cost and does require neither skilled operators nor reagents. Therefore it is compatible with automation. It is based on the analysis of the scattering pattern (scatterogram) generated by a bacterial microcolony growing on agar, when placed in the path of a laser beam. Measurements are directly performed on closed Petri dishes. The characteristic features of a given scatterogram are first computed by projecting the pattern onto the Zernike orthogonal basis. Then the obtained data are compared to a database so that machine learning can yield identification result. A 10-fold cross-validation was performed on a database over 8 species (15 strains, 1906 scatterograms), at 6h of incubation. It yielded a 94% correct classification rate between Gram+, Gram- and yeasts. Results can be improved by using a more relevant function basis for projections, such as Fourier-Bessel functions. A fully integrated instrument has been installed at the Grenoble hospital's laboratory of bacteriology and a validation campaign has been started for the early screening of SA and MRSA (Staphylococcus aureus, methicillin-resistant S. aureus) carriers. Up to now, all the published studies about elastic scattering were performed in a forward mode, which is restricted to transparent media. However, in clinical diagnostics, most of media are opaque, such as blood-supplemented agar. That is why we propose a novel scheme capable of collecting back-scattered light which provides comparable results.
机译:我们在这里报告了弹性光散射在区分早期(6h)的Gram +,Gram-和酵母中的能力。我们的技术是非侵入性的,低成本的,并且不需要熟练的操作员或试剂。因此,它与自动化兼容。它基于对放置在激光束路径中的琼脂上生长的细菌小菌落产生的散射图(散射图)的分析。直接在封闭的培养皿上进行测量。首先通过将图案投影到Zernike正交基础上来计算给定散射图的特征。然后将获得的数据与数据库进行比较,以便机器学习可以得出识别结果。在孵育6小时后,对8种(15个菌株,1906个散点图)的数据库进行了10倍交叉验证。它在Gram +,Gram-和酵母之间产生94%的正确分类率。通过对投影使用更相关的函数基础(例如傅里叶-贝塞尔函数),可以改善结果。格勒诺布尔医院的细菌学实验室已安装了完全集成的仪器,并且已开始开展验证活动,以早期筛查SA和MRSA(金黄色葡萄球菌,耐甲氧西林金黄色葡萄球菌)载体。到目前为止,所有关于弹性散射的已公开研究都是以正向模式进行的,该模式仅限于透明介质。但是,在临床诊断中,大多数培养基是不透明的,例如充血的琼脂。因此,我们提出了一种新颖的方案,该方案能够收集反向散射光,并提供可比的结果。

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