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Novel Perspectives on the Characterization of Species-Dependent Optical Signatures of Bacterial Colonies by Digital Holography

机译:数字全息术表征细菌菌落的物种依赖性光学标记的新颖观点

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摘要

The use of light diffraction for the microbiological diagnosis of bacterial colonies was a significant breakthrough with widespread implications for the food industry and clinical practice. We previously confirmed that optical sensors for bacterial colony light diffraction can be used for bacterial identification. This paper is focused on the novel perspectives of this method based on digital in-line holography (DIH), which is able to reconstruct the amplitude and phase properties of examined objects, as well as the amplitude and phase patterns of the optical field scattered/diffracted by the bacterial colony in any chosen observation plane behind the object from single digital hologram. Analysis of the amplitude and phase patterns inside a colony revealed its unique optical properties, which are associated with the internal structure and geometry of the bacterial colony. Moreover, on a computational level, it is possible to select the desired scattered/diffracted pattern within the entire observation volume that exhibits the largest amount of unique, differentiating bacterial features. These properties distinguish this method from the already proposed sensing techniques based on light diffraction/scattering of bacterial colonies. The reconstructed diffraction patterns have a similar spatial distribution as the recorded Fresnel patterns, previously applied for bacterial identification with over 98% accuracy, but they are characterized by both intensity and phase distributions. Our results using digital holography provide new optical discriminators of bacterial species revealed in one single step in form of new optical signatures of bacterial colonies: digital holograms, reconstructed amplitude and phase patterns, as well as diffraction patterns from all observation space, which exhibit species-dependent features. To the best of our knowledge, this is the first report on bacterial colony analysis via digital holography and our study represents an innovative approach to the subject.
机译:将光衍射用于细菌菌落的微生物学诊断是一项重大突破,对食品工业和临床实践具有广泛意义。我们先前确认,用于细菌菌落光衍射的光学传感器可用于细菌鉴定。本文重点介绍了基于数字在线全息(DIH)的该方法的新颖观点,该方法能够重建被检物体的振幅和相位特性,以及散射/散射的光场的振幅和相位模式。细菌菌落在单个数字全息图中从物体后面的任何选定观察平面衍射。分析菌落内部的振幅和相位图谱显示其独特的光学性质,这与细菌菌落的内部结构和几何形状有关。而且,在计算水平上,有可能在整个观察区内选择所需的散射/衍射图样,该图样表现出最大量的独特,差异化细菌特征。这些特性使该方法与已经提出的基于细菌菌落的光衍射/散射的传感技术区分开。重建的衍射图样具有与记录的菲涅耳图样相似的空间分布,该菲涅耳图样以前已以超过98%的准确度应用于细菌鉴定,但是它们的特征在于强度和相位分布。我们使用数字全息术得到的结果以一步一步揭示了细菌物种的新光学判别器,以细菌菌落的新光学特征形式揭示了这些特征:数字全息图,重构的幅度和相位图以及来自所有观察空间的衍射图,这些图显示了以下物种:相关功能。据我们所知,这是通过数字全息技术进行细菌菌落分析的第一份报告,我们的研究代表了该主题的一种创新方法。

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