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Size determination of Streptococcus mutans 10499 by laser light scattering.

机译:通过激光散射确定变形链球菌10499的大小。

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摘要

We have performed three different optical experiments to determine the mean size of the bacterial strain Streptococcus mutans 10449, a microorganism with dimensions comparable to the wavelength of the light used in our experiments. The three optical measurements give size values which are consistent with one another and favorably comparable to the consistency we found in identical measurements on a test system of polystyrene spheres of dimensions similar to the bacteria. Homodyne time correlation and power spectrum spectroscopy both depend on the coherence and monochromaticity of laser light for the determination of the mean diffusion coefficient of the scatterers. The Stokes-Einstein equation then relates the diffusion constant to the cell size. Differential light scattering relies for the interpretation of experimental data on the classical theoretical analysis of the angular distribution of scattered light from a scattering object. The three methods yield mean values for the radius of S. mutans 10499 of 0.324 +/- 0.006 mum, 0.0325 +/- 0.007 mum, and 0.315 +/- 0.009 mum, respectively. However, since intensity correlation spectroscopy provides a direct measure of polydispersity, it would appear to be the preferred single measurement technique for size determination.
机译:我们已经进行了三个不同的光学实验,以确定细菌菌株变形链球菌10449的平均大小,该细菌的尺寸可与我们实验中使用的光的波长相媲美。三种光学测量得出的大小值彼此一致,并且可以与我们在尺寸类似于细菌的聚苯乙烯球体测试系统上的相同测量中发现的一致性相媲美。均质时间相关性和功率谱光谱都取决于激光的相干性和单色性,以确定散射体的平均扩散系数。然后,Stokes-Einstein方程将扩散常数与单元尺寸相关联。差分光散射依赖于对来自散射物体的散射光的角度分布的经典理论分析来解释实验数据。三种方法产生的变异链球菌10499的半径的平均值分别为0.324 +/-0.006μm,0.0325 +/-0.007μm和0.315 +/-0.009μm。但是,由于强度相关光谱法可直接测量多分散性,因此似乎是确定尺寸的首选单次测量技术。

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