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MEMS segmented-based adaptive optics scanning laser ophthalmoscope

机译:基于MEMS分段的自适应光学扫描激光检眼镜

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摘要

The performance of a MEMS (micro-electro-mechanical-system) segmented deformable mirror was evaluated in an adaptive optics (AO) scanning laser ophthalmoscope. The tested AO mirror (Iris AO, Inc, Berkeley, CA) is composed of 37 hexagonal segments that allow piston/tip/tilt motion up to 5 μm stroke and ±5 mrad angle over a 3.5 mm optical aperture. The control system that implements the closed-loop operation employs a 1:1 matched 37-lenslet Shack-Hartmann wavefront sensor whose measurements are used to apply modal corrections to the deformable mirror. After a preliminary evaluation of the AO mirror optical performance, retinal images from 4 normal subjects over a 0.9°x0.9° field size were acquired through a 6.4 mm ocular pupil, showing resolved retinal features at the cellular level. Cone photoreceptors were observed as close as 0.25 degrees from the foveal center. In general, the quality of these images is comparable to that obtained using deformable mirrors based on different technologies.
机译:在自适应光学(AO)扫描激光检眼镜中评估了MEMS(微电子机械系统)分段可变形镜的性能。经过测试的AO反射镜(Iris AO,Inc,伯克利,加利福尼亚州)由37个六边形部分组成,这些部分允许在3.5 mm的光学孔径上,活塞/尖端/倾斜运动的最大行程为5μm,角度为±5 mrad。实现闭环操作的控制系统采用1:1匹配的37透镜Shack-Hartmann波前传感器,其测量值用于对可变形反射镜进行模态校正。在对AO镜光学性能进行初步评估之后,通过6.4 mm眼瞳从4个正常受试者的0.9°x0.9°视野范围获得了视网膜图像,显示了在细胞水平上已解决的视网膜特征。观察到圆锥形感光体距中心凹中心约0.25度。通常,这些图像的质量与使用基于不同技术的可变形反射镜获得的图像相当。

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