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屈光性扩展焦深人工晶状体的模态和区域波前测量比较。

Comparison of modal and zonal wavefront measurements of refractive extended depth of focus intraocular lenses.

作者信息

Bang Seung Pil, Jung HaeWon, Li Kaccie Y, Yoon Geunyoung

机构信息

Department of Biomedical Engineering, University of Rochester, Rochester, NY, USA.

College of Optometry, University of Houston, Houston, TX, USA.

出版信息

Biomed Opt Express. 2024 Feb 13;15(3):1618-1629. doi: 10.1364/BOE.513529. eCollection 2024 Mar 1.

Abstract

Extended depth-of-focus (EDoF) intraocular lenses (IOLs) are typically evaluated using commercially available aberrometers. Given the intricate optical design of these IOLs, employing an appropriate wavefront reconstruction method with a sufficient sampling resolution of the aberrometer is crucial. A high-resolution Shack-Hartmann wavefront sensor was developed by magnifying the pupil aperture by a factor of five onto a lenslet array (pitch: 133 µm) and utilizing a full-frame CMOS sensor (24 by 36 mm), resulting in a 26.6 µm sampling resolution. Zonal wavefront reconstruction was used and compared with Zernike-based modal wavefront reconstruction to retain detailed local slope irregularities. Four refractive EDoF IOLs with a power of 20D were examined, and the wavefront difference between the zonal and modal methods, expressed as the root mean squared error (RMSE), remained significant for two of the IOLs up to the 16-order Zernike spherical aberrations (SAs). Conversely, a negligibly small RMSE was observed for the other two IOLs, as long as the Zernike SAs were higher than the 6 order. The raytracing simulation results from the zonal wavefronts exhibited a stronger correlation with the results of recent optical bench studies than those from the modal wavefronts. The study suggests that certain recent refractive EDoF IOLs possess a complex optical profile that cannot be adequately characterized by limited orders of SAs.

摘要

扩展焦深(EDoF)人工晶状体(IOL)通常使用市售的像差仪进行评估。鉴于这些IOL复杂的光学设计,采用具有足够采样分辨率的合适波前重建方法至关重要。通过将瞳孔孔径放大五倍投射到微透镜阵列(间距:133 µm)上并使用全画幅CMOS传感器(24×36 mm),开发了一种高分辨率的夏克-哈特曼波前传感器,从而实现了26.6 µm的采样分辨率。采用区域波前重建,并与基于泽尼克的模态波前重建进行比较,以保留详细的局部斜率不规则性。检查了四个屈光度为20D的折射型EDoF IOL,对于其中两个IOL,直到16阶泽尼克球差(SA),区域法和模态法之间的波前差异以均方根误差(RMSE)表示仍很显著。相反,对于另外两个IOL,只要泽尼克SA高于6阶,观察到的RMSE就小到可以忽略不计。区域波前的光线追迹模拟结果与最近的光学平台研究结果的相关性比模态波前的更强。该研究表明,某些最近的折射型EDoF IOL具有复杂的光学轮廓,无法通过有限阶的SA充分表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22bc/10942709/f6bbb1a6083c/boe-15-3-1618-g001.jpg

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