首页> 外文会议>Optical technologies in biophysics and medicine XIV; and Laser physics and photonics XIV >QUANTITATIVE SPECTRAL LIGHT SCATTERING POLARIMENTRY FOR MONITORING FRACTAL GROWTH PATTERN OF BACILLUS THURINGIENSIS BACTERIAL COLONIES
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QUANTITATIVE SPECTRAL LIGHT SCATTERING POLARIMENTRY FOR MONITORING FRACTAL GROWTH PATTERN OF BACILLUS THURINGIENSIS BACTERIAL COLONIES

机译:苏云金芽孢杆菌菌落分形生长模式的定量光谱光散射法

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It is of considerable current interest to develop various methods which help to understand and quantify the cellular association in growing bacterial colonies and is also important in terms of detection and identification of a bacterial species. A novel approach is used here to probe the morphological structural changes occurring during the growth of the bacterial colony of Bacillus thuringiensis under different environmental conditions (in normal nutrient agar, in presence of glucose - acting as additional nutrient and additional 3mM arsenate as additional toxic material). This approach combines the quantitative Mueller matrix polarimetry to extract intrinsic polarization properties and inverse analysis of the polarization preserving part of the light scattering spectra to determine the fractal parameter H (Hurst exponent) using Born approximation. Interesting differences are observed in the intrinsic polarization parameters and also in the Hurst exponent, which is a measurement of the fractality of a pattern formed by bacteria while growing as a colony. These findings are further confirmed with optical microscopic studies of the same sample and the results indicate a very strong and distinct dependence on the environmental conditions during growth, which can be exploited to quantify different bacterial species and their growth patterns.
机译:当前,开发各种有助于理解和定量生长中的细菌菌落中的细胞缔合的方法具有相当大的兴趣,并且在检测和鉴定细菌种类方面也很重要。本文使用一种新方法来探测苏云金芽孢杆菌在不同环境条件下细菌菌落生长过程中发生的形态结构变化(在正常的营养琼脂中,在葡萄糖的存在下-作为额外的营养物和额外的3mM砷酸盐作为其他有毒物质) )。这种方法结合了定量Mueller矩阵偏振法以提取固有偏振特性,并对光散射光谱的偏振保持部分进行反分析,从而使用Born逼近法确定分形参数H(赫斯特指数)。在本征极化参数和赫斯特指数中观察到有趣的差异,后者是细菌在作为菌落生长时形成的图案的分形性的度量。这些发现在同一样品的光学显微镜研究中得到了进一步证实,结果表明生长过程中对环境条件的依赖性非常强且明显,可以用来量化不同细菌种类及其生长方式。

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