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Energy Distribution between Distance and Near Images in Apodized Diffractive Multifocal Intraocular Lenses

机译:变径衍射多焦点人工晶状体中远近图像之间的能量分布

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Purpose.: To determine the energy distribution between the distance and near images formed in a model eye by spherical and aspheric apodized diffractive multifocal intraocular lenses (IOLs). Methods.: The IOL was inserted in a model eye with an artificial cornea with positive spherical aberration (SA) similar to that of the human cornea. The energy of the distance and near images, as a function of the pupil size, was experimentally obtained by image analysis. The level of SA on the IOL, which is pupil-sizea??dependent, was determined from simulations. The influence of the SA was deduced from results obtained in monofocal IOLs and by comparison of the experimentally obtained energy efficiency to theoretical results based solely on the diffractive profile of the IOL. Results.: In contrast with theoretical predictions, the energy efficiency of the distance image strongly decreased for large pupils, because of the high level of SA in the IOL. The decrease was smaller in the apodized diffractive multifocal lens with aspheric design. As for the near image, since the diffractive zone responsible for the formation of this image was the same in the spherical and aspheric lenses and the apertures involved were small (and so the level of SA), the results turned out to be similar for both designs. Conclusions.: For large pupils, the energy efficiency of the distance image is strongly affected by the level of SA, although aspheric IOLs perform slightly better than their counterparts with a spherical design. For small pupils, there are no differences between the spherical and aspheric IOLs.
机译:目的:确定通过球形和非球形变迹衍射多焦点人工晶状体(IOL)在模型眼睛中形成的远距图像和近距图像之间的能量分布。方法:将人工晶状体插入具有与人角膜相似的正球面像差(SA)的人工角膜模型眼中。通过图像分析,通过实验获得了远近图像的能量与瞳孔大小的函数。通过模拟确定了IOL上SA的水平,它取决于瞳孔大小。 SA的影响是从单焦点IOL中获得的结果推导出来的,并且通过将实验获得的能量效率与仅基于IOL的衍射曲线的理论结果进行比较来推论得出。结果:与理论预测相反,由于IOL中SA含量较高,因此对于大瞳孔,距离图像的能量效率大大降低。具有非球面设计的切趾衍射多焦点镜片的减小幅度较小。至于近图像,由于在球面和非球面透镜中负责形成该图像的衍射区相同,并且所涉及的孔径很小(因此SA的水平),因此两者的结果相似设计。结论:对于大瞳孔,远距离图像的能量效率受SA水平的强烈影响,尽管非球面IOL的性能略好于球形设计。对于小瞳孔,球形和非球形IOL之间没有差异。

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