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OCT-GAN: single step shadow and noise removal from optical coherence tomography images of the human optic nerve head

机译:OCT-GaN:从光学相干断层扫描图像的单步阴影和噪声去除人的视神经头部

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摘要

Speckle noise and retinal shadows within OCT B-scans occlude important edges, fine textures and deep tissues, preventing accurate and robust diagnosis by algorithms and clinicians. We developed a single process that successfully removed both noise and retinal shadows from unseen single-frame B-scans within 10.4ms. Mean average gradient magnitude (AGM) for the proposed algorithm was 57.2% higher than current state-of-the-art, while mean peak signal to noise ratio (PSNR), contrast to noise ratio (CNR), and structural similarity index metric (SSIM) increased by 11.1%, 154% and 187% respectively compared to single-frame B-scans. Mean intralayer contrast (ILC) improvement for the retinal nerve fiber layer (RNFL), photoreceptor layer (PR) and retinal pigment epithelium (RPE) layers decreased from 0.362 ± 0.133 to 0.142 ± 0.102, 0.449 ± 0.116 to 0.0904 ± 0.0769, 0.381 ± 0.100 to 0.0590 ± 0.0451 respectively. The proposed algorithm reduces the necessity for long image acquisition times, minimizes expensive hardware requirements and reduces motion artifacts in OCT images.
机译:OCT B-Scans occlude的斑点噪声和视网膜阴影在遮挡重要边缘,细微纹理和深组织,通过算法和临床医生预防准确和鲁棒的诊断。我们开发了一个单一的过程,可在10.4ms内成功地从看不见的单帧B扫描中取出噪声和视网膜阴影。该算法的平均平均梯度幅度(AGM)比当前最先进的算法高57.2%,而平均峰值信号与噪声比(PSNR),与噪声比对比(CNR)和结构相似性指数度量(与单帧B扫描相比,SSIM分别增加11.1%,154%和187%。视网膜神经纤维层(RNFL)的平均造影(ILC)改善,感光层(PR)和视网膜颜料上皮(RPE)层从0.362±0.133降低至0.142±0.102,0.449±0.116至0.0904±0.0769,0.381± 0.100至0.0590±0.0451。所提出的算法减少了长图像采集时间的必要性,最大限度地减少了昂贵的硬件要求并减少了OCT图像中的运动伪影。

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