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ADAPTIVE OPTICS IMAGING OF FOVEAL SPARING IN GEOGRAPHIC ATROPHY SECONDARY TO AGE-RELATED MACULAR DEGENERATION

机译:年龄相关性黄斑变性继发于星形萎缩中心凹的自适应光学成像

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Background:To describe adaptive optics (AO) imaging of foveal sparing in geographic atrophy (GA) secondary to age-related macular degeneration.Methods:Flood-illumination AO infrared (IR) fundus images were obtained in four consecutive patients with GA using an AO retinal camera (rtx1; Imagine Eyes). Adaptive optics IR images were overlaid with confocal scanning laser ophthalmoscope near-IR autofluorescence images to allow direct correlation of en face AO features with areas of foveal sparing. Adaptive optics appearance of GA and foveal sparing, preservation of functional photoreceptors, and cone densities in areas of foveal sparing were investigated.Results:In 5 eyes of 4 patients (all female; mean age 74.2 11.9 years), a total of 5 images, sized 4 degrees x 4 degrees, of foveal sparing visualized on confocal scanning laser ophthalmoscope near-IR autofluorescence were investigated by AO imaging. En face AO images revealed GA as regions of inhomogeneous hyperreflectivity with irregularly dispersed hyporeflective clumps. By direct comparison with adjacent regions of GA, foveal sparing appeared as well-demarcated areas of reduced reflectivity with less hyporeflective clumps (mean 14.2 vs. 3.2; P = 0.03). Of note, in these areas, en face AO IR images revealed cone photoreceptors as hyperreflective dots over the background reflectivity (mean cone density 3,271 +/- 1,109 cones per square millimeter). Microperimetry demonstrated residual function in areas of foveal sparing detected by confocal scanning laser ophthalmoscope near-IR autofluorescence.Conclusion:Adaptive optics allows the appreciation of differences in reflectivity between regions of GA and foveal sparing. Preservation of functional cone photoreceptors was demonstrated on en face AO IR images in areas of foveal sparing detected by confocal scanning laser ophthalmoscope near-IR autofluorescence.
机译:背景:描述继发于年龄相关性黄斑变性的地理萎缩(GA)中凹凹的自适应光学(AO)成像方法:方法:使用AO获得连续4例GA患者的泛光照明AO红外(IR)眼底图像视网膜相机(rtx1;想象的眼睛)。自适应光学红外图像与共焦扫描激光检眼镜近红外自发荧光图像重叠,以允许将面部AO特征与中央凹区域直接相关。研究了GA和中央凹保留的适应性光学外观,功能性感光细胞的保存以及中央凹保留区域的锥体密度。结果:4例患者的5只眼(均为女性;平均年龄为74.2 11.9岁),共5张图像,共焦扫描激光检眼镜在近红外自发荧光下观察到大小为4度x 4度的凹凹,并通过AO成像进行了研究。面对面的AO图像显示GA是不均匀的高反射区域,具有不规则分散的低反射团块。通过与GA的相邻区域直接比较,中央凹保留为反射率降低,低反射性团块较少的良好划定区域(平均14.2对3.2; P = 0.03)。值得注意的是,在这些区域中,面对面的AO IR图像在背景反射率(平均锥体密度3,271 +/- 1,109锥体/平方毫米)上显示出作为高反射点的锥体感光体。显微视野测定法证明了通过共聚焦扫描激光检眼镜近红外自发荧光检测到的中心凹保留区域中的残余功能。结论:自适应光学器件可以了解GA和中心凹保留之间的反射率差异。在共聚焦扫描激光检眼镜近红外自发荧光检测到的中央凹区域内的全脸AO IR图像上证明了功能性锥形感光体的保存。

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