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Automatic detection and segmentation of optic disc and fovea in retinal images

机译:视网膜图像中视盘和中央凹的自动检测和分割

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Feature extraction from retinal images is gaining popularity worldwide as many pathologies are proved having connections with these features. Automatic detection of these features makes it easier for the specialist ophthalmologists to analyse them without spending exhaustive time to segment them manually. The proposed method automatically detects the optic disc (OD) using histogram-based template matching combined with the maximum sum of vessel information in the retinal image. The OD region is segmented by using the circular Hough transform. For detecting fovea, the retinal image is uniformly divided into three horizontal strips and the strip including the detected OD is selected. Contrast of the horizontal strip containing the OD region is then enhanced using a series of image processing steps. The macula region is first detected in the OD strip using various morphological operations and connected component analysis. The fovea is located inside this detected macular region. The proposed method achieves an OD detection accuracy over 95% upon testing on seven public databases and on our locally developed database, University of Auckland Diabetic Retinopathy database (UoA-DR). The average OD boundary segmentation overlap score, sensitivity and fovea detection accuracy achieved are 0.86, 0.968 and 97.26% respectively.
机译:从视网膜图像中提取特征在世界范围内越来越受欢迎,因为许多病理学都证明与这些特征有关。这些功能的自动检测使专业眼科医生可以更轻松地分析这些功能,而无需花费大量时间手动对其进行细分。所提出的方法使用基于直方图的模板匹配结合视网膜图像中血管信息的最大和来自动检测视盘(OD)。通过使用圆形霍夫变换来分割OD区域。为了检测中央凹,将视网膜图像均匀地分成三个水平条,并选择包括检测到的OD的条。然后使用一系列图像处理步骤来增强包含OD区域的水平条的对比度。首先使用各种形态学操作和相关成分分析在OD条中检测黄斑区域。中央凹位于该检测到的黄斑区域内。通过在七个公共数据库和我们本地开发的奥克兰大学糖尿病视网膜病变数据库(UoA-DR)上进行测试,所提出的方法可实现OD检测精度超过95%。平均OD边界分割重叠分数,灵敏度和中央凹检测准确度分别为0.86、0.968和97.26%。

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