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高阶像差对景深的影响。

Impact of higher-order aberrations on depth-of-field.

作者信息

Zapata-Díaz Juan F, Marín-Franch Iván, Radhakrishnan Hema, López-Gil Norberto

机构信息

Grupo de Investigación en Ciencias de la Visión, Universidad de Murcia, Murcia, Spain.

Faculty of Biology, Medicine & Health, The University of Manchester, Manchester Academic Health Science Center, Manchester, UK.

出版信息

J Vis. 2018 Nov 1;18(12):5. doi: 10.1167/18.12.5.

Abstract

It is well known that depth-of-focus (DOF) is influenced by optical factors (such as pupil size and monochromatic aberrations). However, neural factors such as blur sensitivity and defocus adaptation may play an important role on the extent of DOF. A series of experiments were conducted to study if optical or neural factors are most pertinent in explaining the variability of DOF across subjects. An adaptive optics system with a black and white target, a 3.8-mm artificial pupil, and a subjective criterion (based on objectionable blur) were used to measure depth of field ([DOFi]; DOF computed in the object space) in 11 participants, after at least 6 min of adaptation. This was done under three conditions: (a) with their own higher order aberrations (HOA); (b) after correction of their monochromatic HOA; and (c) after altering the HOA pattern for some participants to reflect the HOA pattern measured for a different participant. Natural DOFi and DOFi after HOA correction were positively correlated (R2 = 0.461), but a significant decrease in DOFi (21% on average) was found after HOA correction (p = 0.042). Effect of HOA on the intersubject variability of DOFi was 3.9 times smaller than the effect of the image neural processing. This study shows that DOFi depends on both optical and neural factors, but the latter seems to play a more important role than the former.

摘要

众所周知,焦深(DOF)受光学因素(如瞳孔大小和单色像差)影响。然而,诸如模糊敏感度和散焦适应等神经因素可能在焦深范围方面发挥重要作用。进行了一系列实验以研究光学因素还是神经因素在解释不同受试者焦深变异性方面最为相关。使用具有黑白目标、3.8毫米人工瞳孔和主观标准(基于可察觉的模糊)的自适应光学系统,在至少6分钟适应后,测量11名参与者的景深([DOFi];在物空间中计算的DOF)。这在三种条件下进行:(a)存在其自身的高阶像差(HOA);(b)校正其单色HOA之后;以及(c)对一些参与者改变HOA模式以反映为另一名参与者测量的HOA模式。HOA校正后的自然DOFi和DOFi呈正相关(R2 = 0.461),但HOA校正后发现DOFi显著降低(平均降低21%)(p = 0.042)。HOA对DOFi受试者间变异性的影响比图像神经处理的影响小3.9倍。这项研究表明,DOFi取决于光学和神经因素,但后者似乎比前者发挥更重要的作用。

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