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Global error minimization in image mosaicing using graph connectivity and its applications in microscopy

机译:使用图连接性将图像镶嵌中的全局误差最小化及其在显微镜中的应用

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Several applications such as multiprojector displays and microscopy require the mosaicing of images (tiles) acquired by a camera as it traverses an unknown trajectory in 3D space. A homography relates the image coordinates of a point in each tile to those of a reference tile provided the 3D scene is planar. Our approach in such applications is to first perform pairwise alignment of the tiles that have imaged common regions in order to recover a homography relating the tile pair. We then find the global set of homographies relating each individual tile to a reference tile such that the homographies relating all tile pairs are kept as consistent as possible. Using these global homographies, one can generate a mosaic of the entire scene. We derive a general analytical solution for the global homographies by representing the pair-wise homographies on a connectivity graph. Our solution can accommodate imprecise prior information regarding the global homographies whenever such information is available. We also derive equations for the special case of translation estimation of an X-Y microscopy stage used in histology imaging and present examples of stitched microscopy slices of specimens obtained after radical prostatectomy or prostate biopsy. In addition, we demonstrate the superiority of our approach over tree-structured approaches for global error minimization.Keywords: Image mosaicing, Whole-slide scanning in digital pathology, Graph Connectivity
机译:诸如多投影仪显示器和显微术之类的一些应用程序要求在摄像机穿越3D空间中的未知轨迹时将其采集的图像(平铺)进行拼接。如果3D场景是平面的,则单应性会将每个图块中的点的图像坐标与参考图块的图像坐标相关联。在这种应用中,我们的方法是首先对已成像公共区域的图块进行成对对齐,以恢复与图块对相关的单应性。然后,我们找到将每个单个图块与参考图块相关联的单应性的全局集合,以使与所有图块对相关的单应性尽可能保持一致。使用这些全局同形异义词,可以生成整个场景的镶嵌图。我们通过在连通性图上表示成对的单应性,得出全局单应性的一般分析解决方案。只要有这样的信息,我们的解决方案就可以容纳关于全球同形异义词的不精确的先验信息。我们还导出了用于组织学成像的X-Y显微镜阶段的平移估计的特殊情况的方程式,并提供了在前列腺癌根治术或前列腺活检后获得的标本的缝合显微镜切片的示例。此外,我们展示了我们的方法优于树结构的方法,可最大程度地减少全局误差。关键字:图像镶嵌,数字病理学中的全幻灯片扫描,图连接

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