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Visible-light optical coherence tomography-based multimodal system for quantitative fundus autofluorescence imaging

机译:基于可见光光学相干断层扫描的多峰荧光成像

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摘要

Fundus autofluorescence (FAF) imaging is commonly used in ophthalmic clinics for diagnosis and monitoring of retinal diseases. Lipofuscin in the retinal pigment epithelium (RPE), with A2E as its most abundant component and a visual cycle by-product, is the major fluorophore of FAF. Lipofuscin accumulates with age and is implicated in degenerative retinal diseases. The amount of lipofuscin in RPE can be assessed by quantitative measurement of FAF. However, the currently available FAF imaging technologies are not capable of quantifying the absolute intensity of FAF, which is essential for comparing images from different individuals, and from the same individual over time. One major technical difficulty is to compensate the signal attenuation by ocular media anterior to the RPE (pre-RPE media). FAF intensity is also influenced by fluctuations in imaging conditions such as illumination power and detector sensitivity, all of which need to be compensated. In this review, we present the concept and research progress of using visible-light optical coherence tomography-based simultaneous multimodal retinal imaging to compensate signal attenuation by pre-RPE media and the influence of parameters of the acquisition system for accurate measurement of FAF intensities.
机译:眼底自发荧光(FAF)成像通常用于眼科诊所进行视网膜疾病的诊断和监测。在视网膜颜料上皮(RPE)中的脂血清蛋白,用A2E作为其最丰富的组分和视觉循环副产物,是FAF的主要荧光团。 Lipofuscin随着年龄的增长而累积,与退行性视网膜疾病有影响。可以通过定量测量FA法来评估RPE中的脂血清蛋白的量。然而,目前可用的FAC成像技术无法量化FAF的绝对强度,这对于将来自不同个体的图像和随着时间的推移来从同一个人中提供必不可少的FAF。一种主要的技术难度是通过对RPE(预RPE介质)的眼睛介质前部来补偿信号衰减。 FAF强度也受到诸如照明功率和检测器灵敏度的成像条件的波动的影响,所有这些都需要补偿。在本文中,我们介绍了使用基于可见光光学相干断层扫描的同时多模式视网膜成像的概念和研究进展,以补偿RPE介质的信号衰减和采集系统参数的影响,以便精确测量FAF强度。

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