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通过四阶和六阶球差组合优化主观焦深。

Optimizing the subjective depth-of-focus with combinations of fourth- and sixth-order spherical aberration.

作者信息

Benard Yohann, Lopez-Gil Norberto, Legras Richard

机构信息

CNRS, Laboratoire Aimé Cotton, F-91405 Orsay Cedex, France.

出版信息

Vision Res. 2011 Dec 8;51(23-24):2471-7. doi: 10.1016/j.visres.2011.10.003. Epub 2011 Oct 14.

Abstract

We optimize the subjective depth of focus (DoF) with combinations of spherical aberration (SA4) and secondary spherical aberration (SA6) in various levels. Subjective DoF was defined as the visual interval for which three 20/50 high-contrast letters was perceived acceptable (objectionable blur limits). We used an adaptive optics system to dynamically correct the observer's aberrations and control their accommodation. DoF was measured with a 0.18-D step on three non-presbyopic subjects. The target seen by the subjects was modified to include 25 combinations of SA4 and SA6 (i.e. 0, ± 0.15 and ± 0.30 μm) for 3, 4.5 and 6mm of pupil diameter. We found a mean DoF of 1.97D with a 3mm pupil size, which decreased by 28% with a 4.5mm pupil and by 34% with a 6mm pupil. For 6mm pupil we found an increase of subjective DoF of 45% and 64% with the addition of 0.3 and 0.6 μm of SA4, and of 52% and 117% with the addition of 0.15 and 0.3 μm of SA6. The largest DoF measured (4.78D) increased 3.6 times that of the naked eye and was found for a combination of opposite signs of SA4 and SA6 of 0.6 and 0.3 μm respectively. Reducing the pupil size minimized the effect of aberrations on subjective DoF. Combination of SA4 and SA6 of opposite sign could increase DoF more than three times for pupils larger than 4.5mm. Subjective DoF is well predicted by measuring the induced variation of vergence arising in the pupil size.

摘要

我们通过不同水平的球差(SA4)和二级球差(SA6)组合来优化主观焦深(DoF)。主观DoF被定义为三个20/50高对比度字母被认为可接受的视觉区间(令人反感的模糊极限)。我们使用自适应光学系统动态校正观察者的像差并控制其调节。在三名非老视受试者上以0.18 D的步长测量DoF。将受试者看到的目标修改为包括25种SA4和SA6的组合(即0、±0.15和±0.30μm),用于3、4.5和6mm的瞳孔直径。我们发现瞳孔大小为3mm时平均DoF为1.97D,瞳孔大小为4.5mm时DoF降低28%,瞳孔大小为6mm时DoF降低34%。对于6mm的瞳孔,添加0.3和0.6μm的SA4时,主观DoF分别增加45%和64%,添加0.15和0.3μm的SA6时,主观DoF分别增加52%和117%。测量到的最大DoF(4.78D)比裸眼增加了3.6倍,是分别为0.6和0.3μm的SA4和SA6相反符号组合的情况。减小瞳孔大小可将像差对主观DoF的影响降至最低。对于大于4.5mm的瞳孔,SA4和SA6相反符号的组合可使DoF增加三倍以上。通过测量瞳孔大小引起的聚散变化可以很好地预测主观DoF。

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