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Simultaneous Segmentation of Retinal Surfaces and Microcystic Macular Edema in SDOCT Volumes

机译:SDOCT卷中的视网膜表面和微囊性黄斑水肿的同时分割

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Optical coherence tomography (OCT) is a noninvasive imaging modality that has begun to find widespread use in retinal imaging for the detection of a variety of ocular diseases. In addition to structural changes in the form of altered retinal layer thicknesses, pathological conditions may also cause the formation of edema within the retina. In multiple sclerosis, for instance, the nerve fiber and ganglion cell layers are known to thin. Additionally, the formation of pseudocysts called microcystic macular edema (MME) have also been observed in the eyes of about 5% of MS patients, and its presence has been shown to be correlated with disease severity. Previously, we proposed separate algorithms for the segmentation of retinal layers and MME, but since MME mainly occurs within specific regions of the retina, a simultaneous approach is advantageous. In this work, we propose an automated globally optimal graph-theoretic approach that simultaneously segments the retinal layers and the MME in volumetric OCT scans. SD-OCT scans from one eye of 12 MS patients with known MME and 8 healthy controls were acquired and the pseudocysts manually traced. The overall precision and recall of the pseudocyst detection was found to be 86.0% and 79.5%, respectively.
机译:光学相干断层扫描(OCT)是一种非侵入性成像方式,已开始在视网膜成像中发现各种眼科疾病的广泛用途。除了视网膜层厚度改变形式的结构变化外,病理状况还可能导致视网膜内水肿的形成。例如,在多发性硬化症中,神经纤维和神经节细胞层会变薄。另外,还已经在约5%的MS患者的眼睛中观察到了称为微囊性黄斑水肿(MME)的假性囊肿的形成,并且已经表明其存在与疾病的严重程度相关。以前,我们为视网膜层和MME的分割提出了单独的算法,但是由于MME主要发生在视网膜的特定区域内,因此同时进行方法是有利的。在这项工作中,我们提出了一种自动全局最优的图论方法,该方法可同时在体积OCT扫描中分割视网膜层和MME。从12名已知MME的MS患者和8名健康对照的一只眼睛中进行SD-OCT扫描,并手动追踪假性囊肿。发现假性囊肿的整体准确度和召回率分别为86.0%和79.5%。

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