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Generalized spectral light scatter models of diverse bacterial colony morphologies

机译:不同细菌菌落形态的广义光谱光散射模型

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An optical forward-scatter model was generalized to encompass the diverse nature of bacterial colony morphologies and the spectral information. According to the model, the colony shape and the wavelength of incident light significantly affect the characteristics of a forward elastic-light-scattering pattern. To study the relationship between the colony morphology and the scattering pattern, three-dimensional colony models were generated in various morphologies. The propagation of light passing through the colony model was then simulated. In validation of the theoretical modeling, the scattering patterns of three bacterial genera, Staphylococcus, Exiguobacterium and Bacillus, which grow into colonies having convex, crateriform and flat elevations, respectively, were qualitatively compared to the simulated scattering patterns. The strong correlations observed between simulated and experimental patterns validated the scatter model. In addition, spectral effect on the scattering pattern was studied using the scatter model, and experimentally investigated using Staphylococcus, whose colony has circular form and convex elevation. Both simulation and experiment showed that changes in wavelength affected the overall pattern size and the number of rings.
机译:光学正向散射模型是推广的,以包括细菌菌落形态的不同性质和光谱信息。根据该模型,入射光的菌落形状和波长显着影响前向弹性光散射图案的特性。为了研究菌落形态与散射模式之间的关系,在各种形态中产生三维殖民地模型。然后模拟通过菌落模型的光的传播。在理论建模的验证中,分别与模拟散射图案相比,三种细菌属,葡萄球菌,葡萄球菌和芽孢菌分别生长成具有凸,火坑,扁平升高的菌落的菌落。模拟和实验模式之间观察到的强相关性验证了散射模型。此外,使用散射模型研究了对散射模式的光谱效应,并使用葡萄球菌进行实验研究,其殖民币具有圆形形式和凸起升高。仿真和实验都显示出波长的变化影响了整体图案尺寸和环数。

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