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首页> 外文期刊>International journal of computational biology and drug design >Colony size optimisation in colony-based laser imaging for microbial source tracking
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Colony size optimisation in colony-based laser imaging for microbial source tracking

机译:基于菌落的激光成像中菌落大小优化,用于微生物来源跟踪

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The colony-based laser scatter imaging provides a convincing solution to microbial source tracking. The optical scattering patterns of bacterial colonies are tightly correlated to the corresponding growth patterns. This relationship is manifested as the development of optical scattering patterns with the increment of colony size. An investigation was conducted into this relationship and the optimal range of colony size for improving the accuracy of microbial source tracking technique. All the bacterial samples from five host species were cultivated under the same conditions. The optical scattering patterns were recorded for the average colony diameter from 0.1 mm to 1.5 mm, using a bench top laser imaging system. Gabor wavelet was utilised to encode image signatures. Fuzzy-C-means was employed to cluster the colony patterns from the same host species. The experimental results demonstrate that the optimal range of the colony diameters is 0.8-1.0 mm. The corresponding identification rate of microbial source tracking is >80%.
机译:基于菌落的激光散射成像为微生物源跟踪提供了令人信服的解决方案。细菌菌落的光散射模式与相应的生长模式紧密相关。这种关系表现为随着菌落尺寸的增加而产生的光散射图案的发展。对这种关系和菌落大小的最佳范围进行了调查,以提高微生物来源跟踪技术的准确性。在相同条件下培养了来自五个宿主物种的所有细菌样品。使用台式激光成像系统记录平均散射菌落直径为0.1 mm至1.5 mm的光学散射图。利用Gabor小波对图像签名进行编码。 Fuzzy-C-均值用于聚类来自同一寄主物种的菌落模式。实验结果表明,菌落直径的最佳范围是0.8-1.0mm。微生物源跟踪的相应识别率> 80%。

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