首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >System design considerations to improve isoplanatism for adaptive optics retinal imaging
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System design considerations to improve isoplanatism for adaptive optics retinal imaging

机译:系统设计考虑因素,以改善自适应光学视网膜成像的等滑性

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Adaptive optics (AO) retinal images are limited by anisoplanatism; wavefront shape varies across the field of view such that only a limited area can achieve diffraction-limited image quality at one time. We explored three alternative AO modalities designed to reduce this effect, drawn from work in astronomy. Optical design analysis and computer modeling was undertaken to predict the benefit of each modality for various schematic eyes and various complexities of the imaging system. Off-axis performance was found to be limited by system parameters and not by the eye itself, due to the inherent off-axis characteristics of the eye's gradient index lens. This rendered the alternative AO modalities ineffectual compared with conventional AO but did suggest several methods by which anisoplanatism may be reduced by altering the design of conventional AO systems. Several of these design possibilities were explored with further modeling. The best-performing method involved the replacement of system lenses with gradient index versions inspired by the human eye lens. Mirror-based relay optics also demonstrated good off-axis performance, but their advantage was lost in regions of the system suffering from uncorrected higher-order aberration. Incorporating "off-the-plane" beam deviations ameliorated this loss substantially. In this work we also show, to our knowledge for the first time, that the ideal location of a single AO corrector need not lie in the pupil plane.
机译:自适应光学(AO)视网膜图像受到各向异性的限制。波前形状在整个视场中会发生变化,因此一次只有有限的区域才能获得衍射受限的图像质量。从天文学的工作中,我们探索了三种旨在降低这种影响的AO模式。进行了光学设计分析和计算机建模,以预测每种模式对各种示意图眼和成像系统各种复杂性的好处。由于眼睛的渐变折射率镜片固有的离轴特性,发现离轴性能受到系统参数的限制,而不受眼睛本身的限制。与常规AO相比,这使替代AO模态无效,但确实提出了几种方法,可以通过改变常规AO系统的设计来减少各向异性。通过进一步的建模探索了其中几种设计可能性。最佳性能的方法是用受人眼镜片启发的渐变指数版本替换系统镜片。基于镜面的中继光学器件也表现出良好的离轴性能,但是在遭受未经校正的高阶像差影响的系统区域中,它们的优势消失了。合并“平面外”光束偏差可显着改善这种损耗。在我们的工作中,我们还首次证明,单个AO校正器的理想位置不必位于光瞳平面内。

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