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Dynamic Light Scattering Microscopy. A Novel Optical Technique to Image Submicroscopic Motions. II: Experimental Applications

机译:动态光散射显微镜。一种新颖的光学技术可对亚微观运动进行成像。二:实验应用

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摘要

An experimental verification of an optical microscope technique to create spatial map images of dynamically scattered light fluctuation decay rates is presented. The dynamic light scattering microscopy technique is demonstrated on polystyrene beads and living macrophage cells. With a slow progressive scan charge-coupled device camera employed in a streak-like mode, rapid intensity fluctuations with timescales the order of milliseconds can be recorded from these samples. From such streak images, the autocorrelation function of these fluctuations can be computed at each location in the sample. The characteristic decay times of the autocorrelation functions report the rates of motion of scattering centers. These rates show reasonable agreement to theoretically expected values for known samples with good signaloise ratio. The rates can be used to construct an image-like spatial map of the rapidity of submicroscopic motions of scattering centers.
机译:提出了一种光学显微镜技术的实验验证,该技术可创建动态散射的光波动衰减率的空间地图图像。动态光散射显微镜技术已在聚苯乙烯珠和活的巨噬细胞上得到证明。使用以条纹状模式使用的慢速逐行扫描电荷耦合设备相机,可以从这些样本中记录毫秒级量级的快速强度波动。根据这些条纹图像,可以在样本中的每个位置计算这些涨落的自相关函数。自相关函数的特征衰减时间报告了散射中心的运动速率。这些速率与具有良好信噪比的已知样本的理论预期值显示出合理的一致性。该速率可用于构建散射中心的亚微观运动的速度的图像状空间图。

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