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Wavefront shaping to correct intraocular scattering

机译:波前整形以矫正眼内散射

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摘要

Cataracts is a common ocular pathology that increases the amount of intraocular scattering. It degrades the quality of vision by both blur and contrast reduction of the retinal images. In this work, we propose a non-invasive method, based on wavefront shaping (WS), to minimize cataract effects. For the experimental demonstration of the method, a liquid crystal on silicon (LCoS) spatial light modulator was used for both reproduction and reduction of the realistic cataracts effects. The LCoS area was separated in two halves conjugated with the eye's pupil by a telescope with unitary magnification. Thus, while the phase maps that induced programmable amounts of intraocular scattering (related to cataract severity) were displayed in a one half of the LCoS, sequentially testing wavefronts were displayed in the second one. Results of the imaging improvements were visually evaluated by subjects with no known ocular pathology seeing through the instrument. The diffracted intensity of exit pupil is analyzed for the feedback of the implemented algorithms in search for the optimum wavefront. Numerical and experimental results of the imaging improvements are presented and discussed.
机译:白内障是增加眼内散射量的常见眼病。它会降低视网膜图像的模糊度和对比度,从而降低视觉质量。在这项工作中,我们提出了一种基于波前成形(WS)的非侵入性方法,以最大程度地减少白内障影响。对于该方法的实验演示,使用了硅上液晶(LCoS)空间光调制器来再现和减少实际的白内障效果。 LCoS区域被一倍放大的望远镜分成与眼睛的瞳孔共轭的两半。因此,虽然在一半的LCoS中显示了引起可编程的眼内散射量(与白内障严重程度有关)的相位图,但在第二个LCoS中显示了相继测试的波前。成像改善的结果由没有已知眼部病理的受试者通过仪器进行视觉评估。分析出射光瞳的衍射强度,以获取所实现算法的反馈,以寻找最佳波前。提出并讨论了成像改进的数值和实验结果。

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