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多焦点衍射人工晶状体的空间色觉

Spatio-chromatic vision with multifocal diffractive intraocular lens.

作者信息

Millan Maria S, Clavé Laura, Torrents Aurora, Armengol Jesús, Vega Fidel

机构信息

Applied Optics and Image Processing Research Group, Universitat Politècnica de Catalunya-BarcelonaTech, C/ Violinista Vellsolà, 37, Terrassa, 08222, Barcelona, Spain.

Mataró Hospital, Consorci Sanitari del Maresme, Barcelona, Spain.

出版信息

Eye Vis (Lond). 2023 Aug 1;10(1):32. doi: 10.1186/s40662-023-00350-5.

Abstract

BACKGROUND

This study aims to detect alterations in the spatio-chromatic pseudophakic vision produced by multifocal diffractive intraocular lenses (IOLs) and provides a physical interpretation.

METHODS

In vitro characterization of the imaging performance of two diffractive IOLs: AT LISA Tri (Zeiss) and FineVision (PhysIOL) in on-bench model eye illuminated with red (R, 625 nm), green (G, 530 nm) and blue (B, 455 nm) lights. We used the metrics: energy efficiency (EE), area under the modulation transfer function, longitudinal chromatic aberration (LCA), and halo intensity. Through-focus (TF) analysis and calculation of the expected defocus curve under white (W) daylight were included. In vivo visual acuity (VA) of 50 pseudophakics (60 eyes) was assessed under W, R, G, B lights at far and near. Two clinical experiments evaluated LCA and R, G, B TF-EE effects on pseudophakic vision and their relative importance.

RESULTS

Clinical mean VA values under W light agreed with the predicted values at far and near for both IOLs. LCA measurements and R, G, B TF-EE curves were consistent with their lens design based on the 0th and 1st diffraction orders operative for far and near vision, respectively. LCA effects were compensated at near but noticed at far (- 0.75 D under B light). We detected strong asymmetry in visual resolution depending on the object distance and the illuminating wavelength-red predominance at far, blue predominance at near-in consistency with the TF-EE measurements.

CONCLUSIONS

Diffractive multifocal IOL designs produce asymmetries in the spatio-chromatic vision of pseudophakics beyond the alterations strictly due to LCA. VA asymmetry for far/near object distance under R and B illumination is clinically detectable in subjects implanted with IOLs with 0th and 1st diffraction orders for far and near vision, respectively. Such VA asymmetry cannot be explained solely from the influence of defocus, as would be derived from a chromatic difference of power, but mainly from the wavelength dependence of the EE.

摘要

背景

本研究旨在检测多焦点衍射人工晶状体(IOL)产生的空间色觉伪晶状体视觉变化并给出物理解释。

方法

在台式模型眼中对两种衍射IOL(AT LISA Tri,蔡司;FineVision,PhysIOL)的成像性能进行体外表征,该模型眼用红色(R,625纳米)、绿色(G,530纳米)和蓝色(B,455纳米)光照明。我们使用了以下指标:能量效率(EE)、调制传递函数下的面积、纵向色差(LCA)和光晕强度。包括通过焦点(TF)分析以及白色(W)日光下预期散焦曲线的计算。在50名假晶状体患者(60只眼)的体内,在远、近视力下于W、R、G、B光下评估视力(VA)。两项临床实验评估了LCA以及R、G、B TF - EE对假晶状体视觉的影响及其相对重要性。

结果

两种IOL在W光下的临床平均VA值在远、近视力时均与预测值相符。LCA测量以及R、G、B TF - EE曲线分别与基于用于远、近视力的第零和第一衍射级的晶状体设计一致。LCA效应在近视力时得到补偿,但在远视力时可观察到(在B光下为 - 0.75 D)。我们检测到视觉分辨率存在强烈的不对称性,这取决于物距和照明波长——远视力时红色占主导,近视力时蓝色占主导——与TF - EE测量结果一致。

结论

衍射多焦点IOL设计在假晶状体的空间色觉中产生不对称性,超出了严格由LCA引起的变化。对于分别具有用于远、近视力的第零和第一衍射级的IOL植入患者,在R和B照明下远/近物距的VA不对称性在临床上是可检测到的。这种VA不对称性不能仅从散焦的影响来解释,散焦影响如因屈光力色差所产生的那样,而主要是由于EE的波长依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3339/10391998/a5adf74edf43/40662_2023_350_Fig1_HTML.jpg

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