首页> 外文期刊>Pathobiology: journal of immunopathology, molecular and cellular biology >Development of a 2D Image Reconstruction and Viewing System for Histological Images from Multiple Tissue Blocks: Towards High-Resolution Whole-Organ 3D Histological Images
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Development of a 2D Image Reconstruction and Viewing System for Histological Images from Multiple Tissue Blocks: Towards High-Resolution Whole-Organ 3D Histological Images

机译:来自多个组织块的组织学图像的2D图像重建和查看系统的开发:向高分辨率全器官3D组织学图像迈进

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High-resolution 3D histology image reconstruction of the whole brain organ starts from reconstructing the high-resolution 2D histology images of a brain slice. In this paper, we introduced a method to automatically align the histology images of thin tissue sections cut from the multiple paraffin embedded tissue blocks of a brain slice. For this method, we employed template matching and incorporated an optimization technique to further improve the accuracy of the 2D reconstructed image. In the template matching, we used the gross image of the brain slice as a reference to the reconstructed 2D histology image of the slice, while in the optimization procedure, we utilized the Jaccard index as the metric of the reconstruction accuracy. The results of our experiment on the initial 3 different whole-brain tissue slices showed that while the method works, it is also constrained by tissue deformations introduced during the tissue processing and slicing. The size of the reconstructed high-resolution 2D histology image of a brain slice is huge, and designing an image viewer that makes particularly efficient use of the computing power of a standard computer used in our laboratories is of interest. We also present the initial implementation of our 2D image viewer system in this paper. (C) 2016 S. Karger AG, Basel
机译:整个脑器官的高分辨率3D组织学图像重建始于重建脑切片的高分辨率2D组织学图像。在本文中,我们介绍了一种自动对齐从脑切片的多个石蜡包埋的组织块切下的薄组织切片的组织学图像的方法。对于此方法,我们采用模板匹配并结合了优化技术来进一步提高2D重建图像的准确性。在模板匹配中,我们使用脑切片的总图像作为切片的重建2D组织学图像的参考,而在优化过程中,我们使用Jaccard索引作为重建准确性的指标。我们在最初的3种不同的全脑组织切片上进行的实验结果表明,尽管该方法有效,但也受到组织处理和切片过程中引入的组织变形的限制。大脑切片的高分辨率高分辨率2D组织学图像的大小很大,因此,设计一种能够特别有效地利用我们实验室中使用的标准计算机的计算能力的图像查看器非常重要。我们还将在本文中介绍2D图像查看器系统的初始实现。 (C)2016 S.Karger AG,巴塞尔

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