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Vessel Segmentation in 3D Spectral OCT Scans of the Retina

机译:视网膜3D光谱OCT扫描中的血管分割

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摘要

The latest generation of spectral optical coherence tomography (OCT) scanners is able to image 3D cross-sectional volumes of the retina at a high resolution and high speed. These scans offer a detailed view of the structure of the retina. Automated segmentation of the vessels in these volumes may lead to more objective diagnosis of retinal vascular disease including hypertensive retinopathy, retinopathy of prematurity. Additionally, vessel segmentation can allow color fundus images to be registered to these 3D volumes, possibly leading to a better understanding of the structure and localization of retinal structures and lesions. In this paper we present a method for automatically segmenting the vessels in a 3D OCT volume. First, the retina is automatically segmented into multiple layers, using simultaneous segmentation of their boundary surfaces in 3D. Next, a 2D projection of the vessels is produced by only using information from certain segmented layers. Finally, a supervised, pixel classification based vessel segmentation approach is applied to the projection image. We compared the influence of two methods for the projection on the performance of the vessel segmentation on 10 optic nerve head centered 3D OCT scans. The method was trained on 5 independent scans. Using ROC analysis, our proposed vessel segmentation system obtains an area under the curve of 0.970 when compared with the segmentation of a human observer.
机译:最新一代的光谱光学相干断层扫描(OCT)扫描仪能够以高分辨率和高速成像视网膜的3D横截面体积。这些扫描提供了视网膜结构的详细视图。在这些体积中自动分割血管可能导致更客观的视网膜血管疾病诊断,包括高血压性视网膜病变,早产儿视网膜病变。此外,血管分割可以使彩色眼底图像配准到这些3D体积,可能导致更好地了解视网膜结构和病变的结构和位置。在本文中,我们提出了一种自动分割3D OCT体积中的血管的方法。首先,使用3D边界区域的同时分割,将视网膜自动分割为多层。接下来,仅通过使用来自某些分段层的信息来生成血管的2D投影。最后,将有监督的基于像素分类的血管分割方法应用于投影图像。我们在以10个视神经头为中心的3D OCT扫描中比较了两种投影方法对血管分割性能的影响。该方法经过5次独立扫描训练。使用ROC分析,与人类观察者的分割相比,我们提出的血管分割系统在曲线下获得的面积为0.970。

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