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将昏迷与散光相结合比单独使用散光能改善视网膜图像。

Combining coma with astigmatism can improve retinal image over astigmatism alone.

作者信息

de Gracia Pablo, Dorronsoro Carlos, Gambra Enrique, Marin Gildas, Hernández Martha, Marcos Susana

机构信息

Instituto de Optica Daza de Valdés, Consejo Superior de Investigaciones Científicas, Serrano 121, 28006, Madrid, Spain.

出版信息

Vision Res. 2010 Sep 15;50(19):2008-14. doi: 10.1016/j.visres.2010.07.014. Epub 2010 Jul 24.

Abstract

We demonstrate that certain combinations of non-rotationally symmetric aberrations (coma and astigmatism) can improve retinal image quality over the condition with the same amount of astigmatism alone. Simulations of the retinal image quality in terms of Strehl Ratio, and measurements of Visual Acuity under controlled aberrations with adaptive optics were performed, varying defocus, astigmatism and coma. Astigmatism ranged between 0 and 1.5D. Defocus ranged typically between -1 and 1D. The amount of coma producing best retinal image quality (for a given relative angle between astigmatism and coma) was computed and the amount was found to be different from zero in all cases (except for 0D of astigmatism). For example, for a 6mm pupil, in the presence of 0.5D of astigmatism, a value of coma of 0.23mum produced (for best focus) a peak improvement in Strehl Ratio by a factor of 1.7, over having 0.5D of astigmatism alone. The improvement holds over a range of >1.5D of defocus and peak improvements were found for amounts of coma ranging from 0.15mum to 0.35mum. We measured VA under corrected high order aberrations, astigmatism alone (0.5D) and astigmatism in combination with coma (0.23mum), with and without adaptive optics correction of all the other aberrations, in two subjects. We found that the combination of coma with astigmatism improved decimal VA by a factor of 1.28 (28%) and 1.47 (47%) in both subjects, over VA with astigmatism alone when all the rest of aberrations were corrected. Nevertheless, in the presence of typical normal levels of HOA the effect of the coma/astigmatism interaction is considerably diminished.

摘要

我们证明,某些非旋转对称像差(彗差和像散)的组合能够比仅存在相同量像散的情况改善视网膜图像质量。我们通过斯特列尔比来模拟视网膜图像质量,并在自适应光学系统控制像差的条件下测量视力,改变了离焦、像散和彗差。像散范围在0至1.5D之间。离焦范围通常在-1至1D之间。计算了产生最佳视网膜图像质量的彗差量(对于给定的像散和彗差之间的相对角度),发现该量在所有情况下(除了0D像散)均不为零。例如,对于6mm的瞳孔,在存在0.5D像散的情况下,0.23μm的彗差值(对于最佳聚焦)使斯特列尔比的峰值提高了1.7倍,优于仅存在0.5D像散的情况。这种改善在超过1.5D的离焦范围内都成立,并且发现彗差量在0.15μm至0.35μm之间时峰值改善最为明显。我们在两名受试者中测量了在高阶像差校正、单独像散(0.5D)以及像散与彗差组合(0.23μm)情况下的视力,有和没有对所有其他像差进行自适应光学校正。我们发现,当校正了所有其他像差时,在两名受试者中,彗差与像散的组合使小数视力分别比单独像散时提高了1.28倍(28%)和1.47倍(47%)。然而,在存在典型正常水平的高阶像差时,彗差/像散相互作用的效果会显著减弱。

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