眼底血管与OCT图像的检测与配准

M. Golabbakhsh, H. Rabbani, Mahdad Esmaeili
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引用次数: 6

摘要

近年来,先进的视网膜图像分析,已经建立了各种疾病的自动诊断系统。这些设备帮助我们节省时间和金钱。三维光学相干断层扫描(OCT)成像新技术在检测各种疾病的视网膜病理变化和确定视网膜厚度异常方面非常有用。多年来,眼底彩色图像也被用于检测视网膜异常。如果将这两种图像模式结合起来,所得到的图像将提供更多的信息,因为在彩色眼底图像中可以检测到一些异常,如水肿、地理萎缩和黄斑出血,但这些异常的确切形态和定位在OCT图像中得到释放。结合不同模式的第一步是将彩色眼底图像与OCT投影进行配准。本研究采用Topcon 3D OCT-1000仪器对10只眼进行成像。该仪器用于观察视网膜、眼底和断层扫描并记录。彩色眼底摄影可以注册OCT反射率的正面表示。在本研究中,曲线变换用于提取血管的两种模式。然后将两种模式提取的血管进行配准。这样可以获得更多的血管,结果也会更有信息量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection and registration of vessels of fundus and OCT images using curevelet analysis
In recent years, advanced analysis of retinal images, has built automatic systems for diagnosis of various diseases. These devices help us save both time and money. The new techniques of 3D-Optical Coherence Tomography (OCT) imaging is very useful for detecting retinal pathologic changes in various diseases and determining retinal thickness abnormalities. Fundus color images have been used for several years for detecting retinal abnormalities too. If the two image modalities were combined, the resulted image would be more informative because some abnormalities such as drusen, geographic atrophy, and macular hemorrhages are detected in color fundus images but the exact morphology and localization of these abnormalities are released in OCT images. The first step to combine the different modalities is to register color fundus images with OCT projection. Ten eyes were imaged in this study with Topcon 3D OCT-1000 instrument. This instrument is used to observe the retina, take fundus and tomograms and record them. An en face representation of OCT reflectivity can be registered with color fundus photography. In this study curvelet transform is used to extract vessels for both modalities. Then the extracted vessels from two modalities are registered together. In this way more blood vessels can be obtained and the results would be more informative.
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