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Dynamic structured illumination microscopy: focused imaging and optical sectioning for moving objects

机译:动态结构照明显微镜:移动物体的聚焦成像和光学切片

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Structured illumination microscopy (SIM) is a valuable tool for three-dimensional microscopy and has numerous applications in bioscience. Its success has been limited to static objects, though, as three sequential image acquisitions are required per final processed, focused image. To overcome this problem we have developed a multicolored grid which when used in tandem with a color camera is capable of performing SIM with just a single exposure. Images and movies demonstrating optical sectioning of three-dimensional objects are presented, and results of applying color SIM for wide-field focused imaging are compared to those of SIM. From computer modeling and analytical calculations a theoretical estimate of the maximum observable object velocity in both the lateral and axial directions is available, implying that the new method will be capable of imaging a variety of live objects. Sample images of the technique applied to lens paper and a pigeon feather are included to show both advantages and disadvantages of CSIM.
机译:结构化照明显微镜(SIM)是三维显微镜的有价值的工具,并且在生物科学中具有许多应用。然而,它的成功仅限于静态物体,因为每个最终处理,聚焦图像需要三个连续图像采集。为了克服这个问题,我们开发了一种多彩多姿的网格,当用彩色相机使用时,彩色摄像机能够用单个曝光能够执行SIM卡。提出了演示三维物体光学切片的图像和电影,并将彩色SIM应用于宽场聚焦成像的结果与SIM的结果进行比较。通过计算机建模和分析计算,可以提供横向和轴向的最大可观察物体速度的理论估计,这意味着新方法将能够成像各种实时对象。包括应用于镜片纸的技术的样本图像和鸽子羽毛以显示CSIM的两个优点和缺点。

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