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用于解释运动细菌准弹性光散射光谱的旋转-平移模型。

Rotational-translational models for interpretation of quasi-elastic light scattering spectra of motile bacteria.

作者信息

Holz M, Chen S H

出版信息

Appl Opt. 1978 Oct 15;17(20):3197-204. doi: 10.1364/AO.17.003197.

Abstract

Quasi-elastic light scattering is a powerful tool for studying dynamic behavior of motile bacteria in liquid suspension. Previously we proposed an ellipsoidal structural model to account for the straight line motion of E. coli bacteria. We have in this article extended our structural model to include rotational motions superimposed on the translational motion of the center of mass. A general formulation is given by which the light scattering spectrum of any rotational-translational motion of a structured particle can be calculated. Specific calculations are carried out for three types of rotational motions, namely, planar wiggling motion, pure rotation, and helical rotation, around the average direction of motion. Further narrowing of the scattered field correlation function as compared with that of the straight line motion is observed in all three cases. We finally compare the helical rotation model with our previous experimental results for E. coli and find a substantial improvement over that of the straight line motion model.

摘要

准弹性光散射是研究液体悬浮液中运动细菌动态行为的有力工具。此前我们提出了一个椭球结构模型来解释大肠杆菌的直线运动。在本文中,我们扩展了我们的结构模型,以包括叠加在质心平移运动上的旋转运动。给出了一个通用公式,通过该公式可以计算结构化粒子任何旋转-平移运动的光散射光谱。针对围绕平均运动方向的三种旋转运动类型,即平面摆动运动、纯旋转和螺旋旋转,进行了具体计算。在所有三种情况下,都观察到与直线运动相比,散射场相关函数进一步变窄。我们最终将螺旋旋转模型与我们之前关于大肠杆菌的实验结果进行比较,发现与直线运动模型相比有了显著改进。

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