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In-the-plane design of an off-axis ophthalmic adaptive optics system using toroidal mirrors

机译:使用环形镜的离轴眼科自适应光学系统的平面设计

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摘要

Adaptive optics (AO) ophthalmoscopes have garnered increased clinical and scientific use for imaging the microscopic retina. Unlike conventional ophthalmoscopes, however, AO systems are commonly designed with spherical mirrors that must be used off-axis. This arrangement causes astigmatism to accumulate at the retina and pupil conjugate planes, degrading AO performance. To mitigate this effect and more fully tap the benefit of AO, we investigated a novel solution based on toroidal mirrors. Derived 2nd order analytic solutions along with commercial ray tracing predict performance benefit of toroidal mirrors for ophthalmoscopic use. For the Indiana AO ophthalmoscope, a minimum of three toroids is required to achieve performance criteria for retinal image quality, beam displacement, and beam ellipticity. Measurements with fabricated toroids and retinal imaging on subjects substantiate the theoretical predictions. Comparison to off-the-plane method is also presented.
机译:自适应光学(AO)检眼镜已获得越来越多的临床和科学用途,用于显微视网膜成像。但是,与传统检眼镜不同,AO系统通常设计有必须离轴使用的球面镜。这种布置导致像散累积在视网膜和瞳孔共轭平面上,从而降低了AO性能。为了减轻这种影响并更充分地利用AO的优势,我们研究了一种基于环形镜的新颖解决方案。导出的2阶分析解决方案与商业射线追踪一起可以预测用于检眼镜的环形反射镜的性能优势。对于印第安纳州AO检眼镜,至少需要三个环形面才能达到视网膜图像质量,光束位移和光束椭圆率的性能标准。用人造环形物和视网膜成像对受试者进行的测量证实了理论预测。还提出了与现成方法的比较。

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