论文标题

最大的后验信号恢复,用于光学相干断层扫描血管造影图像产生和降解

Maximum a posteriori signal recovery for optical coherence tomography angiography image generation and denoising

论文作者

Husvogt, Lennart, Ploner, Stefan B., Chen, Siyu, Stromer, Daniel, Schottenhamml, Julia, Alibhai, A. Yasin, Moult, Eric, Waheed, Nadia K., Fujimoto, James G., Maier, Andreas

论文摘要

光学相干断层扫描(OCTA)是图像视网膜和视网膜下脉管系统的一种新颖且具有临床上有希望的成像方式。基于重复的光学相干断层扫描(OCT)扫描,随着时间的推移会观察到强度变化,并用于计算八八图像数据。八颗数据容易受到流速和患者运动的变化引起的噪声和伪影。我们提出了一种新型的迭代最大后验信号恢复算法,以生成噪声减少并增加图像质量的八块体积。该算法基于先前在概率八八A信号模型和最大似然估计的工作。使用总变异最小化和小波收缩进行正则化的重建结果与八个共同注册的单一八角体合并的八角地面真实体积进行了比较。结果表明,峰值信噪比和结构相似性有显着改善。提出的算法汇集了八颗图像产生和贝叶斯统计数据,并可以发展为新的八八图像生成和降解算法。

Optical coherence tomography angiography (OCTA) is a novel and clinically promising imaging modality to image retinal and sub-retinal vasculature. Based on repeated optical coherence tomography (OCT) scans, intensity changes are observed over time and used to compute OCTA image data. OCTA data are prone to noise and artifacts caused by variations in flow speed and patient movement. We propose a novel iterative maximum a posteriori signal recovery algorithm in order to generate OCTA volumes with reduced noise and increased image quality. This algorithm is based on previous work on probabilistic OCTA signal models and maximum likelihood estimates. Reconstruction results using total variation minimization and wavelet shrinkage for regularization were compared against an OCTA ground truth volume, merged from six co-registered single OCTA volumes. The results show a significant improvement in peak signal-to-noise ratio and structural similarity. The presented algorithm brings together OCTA image generation and Bayesian statistics and can be developed into new OCTA image generation and denoising algorithms.

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