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斯塔加特病中异质性背景随时间的变化动力学

Kinetics of Heterogeneous Background in Stargardt's Disease over Time.

作者信息

Rodríguez-Bocanegra Eduardo, Biarnés Marc, Garcia Míriam, Ferraro Lucía Lee, Fischer Manuel Dominik, Monés Jordi

机构信息

Barcelona Macula Foundation: Research for Vision, 08022 Barcelona, Spain.

Centre for Ophthalmology, University Hospital Tübingen, University Eye Hospital, 72076 Tübingen, Germany.

出版信息

Life (Basel). 2022 Mar 6;12(3):381. doi: 10.3390/life12030381.

Abstract

Stargardt's disease (STGD1) is caused by mutations in the gene. Different lesions characterised by decreased autofluorescence levels are found in fundus autofluorescence (FAF) from STGD1 patients and could be used as outcome indicators for disease progression. We investigated the fate of foci with reduced autofluorescence (FRA) within the heterogeneous background of STGD1 patients using FAF imaging. Genetically confirmed STGD1 patients presenting heterogeneous background autofluorescence on high-quality FAF images at a minimum of two visits at least 12 months apart were chosen. A grid centred on the fovea was used to define five different zones. Within each zone, five FRA were randomly selected for each eye. The eccentricity of foci was determined at different time points for each patient. Analysis of 175 randomly chosen FRA showed consistent centrifugal displacement over time, most notably in eyes showing areas with definitely decreased autofluorescence. Interestingly, FRA did not leave an area of hypo-autofluorescence on FAF in locations where they were previously located. These findings may help to better understand STGD1 progression, improve FAF interpretation, and shed light on the nature of heterogeneous background.

摘要

斯塔加特病(STGD1)由该基因突变引起。在STGD1患者的眼底自发荧光(FAF)中发现了以自发荧光水平降低为特征的不同病变,这些病变可作为疾病进展的结果指标。我们使用FAF成像研究了STGD1患者异质性背景下自发荧光降低灶(FRA)的转归。选择经基因确诊的STGD1患者,这些患者在至少相隔12个月的至少两次就诊时,高质量FAF图像上呈现异质性背景自发荧光。以黄斑中心凹为中心的网格用于定义五个不同区域。在每个区域内,每只眼睛随机选择五个FRA。为每位患者在不同时间点确定病灶的偏心度。对175个随机选择的FRA进行分析,结果显示随着时间推移,病灶有一致的离心性移位,在自发荧光明显降低区域的眼睛中尤为明显。有趣的是,FRA在其先前所在位置并未在FAF上留下低自发荧光区域。这些发现可能有助于更好地理解STGD1的进展,改善对FAF的解读,并阐明异质性背景的本质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd63/8953836/16c00f3da7bf/life-12-00381-g001.jpg

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