首页> 外文期刊>Investigative ophthalmology & visual science >Removal of reflections in the photographic assessment of PCO by fusion of digital retroillumination images.
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Removal of reflections in the photographic assessment of PCO by fusion of digital retroillumination images.

机译:通过融合数字逆光图像消除PCO摄影评估中的反射。

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PURPOSE: Automated image-analysis systems for objective assessment of posterior capsule opacification (PCO) depend on good image quality. One major drawback is the existence of light-reflection artifacts (Purkinje spots) in retroillumination images of the posterior capsule. Therefore, a software algorithm was developed that removes these artifacts by fusion of two or more digital images from the same eye, photographed in slightly different directions of gaze. METHODS: The image-fusion process comprises five steps: definition of a primary and a secondary image, automated segmentation of the region of interest and the Purkinje spots, manual selection of three pairs of corresponding points in both images, geometric registration and radiometric calibration of the regions to be inserted from the secondary image into the primary image. The program was tested with an image set of 30 eyes that had various degrees of PCO. A digital image acquisition system with a coaxial optical path was used to take retroillumination images from each eye in at least three different directions of gaze. RESULTS: In 28 cases all light-reflection artifacts within the capsulorrhexis rim could be removed entirely. In two cases, small parts of single Purkinje spots remained visible, because the reflections were located too closely in the primary and the secondary images. CONCLUSIONS: Fusion of digital retroillumination images provides high-quality, reflection-free PCO images. This allows objective PCO assessment systems to analyze 100% of the posterior capsule, leading to more accurate results.
机译:目的:用于后囊混浊(PCO)的客观评估的自动图像分析系统取决于良好的图像质量。一个主要的缺点是后囊的后照像中存在光反射伪影(Purkinje点)。因此,开发了一种软件算法,该软件算法可以通过融合来自同一只眼睛的两个或更多数字图像(以略微不同的注视方向拍摄)来消除这些伪影。方法:图像融合过程包括五个步骤:定义主图像和次图像,对感兴趣区域和Purkinje点进行自动分割,在图像中手动选择三对对应点,几何配准和辐射定标从次要图像插入到主要图像的区域。该程序用30只眼睛的图像集进行了测试,这些图像具有不同程度的PCO。具有同轴光路的数字图像采集系统用于在至少三个不同的凝视方向上从每只眼睛获取逆光图像。结果:在28例中,可以完全去除睑板外缘内的所有光反射伪影。在两种情况下,单个Purkinje点的一小部分仍然可见,因为反射在主图像和次图像中的位置太近了。结论:数字反光图像的融合提供了高质量,无反射的PCO图像。这使客观的PCO评估系统能够分析100%的后囊,从而获得更准确的结果。

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