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利用标量衍射理论对细菌菌落前向散射进行生物物理建模。

Biophysical modeling of forward scattering from bacterial colonies using scalar diffraction theory.

作者信息

Bae Euiwon, Banada Padmapriya P, Huff Karleigh, Bhunia Arun K, Robinson J Paul, Hirleman E Daniel

机构信息

School of Mechanical Engineering, Purdue University, West Lafayette, Indiana 47906, USA.

出版信息

Appl Opt. 2007 Jun 10;46(17):3639-48. doi: 10.1364/ao.46.003639.

Abstract

A model for forward scattering from bacterial colonies is presented. The colonies of interest consist of approximately 10(12) - 10(13) individual bacteria densely packed in a configuration several millimeters in diameter and approximately 0.1-0.2 mm in thickness. The model is based on scalar diffraction theory and accounts for amplitude and phase modulation created by three macroscopic properties of the colonies: phase modulation due to the surface topography, phase modulation due to the radial structure observed from some strains and species, and diffraction from the outline of the colony. Phase contrast and confocal microscopy were performed to provide quantitative information on the shape and internal structure of the colonies. The computed results showed excellent agreement with the experimental scattering data for three different Listeria species: Listeria innocua, Listeria ivanovii, and Listeria monocytogenes. The results provide a physical explanation for the unique and distinctive scattering signatures produced by colonies of closely related Listeria species and support the efficacy of forward scattering for rapid detection and classification of pathogens without tagging.

摘要

本文提出了一种用于细菌菌落前向散射的模型。感兴趣的菌落由大约10¹² - 10¹³个单个细菌密集堆积而成,呈直径约几毫米、厚度约0.1 - 0.2毫米的结构。该模型基于标量衍射理论,考虑了菌落的三种宏观特性所产生的幅度和相位调制:由于表面形貌引起的相位调制、从某些菌株和物种观察到的径向结构引起的相位调制以及菌落轮廓的衍射。进行了相衬显微镜和共聚焦显微镜观察,以提供关于菌落形状和内部结构的定量信息。计算结果与三种不同李斯特菌属物种(无害李斯特菌、伊氏李斯特菌和单核细胞增生李斯特菌)的实验散射数据显示出极好的一致性。这些结果为密切相关的李斯特菌属物种菌落产生的独特散射特征提供了物理解释,并支持了前向散射在无需标记的情况下对病原体进行快速检测和分类的有效性。

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