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Reconstruction of Axial Tomographic High Resolution Data from Confocal Fluorescence Microscopy: A Method for Improving 3D FISH Images

机译:共聚焦荧光显微镜重建轴向断层扫描高分辨率数据:一种改善3D FISH图像的方法

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Fluorescent confocal laser scanning microscopy allows an improved imaging of microscopic objects in three dimensions. However, the resolution along the axial direction is three times worse than the resolution in lateral directions. A method to overcome this axial limitation is tilting the object under the microscope, in a way that the direction of the optical axis points into different directions relative to the sample. A new technique for a simultaneous reconstruction from a number of such axial tomographic confocal data sets was developed and used for high resolution reconstruction of 3D‐data both from experimental and virtual microscopic data sets. The reconstructed images have a highly improved 3D resolution, which is comparable to the lateral resolution of a single deconvolved data set. Axial tomographic imaging in combination with simultaneous data reconstruction also opens the possibility for a more precise quantification of 3D data. The color images of this publication can be accessed from http://www.esacp.org/acp/2000/20‐1/heintzmann.htm. At this web address an interactive 3D viewer is additionally provided for browsing the 3D data. This java applet displays three orthogonal slices of the data set which are dynamically updated by user mouse clicks or keystrokes.
机译:荧光共聚焦激光扫描显微镜可以改善三维物体的成像。但是,沿轴向的分辨率比沿横向的分辨率差三倍。克服此轴向限制的一种方法是使物体在显微镜下倾斜,使光轴的方向指向相对于样品的不同方向。开发了一种从多个此类轴向层析共聚焦数据集进行同时重建的新技术,并将其用于从实验和虚拟显微镜数据集进行的3D数据的高分辨率重建。重建的图像具有高度改进的3D分辨率,可与单个反卷积数据集的横向分辨率相比。轴向层析成像与同步数据重建相结合,也为更精确地量化3D数据提供了可能性。可从http://www.esacp.org/acp/2000/20‐1/heintzmann.htm访问该出版物的彩色图像。在该网址上,还提供了一个交互式3D查看器,用于浏览3D数据。此Java小程序显示数据集的三个正交切片,这些切片由用户的鼠标单击或击键动态更新。

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