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Understanding the changes of cone reflectance in adaptive optics flood illumination retinal images over three years

机译:了解三年来自适应光学泛光照明视网膜图像中锥反射率的变化

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摘要

Although there is increasing interest in the investigation of cone reflectance variability, little is understood about its characteristics over long time scales. Cone detection and its automation is now becoming a fundamental step in the assessment and monitoring of the health of the retina and in the understanding of the photoreceptor physiology. In this work we provide an insight into the cone reflectance variability over time scales ranging from minutes to three years on the same eye, and for large areas of the retina (≥ 2.0 × 2.0 degrees) at two different retinal eccentricities using a commercial adaptive optics (AO) flood illumination retinal camera. We observed that the difference in reflectance observed in the cones increases with the time separation between the data acquisitions and this may have a negative impact on algorithms attempting to track cones over time. In addition, we determined that displacements of the light source within 0.35 mm of the pupil center, which is the farthest location from the pupil center used by operators of the AO camera to acquire high-quality images of the cone mosaic in clinical studies, does not significantly affect the cone detection and density estimation.
机译:尽管人们越来越关注锥反射率变异性的研究,但人们对其长期特性的了解甚少。锥体检测及其自动化现已成为评估和监视视网膜健康以及理解感光器生理的基本步骤。在这项工作中,我们使用商业自适应光学器件,可以洞察同一只眼睛在几分钟到三年之间的时间范围内以及在两个不同的视网膜偏心率下的大面积视网膜(≥2.0×2.0度)的视锥反射率变异性, (AO)泛光照明视网膜相机。我们观察到,在视锥中观察到的反射率差异随数据采集之间的时间间隔增加而增加,这可能会对尝试随时间跟踪视锥的算法产生负面影响。此外,我们确定光源位移在瞳孔中心0.35毫米内,这是距AO摄像机操作员用于获取临床研究中的高质量圆锥体马赛克图像的距瞳孔中心最远的位置,不会显着影响锥体检测和密度估计。

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