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Laser-induced speckle scatter patterns in Bacillus colonies

机译:激光诱导的芽孢杆菌菌落散斑图

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摘要

Label-free bacterial colony phenotyping technology called BARDOT (Bacterial Rapid Detection using Optical scattering Technology) provided successful classification of several different bacteria at the genus, species, and serovar level. Recent experiments with colonies of Bacillus species provided strikingly different characteristics of elastic light scatter (ELS) patterns, which were comprised of random speckles compared to other bacteria, which are dominated by concentric rings and spokes. Since this laser-based optical sensor interrogates the whole volume of the colony, 3-D information of micro- and macro-structures are all encoded in the far-field scatter patterns. Here, we present a theoretical model explaining the underlying mechanism of the speckle formation by the colonies from Bacillus species. Except for Bacillus polymyxa, all Bacillus spp. produced random bright spots on the imaging plane, which presumably dependent on the cellular and molecular organization and content within the colony. Our scatter model-based analysis revealed that colony spread resulting in variable surface roughness can modify the wavefront of the scatter field. As the center diameter of the Bacillus spp. colony grew from 500 to 900 μm, average speckles area decreased two-fold and the number of small speckles increased seven-fold. In conclusion, as Bacillus colony grows, the average speckle size in the scatter pattern decreases and the number of smaller speckle increases due to the swarming growth characteristics of bacteria within the colony.
机译:称为BARDOT(使用光学散射技术的细菌快速检测)的无标记细菌菌落表型技术,在属,种和血清型水平上成功分类了几种不同的细菌。最近的芽孢杆菌属菌落实验提供了与众不同的弹性光散射(ELS)模式特征,与其他细菌相比,弹性光散射由随机斑点组成,而其他细菌则以同心环和辐条为主。由于此基于激光的光学传感器会询问菌落的整个体积,因此微观和宏观结构的3D信息均以远场散射图样编码。在这里,我们提出了一个理论模型,解释了芽孢杆菌属菌落形成斑点的潜在机理。除多粘芽孢杆菌外,所有芽孢杆菌属。在成像平面上产生随机的亮点,大概取决于细胞和分子的组织以及菌落内的含量。我们基于散射模型的分析表明,导致不同表面粗糙度的菌落扩散会改变散射场的波前。为芽孢杆菌的中心直径。菌落从500微米增加到900微米,平均斑点面积减少了两倍,小斑点数量增加了七倍。总而言之,随着芽孢杆菌菌落的生长,由于菌落在菌落中群聚,细菌在散布图上的平均斑点大小减小,散斑数量增加。

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