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Enhancing the Visualization of the Microvasculature of Extrahepatic Bile Ducts Obtained from Confocal Microscopy Images

机译:从共聚焦显微镜图像获得的肝外胆管微脉管系统的可视化

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Confocal microscopy is an important tool for visualizing 3D datasets of fluorescent specimens, and has been used to investigate the structure of biological specimens. However, such images are affected by the noise introduced during the specimen preparation and image acquisition processes. Anisotropic diffusion is a non-linear filter that can significantly improve image quality while removing noise without blurring edges. This study investigates the application of anisotropic diffusion in confocal microscopy images by exploring different models for parameters' calculation. Our data consists of several slices of extrahepatic bile ducts containing a network of small vessels named Peribiliary Vascular Plexus (PVP), which are affected by several sources of noise. Experimental results show that anisotropic diffusion improved the volumetric visualization of the PVP. We validated the results using MSE and PSNR quantitative approaches and qualitative description by an expert user.
机译:共聚焦显微镜是可视化荧光标本的3D数据集的重要工具,并已用于研究生物标本的结构。但是,这样的图像会受到样本制备和图像采集过程中引入的噪声的影响。各向异性扩散是一种非线性滤波器,可以显着提高图像质量,同时消除噪声而不会模糊边缘。本研究通过探索不同的参数计算模型来研究各向异性扩散在共聚焦显微镜图像中的应用。我们的数据由几片肝外胆管组成,其中包含一个名为小周血管丛(PVP)的小血管网络,这些血管受到多种噪声源的影响。实验结果表明,各向异性扩散改善了PVP的体积可视化。我们使用MSE和PSNR定量方法以及专家用户的定性描述对结果进行了验证。

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