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A framework for 3D vessel analysis using whole slide images of liver tissue sections

机译:使用肝脏组织切片的完整幻灯片图像进行3D血管分析的框架

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摘要

Three-dimensional (3D) high resolution microscopic images have high potential for improving the understanding of both normal and disease processes where structural changes or spatial relationship of disease features are significant. In this paper, we develop a complete framework applicable to 3D pathology analytical imaging, with an application to whole slide images of sequential liver slices for 3D vessel structure analysis. The analysis workflow consists of image registration, segmentation, vessel cross-section association, interpolation, and volumetric rendering. To identify biologically-meaningful correspondence across adjacent slides, we formulate a similarity function for four association cases. The optimal solution is then obtained by constrained integer programming. We quantitatively and qualitatively compare our vessel reconstruction results with human annotations. Validation results indicate a satisfactory concordance as measured both by region-based and distance-based metrics. These results demonstrate a promising 3D vessel analysis framework for whole slide images of liver tissue sections.
机译:三维(3D)高分辨率显微图像具有极大的潜力,可以改善对正常和疾病过程的了解,在这些过程中,疾病特征的结构变化或空间关系很重要。在本文中,我们开发了适用于3D病理分析成像的完整框架,并将其应用于顺序肝切片的完整幻灯片图像以进行3D血管结构分析。分析工作流程包括图像配准,分割,血管横截面关联,插值和体积渲染。为了确定相邻幻灯片之间具有生物学意义的对应关系,我们为四个关联案例制定了相似函数。然后,通过约束整数编程获得最优解。我们定量和定性地将我们的血管重建结果与人类注释进行比较。验证结果表明,无论是基于区域的度量还是基于距离的度量,都可以得出令人满意的一致性。这些结果证明了用于肝脏组织切片的完整幻灯片图像的有前途的3D血管分析框架。

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