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Speckle Reduction in Optical Coherence Tomography via Super-Resolution Reconstruction

机译:通过超分辨率重建的光学相干断层扫描的散斑减少

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Reducing speckle noise from the optical coherence tomograms (OCT) of human retina is a fundamental step to a better visualization and analysis in retinal imaging, as thus to support examination, diagnosis and treatment of many eye diseases. In this study, we propose a new method for speckle reduction in OCT images using the super-resolution technology. It merges multiple images for the same scene but with sub-pixel movements and restores the missing signals in one pixel, which significantly improves the image quality. The proposed method is evaluated on a dataset of 20 OCT volumes (5120 images), through the mean square error, peak signal to noise ratio and the mean structure similarity index using high quality line-scan images as reference. The experimental results show that the proposed method outperforms existing state-of-the-art approaches in applicability, effectiveness, and accuracy.
机译:从人视网膜的光学相干断层图像(OCT)减少斑点噪声是在视网膜成像中更好的可视化和分析的基本步骤,从而支持许多眼部疾病的检查,诊断和治疗。在这项研究中,我们提出了一种使用超分辨率技术的OCT图像的散斑减少方法。它为相同的场景合并多个图像,但是具有子像素移动,并在一个像素中恢复缺失的信号,这显着提高了图像质量。通过平均方误差,峰值信号与噪声比和使用高质量线扫描图像的平均结构相似性指数作为参考,在20 OCT体积(5120图像)的数据集上评估所提出的方法。实验结果表明,该方法优于适用性,有效性和准确性的现有最先进的方法。

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