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Retinal image mosaicing using the radial distortion correction model

机译:使用径向失真校正模型的视网膜图像镶嵌

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Fundus camera imaging can be used to examine the retina to detect disorders. Similar to looking through a small keyhole into a large room, imaging the fundus with an ophthalmologic camera allows only a limited view at a time. Thus, the generation of a retinal montage using multiple images has the potential to increase diagnostic accuracy by providing larger field of view. A method of mosaicing multiple retinal images using the radial distortion correction (RADIC) model is proposed in this paper. Our method determines the inter-image connectivity by detecting feature correspondences. The connectivity information is converted to a tree structure that describes the spatial relationships between the reference and target images for pairwise registration. The montage is generated by cascading pairwise registration scheme starting from the anchor image downward through the connectivity tree hierarchy. The RADIC model corrects the radial distortion that is due to the spherical-to-planar projection during retinal imaging. Therefore, after radial distortion correction, individual images can be properly mapped onto a montage space by a linear geometric transformation, e.g. affine transform. Compared to the most existing montaging methods, our method is unique in that only a single registration per image is required because of the distortion correction property of RADIC model. As a final step, distance-weighted intensity blending is employed to correct the inter-image differences in illumination encountered when forming the montage. Visual inspection of the experimental results using three mosaicing cases shows our method can produce satisfactory montages.
机译:眼底式摄像机成像可用于检查视网膜检测障碍。与透过小钥匙孔一起看大型房间,用眼科相机成像眼底允许一次只有有限的视图。因此,使用多个图像的视网膜蒙太奇的产生具有通过提供更大的视野来提高诊断准确性的可能性。本文提出了一种利用径向失真校正(RADIC)模型拼接多视网膜图像的方法。我们的方法通过检测特征对应关系来确定图像间连接。连接信息被转换为树结构,该树结构描述用于成对配准的参考和目标图像之间的空间关系。通过级联从锚映像从锚映射通过连接树层次结构开始的成对登记方案来生成蒙太奇。 RADIC模型校正由于视网膜成像期间的球形到平面投影而径向变形。因此,在径向失真校正之后,通过线性几何变换,可以将各个图像适当地映射到蒙太奇空间上。仿射变换。与最现有的蒙存性方法相比,我们的方法是唯一的,因为由于RADIC模型的失真校正特性,只需要每张图像的单个配准。作为最终步骤,采用距离加权强度混合来校正形成蒙太奇时遇到的照明的图像间差异。目视检查使用三种镶嵌病例的实验结果表明我们的方法可以产生令人满意的蒙太奇。

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