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Visual Perception Based Automatic Recognition Of Cell Mosaics In Human Corneal Endothelium Microscopy Images

机译:基于视觉感知的人类角膜内皮细胞显微图像中细胞马赛克的自动识别

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摘要

The human corneal endothelium can be observed with two types of microscopes: classical optical microscope for ex-vivo imaging, and specular optical microscope for in-vivo imaging. The quality of the cornea is correlated to the endothelial cell density and morphometry. Automatic methods to analyze the human corneal endothelium images are still not totally efficient. Image analysis methods that focus only on cell contours do not give good results in presence of noise and of bad conditions of acquisition. More elaborated methods introduce regional informations in order to perform the cell contours completion, thus implementing the duality contour-region. Their good performance can be explained by their connections with several basic principles of human visual perception (Gestalt Theory and Marr's computational theory).
机译:可以使用两种类型的显微镜观察人角膜内皮:用于离体成像的经典光学显微镜和用于体内成像的镜面光学显微镜。角膜的质量与内皮细胞密度和形态有关。分析人类角膜内皮图像的自动方法仍然不完全有效。在存在噪声和采集条件不好的情况下,仅关注细胞轮廓的图像分析方法无法获得良好的结果。更详细的方法介绍了区域信息,以执行单元轮廓的完成,从而实现对偶轮廓区域。它们的良好性能可以通过与人类视觉感知的几个基本原理(格式塔理论和马尔的计算理论)的联系来解释。

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