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首页> 外文期刊>British journal of ophthalmology >Microperimetry in age-related macular degeneration: association with macular morphology assessed by optical coherence tomography
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Microperimetry in age-related macular degeneration: association with macular morphology assessed by optical coherence tomography

机译:年龄相关性黄斑变性的微生物测定:与光学相干断层扫描评估的黄斑形态相关联

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Microperimetry is a technique that is increasingly used to assess visual function in age-related macular degeneration (AMD). In this study, we aimed to evaluate the relationship between retinal sensitivity measured with macular integrity assessment (MAIA) microperimetry and optical coherence tomography (OCT)-based macular morphology in AMD.Prospective, cross-sectional study. All participants were imaged with colour fundus photographs used for AMD staging (Age-Related Eye Disease Study scale), spectral-domain OCT (Spectralis, Heidelberg, Germany) and swept-source OCT (Topcon, Japan). Threshold retinal sensitivity of the central 10° diameter circle was assessed with the full-threshold, 37-point protocol of the MAIA microperimetry device (Centervue, Italy). Univariable and multivariable multilevel mixed-effect linear regression models were used for analysis.We included 102 eyes with AMD and 46 control eyes. Multivariable analysis revealed that older age (p<0.0001), advanced AMD stage (p<0.0001) and reduced retinal thickness (p<0.0001) were associated with decreased mean retinal sensitivity. No associations were found between choroidal thickness and retinal sensitivity within the macula. Within the 10° diameter circle of the macula, the presence of ellipsoid disruption, subretinal fluid, atrophy and fibrosis, and outer retinal tubulation on OCT images was also associated with decreased retinal sensitivity (all p<0.05).There is an association between TRS as determined by MAIA microperimetry and several OCT structural parameters across various stages of AMD. This study highlights the relevance of microperimetry as a functional outcome measure for AMD.
机译:微型测量法是一种越来越多地用于评估年龄相关性黄斑变性(AMD)的视觉功能的技术。在这项研究中,我们旨在评估随着黄斑完整性评估(MAIA)微集型和光学相干断层扫描(OCT)的视网膜敏感性之间的关系,基于AMD .Prospospive,横截面研究。所有参与者都与用于AMD分期(年龄相关的眼部疾病学习规模),光谱域OCT(Spectralis,Heidelberg,德国)和Shepe-Source Oct(Topcon,日本)的彩色眼底照片进行了成像。通过全阈值,MAIA微型测定装置(意大利中心)的全阈值,37点协议评估中央10°直径圆的阈值视网膜敏感性。非变性和多变量多级混合效应线性回归模型用于分析。我们包括102只眼睛,AMD和46只控制眼睛。多变量分析显示,较旧的(P <0.0001),高级AMD阶段(P <0.0001)和降低的视网膜厚度(P <0.0001)与平均视网膜敏感性降低有关。脉络膜厚度和黄斑内的视网膜敏感性之间没有发现任何关联。在黄斑的10°直径圆内,OCT图像上的椭球体破坏,分子液,萎缩和纤维化以及外视网膜管也与视网膜敏感度降低有关(所有P <0.05)。TRS之间的关联由Maia微型测定法和AMD各个阶段的几个OCT结构参数确定。本研究突出了微型测定法作为AMD的功能结果措施的相关性。

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