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模拟继发性球差对屈光不正、图像质量和焦深的影响。

Modelling the effects of secondary spherical aberration on refractive error, image quality and depth of focus.

作者信息

Xu Renfeng, Bradley Arthur, López Gil Norberto, Thibos Larry N

机构信息

School of Optometry, Indiana University, Bloomington, USA.

出版信息

Ophthalmic Physiol Opt. 2015 Jan;35(1):28-38. doi: 10.1111/opo.12185.

Abstract

PURPOSE

To examine the role of Zernike secondary spherical aberration and its component terms on refraction, image quality and depth of focus.

METHODS

Computational methods were used to define wavefronts with controlled levels of r(6) , r(4) and r(2) terms, and image quality associated with these terms for a range of target vergences. Target vergences that generated maximum image quality were used as an objective measures of refractive error.

RESULTS

Unlike primary Zernike spherical aberration, which generates peak image quality with a near paraxial focus, in the absence of other higher order aberrations, peak image quality with secondary spherical aberration is achieved with a near marginal focus. When alone, positive primary and secondary spherical aberration induce small hyperopic shifts in refraction, but in the presence of other higher order aberrations, secondary spherical aberration can induce significant myopic shifts in refractive error, as predicted by the combined lower order r(4) & r(2) component of Z60. The predicted expansion in depth of focus associated with increased primary or secondary spherical aberration is mostly absent if a strict image quality criterion is applied. The expansion of depth of focus observed with a low image quality criterion when opposite sign Z40 and Z60 are combined is primarily due to the elevated r(4) term.

CONCLUSIONS

Secondary Zernike spherical aberration can have a significant impact on refractive error, image quality and depth of focus, but mostly due to the lower order components within this polynomial. Our analysis shows that the r(6) term that defines secondary spherical aberration actually narrows rather than expands depth of focus, when in the presence of the r(4) term within Z60. Therefore, a multifocal lens generated with exclusively primary spherical aberration is likely to be more effective than one that includes opposite sign of primary and secondary spherical aberration.

摘要

目的

研究泽尼克二级球差及其分量项在屈光、图像质量和焦深方面的作用。

方法

采用计算方法定义具有受控水平的r(6)、r(4)和r(2)项的波前,并针对一系列目标聚散度确定与这些项相关的图像质量。将产生最大图像质量的目标聚散度用作屈光不正的客观测量指标。

结果

与在近傍轴焦点处产生峰值图像质量的初级泽尼克球差不同,在不存在其他高阶像差的情况下,二级球差的峰值图像质量是在近边缘焦点处实现的。单独存在时,正的初级和二级球差会导致屈光出现小的远视偏移,但在存在其他高阶像差时,如Z60的组合低阶r(4)和r(2)分量所预测的那样,二级球差可导致屈光不正出现显著的近视偏移。如果应用严格的图像质量标准,与初级或二级球差增加相关的预测焦深扩展大多不存在。当相反符号的Z40和Z60组合时,在低图像质量标准下观察到的焦深扩展主要是由于r(4)项升高。

结论

泽尼克二级球差可对屈光不正、图像质量和焦深产生显著影响,但主要是由于该多项式内的低阶分量。我们的分析表明,在Z60中存在r(4)项时,定义二级球差的r(6)项实际上会使焦深变窄而非扩展。因此,仅由初级球差产生的多焦点透镜可能比包含初级和二级球差相反符号的透镜更有效。

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