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Detail-richest-channel based enhancement for retinal image and beyond

机译:细节 - 基于频道的视网膜图像和超越的增强

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The quality of retinal photography is not always satisfactory due to the limited imaging conditions. Low contrast and insufficient brightness are common problems. By comprehensively analyzing the image formation model from an intuitive perspective, we present general principles of parameter settings for different enhancement scenarios, and this analysis provides theoretical support for designing the proposed method. In a retinal image, the green channel preserves the richest details due to the red free photography. We term the green channel as the "detail-richest-channel" in a retinal image, and it is used as the initial transmission map. Subsequently, the transmission map is corrected by the modified cubic function to reduce over enhancement. The proposed method is designed for enhancing retinal images photographed by handheld fundus camera initially, and it can be extended to other applications. A total of 1045 retinal images photographed by handheld fundus camera, 460 retinal images acquired from cataract patients using high-end fundus camera, and 890 underwater images are tested to validate the effectiveness of the proposed method. Results show that the proposed method can improve the quality of degraded images as well as preserve the natural visual perception.
机译:由于有限的成像条件,视网膜摄影质量并不总是令人满意的。对比度低,亮度不足是常见问题。通过从直观的角度综合分析图像形成模型,我们为不同的增强场景提供了参数设置的一般原则,并且该分析提供了设计所提出的方法的理论支持。在视网膜图像中,绿色通道由于红色免费摄影而保留最富有的细节。我们将绿色通道称为视网膜图像中的“细节 - 富有信道”,并且用作初始传输映射。随后,通过修改的立方体函数来校正传输映射以减少增强。所提出的方法专为增强由手持眼底相机拍摄的视网膜图像而最初,并且它可以扩展到其他应用。通过手持式眼底照相机拍摄的1045次视网膜图像,使用高端眼底照相机获得的460个视网膜图像,并测试了890个水下图像,以验证所提出的方法的有效性。结果表明,该方法可以提高降解图像的质量,并保持自然视觉感知。

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