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Performance of a combined optical coherence tomography and scanning laser ophthalmoscope with adaptive optics for human retinal imaging applications

机译:光学相干层析成像和扫描激光检眼镜与自适应光学相结合的性能,适用于人类视网膜成像应用

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We describe the design and performance of a recently implemented retinal imaging system for the human eye that combines adaptive optics (AO) with spectral domain optical coherence tomography (OCT) and scanning laser ophthalmoscopy (SLO). The AO-OCT-SLO system simultaneously acquires SLO frames and OCT B-scans at 60 Hz with an OCT volume acquisition scan rate of 0.24 Hz. The SLO images are used to correct for eye motion during the registration of OCT B-scans. Key optical design considerations are discussed including: minimizing system aberrations through the use of off-axis relay telescopes; choice of telescope magnification based on pupil plane requirements and restrictions; and the use of dichroic beam splitters to separate and re-combine OCT and SLO beams around the non-shared horizontal scanning mirrors. We include an analysis of closed-loop AO correction on a model eye and compare these findings with system performance in vivo. The 2D and 3D OCT scans included in this work demonstrate the ability of this system to laterally and axially resolve individual cone photoreceptors, while the corresponding SLO images show the en face mosaics at the photoreceptor layer showing rods and cones. Images from both healthy and diseased retina are presented.
机译:我们描述了最近实现的人眼视网膜成像系统的设计和性能,该系统将自适应光学(AO)与光谱域光学相干断层扫描(OCT)和扫描激光检眼镜(SLO)相结合。 AO-OCT-SLO系统以0.24 Hz的OCT体积采集扫描速率同时采集60 Hz的SLO帧和OCT B扫描。 SOC图像用于在OCT B扫描配准期间校正眼睛运动。讨论了主要的光学设计考虑因素,包括:通过使用离轴中继望远镜来最小化系统像差;以及根据瞳孔平面的要求和限制选择望远镜的放大倍数;以及使用二向色分束器在非共享水平扫描镜周围分离和重新组合OCT和SLO光束。我们包括对模型眼的闭环AO校正的分析,并将这些发现与体内系统性能进行比较。这项工作中包括的2D和3D OCT扫描证明了该系统能够横向和轴向分辨单个锥形感光体的能力,而相应的SLO图像则显示了感光体层上的正面马赛克,显示出棒和锥。呈现了来自健康和患病视网膜的图像。

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