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通过细菌群落模拟光传播及其与前向散射模式的相关性。

Modeling light propagation through bacterial colonies and its correlation with forward scattering patterns.

机构信息

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

出版信息

J Biomed Opt. 2010 Jul-Aug;15(4):045001. doi: 10.1117/1.3463003.

Abstract

Bacterial colonies play an important role in the isolation and identification of bacterial species, and plating on a petri dish is still regarded as the gold standard for confirming the cause of an outbreak situation. A bacterial colony consists of millions of densely packed individual bacteria along with matrices such as extracellular materials. When a laser is directed through a colony, complicated structures encode their characteristic signatures, which results in unique forward scattering patterns. We investigate the connection between the morphological parameters of a bacterial colony and corresponding forward scattering patterns to understand bacterial growth morphology. A colony elevation is modeled with a Gaussian profile, which is defined with two critical parameters: center thickness and diameter. Then, applying the scalar diffraction theory, we compute an amplitude modulation via light attenuation from multiple layers of bacteria while a phase modulation is computed from the colony profile. Computational results indicate that center thickness plays a critical role in the total number of diffraction rings while the magnitude of the slope of a colony determines the maximum diffraction angle. Experimental validation is performed by capturing the scattering patterns, monitoring colony diameters via phase contrast microscope, and acquiring the colony profiles via confocal displacement meter.

摘要

细菌菌落对于分离和鉴定细菌种类起着重要作用,而在培养皿上进行平板划线仍然被认为是确定暴发情况原因的金标准。细菌菌落由数百万个密集排列的单个细菌以及细胞外物质等基质组成。当激光通过菌落时,复杂的结构会编码其特征签名,从而产生独特的前向散射模式。我们研究了细菌菌落的形态参数与相应前向散射模式之间的联系,以了解细菌的生长形态。使用高斯分布来模拟菌落的隆起,该分布由两个关键参数定义:中心厚度和直径。然后,我们应用标量衍射理论,通过多层细菌的光衰减来计算振幅调制,同时通过菌落轮廓来计算相位调制。计算结果表明,中心厚度对衍射环的总数起着关键作用,而菌落斜率的大小决定了最大衍射角。通过捕获散射模式、通过相差显微镜监测菌落直径以及通过共聚焦位移计获取菌落轮廓来进行实验验证。

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