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An Algorithm for the Visualization of Stereo Images Simultaneously Captured with Different Exposures

机译:不同曝光同时捕获的立体图像的可视化算法

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摘要

The visualization of stereo images obtained from two eyepiece cameras of a stereo microscope with different exposures is studied. This problem is solved to improve the quality of resulting images in the case when one image is not sufficient for capturing an object with the desired color reproduction accuracy and high level of detail both in dark and light regions. An approach to solving this problem in which differently exposed images are split between two views is considered. This approach allows us to significantly reduce the capturing time and to enhance the quality of capturing moving objects. The algorithm described in [1] is used as the basic algorithm; the main steps of this algorithm are the stereo matching of two input images and the construction of high dynamic range images. Modifications of the basic algorithm that use different stereo matching techniques are proposed. The application of the algorithm described in [2] for the visualization of stereo images without constructing high dynamic range images is discussed. A database of images captured with different exposures by a stereo microscope is created. The quality of algorithms applied to the images from this database is evaluated in the HDR-VDP-2.2 metric [3].
机译:研究了从具有不同曝光量的立体显微镜的两个目镜相机获得的立体图像的可视化。解决了在一个图像不足以在暗和亮区域中以期望的颜色再现精度和高细节水平捕获对象的情况下提高最终图像质量的问题。考虑一种解决该问题的方法,其中将不同曝光的图像在两个视图之间进行分割。这种方法使我们可以大大减少捕获时间并提高捕获运动对象的质量。 [1]中描述的算法被用作基本算法;该算法的主要步骤是两个输入图像的立体匹配和高动态范围图像的构造。提出了使用不同立体声匹配技术的基本算法的修改。讨论了[2]中描述的算法在不构建高动态范围图像的情况下可视化立体图像的应用。创建通过立体显微镜以不同曝光拍摄的图像数据库。在HDR-VDP-2.2指标[3]中评估了应用于该数据库图像的算法的质量。

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  • 来源
    《Programming and Computer Software》 |2017年第4期|250-257|共8页
  • 作者单位

    Moscow MV Lomonosov State Univ, Dept Computat Math & Cybernet, Moscow 119991, Russia;

    Moscow MV Lomonosov State Univ, Dept Computat Math & Cybernet, Moscow 119991, Russia;

    Moscow MV Lomonosov State Univ, Dept Computat Math & Cybernet, Moscow 119991, Russia;

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