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Highlighting Directional Reflectance Properties of Retinal Substructures From D-OCT Images

机译:从D-OCT图像突出显示视网膜亚结构的定向反射特性

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Optical coherence tomography (OCT), which is routinely used in ophthalmology, enables transverse optical imaging of the retina and, hence, the identification of the different neuronal layers. Directional OCT (D-OCT) extends this technology by acquiring sets of images at different incidence angles of the light beam. In this way, reflectance properties of photoreceptor substructures are highlighted, enabling physicians to study their orientation, which is potentially an interesting biomarker for retinal diseases. Nevertheless, commercial OCT devices equipped to automate D-OCT acquisition do not yet exist, meaning that physicians manually deviate the light beam to acquire a set of D-OCT images sequentially. Therefore, the intensities in the stack of images are not directly comparable, and a normalization step is required before differential analysis. In this paper, we present advanced image processing methods to perform differential analysis of a set of D-OCT images and extract the angle-dependent retinal substructures. Our approach relies on a robust and accurate normalization algorithm followed by a classification that is spatially regularized. We also propose a robust color representation that facilitates interpretation of D-OCT data in general, by detecting and highlighting angle-dependent structures in healthy and diseased eyes. Experimental results show evidence of photoreceptor disarray in a variety of retinal diseases, demonstrating the potential medical interest of the approach.
机译:眼科常规使用的光学相干断层扫描(OCT)可对视网膜进行横向光学成像,从而识别不同的神经元层。定向OCT(D-OCT)通过获取光束不同入射角的图像集来扩展此技术。以此方式,突出了光感受器亚结构的反射特性,使医生能够研究其取向,这可能是视网膜疾病的有趣生物标记。然而,尚不具备用于自动进行D-OCT采集的商用OCT设备,这意味着医生手动偏离光束以顺序采集一组D-OCT图像。因此,图像堆栈中的强度不能直接比较,因此在进行差异分析之前需要进行标准化步骤。在本文中,我们提出了先进的图像处理方法,以对一组D-OCT图像进行差异分析,并提取与角度相关的视网膜亚结构。我们的方法依赖于可靠且准确的归一化算法,然后进行空间正则化的分类。我们还提出了一种鲁棒的颜色表示方法,它可以通过检测和突出显示健康和患病眼睛中与角度相关的结构来促进D-OCT数据的一般解释。实验结果显示了在多种视网膜疾病中光感受器紊乱的证据,证明了该方法的潜在医学兴趣。

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