Blind Restoration of Fluorescein Angiography Images

U. Qidwai, U. Qidwai
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Abstract

In this paper, a new technique is presented to enhance the blurred images obtained from Fluoresce in Angiography (FA) of the retina. One of the main steps in inspecting the eye (especially the deeper image of retina) is to look into the eye using a slit-lamp apparatus that shines a monochromatic light on to the retinal surface and captures the reflection in the camera as the retinal image. When further probing is required, such imaging is preceded by injecting a specialized dye in the eye blood vessels. This dye shines out more prominently in the imaging system and reveals the temporal as well as special behavior of the blood vessels, which, in turn, is useful in the diagnosis process. While most of the cases, the image produced is quite clean and easily used by the ophthalmologists, there are still many cases in which these images come out to be very blurred due to the disease in the eye such as cataract etc… in such cases, having an enhanced image can enable the doctors to start the appropriate treatment for the underlying disease. The proposed technique utilizes the Blind Deconvolution approach using Maximum Likelihood Estimation approach. Further post-processing steps have been proposed as well to locate the Macula in the image which is the zero-center of the image formed on the retina. The post-processing steps include thresholding, Region Growing, and morphological operations.
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荧光素血管造影图像的盲恢复
本文提出了一种增强视网膜荧光血管造影(FA)模糊图像的新技术。检查眼睛(尤其是视网膜的深层图像)的主要步骤之一是使用狭缝灯设备观察眼睛,该设备将单色光照射到视网膜表面,并捕获相机中的反射作为视网膜图像。当需要进一步探查时,这种成像之前要在眼血管中注射一种专门的染料。这种染料在成像系统中更加突出,可以显示血管的时间和特殊行为,这反过来又在诊断过程中很有用。虽然大多数情况下,生成的图像非常干净,很容易被眼科医生使用,但仍有许多情况下,由于眼睛的疾病,如白内障等,这些图像变得非常模糊。在这种情况下,增强图像可以使医生能够开始适当的治疗潜在的疾病。该方法采用最大似然估计的盲反卷积方法。我们还提出了进一步的后处理步骤来定位图像中的黄斑,它是在视网膜上形成的图像的零中心。后处理步骤包括阈值处理、区域生长和形态学操作。
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