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Geodesic Denoising for Optical Coherence Tomography Images

机译:光学相干断层扫描图像的测量衰老

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Optical coherence tomography (OCT) is an optical signal acquisition method capturing micrometer resolution, cross-sectional three-dimensional images. OCT images are used widely in ophthalmology to diagnose and monitor retinal diseases such as age-related macular degeneration (AMD) and Glaucoma. While OCT allows the visualization of retinal structures such as vessels and retinal layers, image quality and contrast is reduced by speckle noise, obfuscating small, low intensity structures and structural boundaries. Existing denoising methods for OCT images may remove clinically significant image features such as texture and boundaries of anomalies. In this paper, we propose a novel patch based denoising method, Geodesic Denoising. The method reduces noise in OCT images while preserving clinically significant, although small, pathological structures, such as fluid-filled cysts in diseased retinas. Our method selects optimal image patch distribution representations based on geodesic patch similarity to noisy samples. Patch distributions are then randomly sampled to build a set of best matching candidates for every noisy sample, and the denoised value is computed based on a geodesic weighted average of the best candidate samples. Our method is evaluated qualitatively on real pathological OCT scans and quantitatively on a proposed set of ground truth, noise free synthetic OCT scans with artificially added noise and pathologies. Experimental results show that performance of our method is comparable with state of the art denoising methods while outperforming them in preserving the critical clinically relevant structures.
机译:光学相干断层扫描(OCT)是光信号采集方法捕获千分尺分辨率,横截面三维图像。 OCT图像广泛用于眼科,以诊断和监测视网膜疾病,如年龄相关的黄斑变性(AMD)和青光眼。虽然OCT允许视网膜结构的可视化,例如血管和视网膜层,图像质量和对比度通过散斑噪声降低,搅拌小,强度结构和结构边界。 OCT图像的现有去噪方法可以消除临床显着的图像特征,例如异常的纹理和边界。本文提出了一种基于斑块的去噪方法,测地去噪方法。该方法减少了OCT图像中的噪声,同时保持临床显着,虽然缺乏病理结构,例如患病视网膜中的流体填充囊肿。我们的方法选择基于GeodeSic补丁相似性与嘈杂示例的最佳图像修补程序分布表示。然后随机采样修补程序分布以构建每个噪声样本的一组最佳匹配的候选,并且基于最佳候选样本的测地加权平均值计算去噪值。我们的方法在真正的病理OCT扫描和定量上定性地评估了一系列地面真理,无噪声合成OCT扫描与人工增加的噪声和病理学。实验结果表明,我们的方法的性能与现有技术的状态相当,同时优于保持关键临床相关结构的情况。

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