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Optimization and enhancement of HE stained microscopical images by applying bilinear interpolation method on lab color mode

机译:实验室彩色模式应用双线性插值法优化和增强H&E染色显微图像

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摘要

Background: Hematoxylin & Eosin (H&E) is a widely employed technique in pathology and histology to distinguish nuclei and cytoplasm in tissues by staining them in different colors. This procedure helps to ease the diagnosis by enhancing contrast through digital microscopes. However, microscopic digital images obtained from this technique usually suffer from uneven lighting, i.e. poor Koehler illumination. Several off-the-shelf methods particularly established to correct this problem along with some popular general commercial tools have been examined to find out a robust solution.udMethods: First, the characteristics of uneven lighting in pathological images obtained from the H&E technique are revealed, and then how the quality of these images can be improved by employing bilinear interpolation based approach applied on the channels of Lab color mode is explored without losing any essential detail, especially for the color information of nuclei (hematoxylin stained sections). Second, an approach to enhance the nuclei details that are a fundamental part of diagnosis and crucially needed by the pathologists who work with digital images is demonstrated.udResults: Merits of the proposed methodology are substantiated on sample microscopic images. The results show that the proposed methodology not only remedies the deficiencies of H&E microscopical images, but also enhances delicate details.udConclusions: Non-uniform illumination problems in H&E microscopical images can be corrected without compromising crucial details that are essential for revealing the features of tissue samples.
机译:背景:苏木精和曙红(H&E)是一种在病理学和组织学中被广泛采用的技术,通过将它们染色成不同的颜色来区分组织中的细胞核和细胞质。该程序通过通过数字显微镜增强对比度来帮助简化诊断。然而,从该技术获得的显微数字图像通常遭受不均匀的照明,即差的科勒照明。研究了几种专门为解决此问题而建立的现成方法以及一些流行的通用商业工具,以找到可靠的解决方案。 udMethods:首先,揭示了从H&E技术获得的病理图像中不均匀照明的特征,然后探索如何通过在Lab彩色模式的通道上采用基于双线性插值的方法来改善这些图像的质量,而又不丢失任何必要的细节,尤其是对于核的颜色信息(苏木精染色的切片)。其次,展示了一种增强核细节的方法,这种方法是诊断的基本部分,并且是使用数字图像的病理学家迫切需要的。 ud结果:所提出的方法的优点在样品显微图像上得到了证实。结果表明,所提出的方法不仅可以弥补H&E显微图像的不足,而且可以增强细腻的细节。 ud结论:可以纠正H&E显微图像中的不均匀照明问题,而又不损害显示底色的特征所必需的关键细节。组织样本。

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    Kuru Kaya;

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