Optical Bench Analysis of 2 Depth of Focus Intraocular Lenses.

Biomedicine Hub Pub Date : 2021-09-27 eCollection Date: 2021-09-01 DOI:10.1159/000519139
Andreas F Borkenstein, Eva-Maria Borkenstein, Holger Luedtke, Ruediger Schmid
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引用次数: 6

Abstract

Background: The aim of the study was to analyze the objective optical properties of 2 enhanced depth of focus (EDoF) intraocular lenses (IOLs) using optical bench analysis.

Methods: This experimental study investigates 2 new EDoF IOLs, the Alcon AcrySof IQ Vivity and the Bausch & Lomb LuxSmart Crystal, on the optical bench, using OptiSpheric IOL PRO2 (Trioptics, Germany) in order to assess the optical quality according to ISO 11979 with ISO-2 Cornea. IOLs (power 22.0 D) were evaluated regarding modulation transfer function (MTF) at 50 lp/mm and Strehl ratio (SR) using a 3.0-mm and a 4.5-mm aperture. In addition, wavefront measurements were obtained using WaveMaster® IOL 2 device (Trioptics, Germany), and USAF targets were analyzed.

Results: Centered: the MTF (mean) at 50 lp/mm (AcrySof IQ Vivity/LuxSmart Crystal) with 3.0 mm aperture was 0.250/0.257 and with 4.5 mm aperture 0.202/0.243. The SR (mean) with 3.0 mm aperture was 0.261/0.355 and with 4.5 mm aperture 0.176/0.206. Decentered by 1 mm: the MTF (mean) at 50 lp/mm (AcrySof IQ Vivity/LuxSmart Crystal) with 3.0 mm aperture was 0.266/0.247 and with 4.5 mm aperture 0.126/0.215. The SR (mean) with 3.0 mm aperture was 0.272/0.234 and with 4.5 mm aperture 0.133/0.183. Tilted by 5 degree: the MTF (mean) at 50 lp/mm (AcrySof IQ Vivity/LuxSmart Crystal) with 3.0 mm aperture was 0.221/0.360 and with 4.5 mm aperture 0.214/0.229. The SR (mean) with 3.0 mm aperture was 0.232/0.428 and with 4.5 mm aperture 0.225/0.229. The simulated visual function using USAF test targets showed corresponding qualitative results. Wavefront measurements proved a complex optical design. Higher order aberrations in the central part of the optics were modulated up to the 10th order to enhance the range of functional vision to near distance, leaving the peripheral parts of the optics aberration free or as aberration correcting.

Conclusion: The diversity of EDOF IOLs, their optics, and their respective impact on the vision quality must be understood in order to select the appropriate IOL in each individual case. This analysis of new, innovative IOL optics based on increased negative spherical aberration may help the ophthalmic surgeon to select the IOL which meets the individual requirements of the patient for best postoperative outcomes. It seems that there is no perfect IOL that is equally suitable for all patients, but the right choice is an individual, customized approach dealing with patients' expectations.

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2种聚焦深度人工晶体的光学台架分析。
背景:采用光学台架分析法分析2种增强聚焦深度(EDoF)人工晶体(iol)的物镜光学特性。方法:采用optisphere IOL PRO2 (Trioptics, Germany)在光学实验台上对爱尔康AcrySof IQ Vivity和Bausch & lomluxsmart Crystal两种新型EDoF IOL进行了实验研究,并根据ISO-2角膜的ISO 11979标准对光学质量进行了评估。使用3.0 mm和4.5 mm孔径对iol(功率22.0 D)在50 lp/mm下的调制传递函数(MTF)和Strehl比率(SR)进行评估。此外,使用WaveMaster®IOL 2设备(Trioptics,德国)获得波前测量,并对美国空军目标进行分析。结果:中心:3.0 mm孔径下50 lp/mm (AcrySof IQ Vivity/LuxSmart Crystal) MTF平均值为0.250/0.257,4.5 mm孔径下MTF平均值为0.202/0.243。孔径3.0 mm时的平均SR为0.261/0.355,孔径4.5 mm时的平均SR为0.176/0.206。偏心1毫米:50 lp/mm (AcrySof IQ Vivity/LuxSmart Crystal) 3.0 mm孔径下的MTF(平均值)为0.266/0.247,4.5 mm孔径下为0.126/0.215。孔径3.0 mm时的平均SR为0.272/0.234,孔径4.5 mm时的平均SR为0.133/0.183。倾斜5度:3.0 mm孔径下50 lp/mm (AcrySof IQ Vivity/LuxSmart Crystal)的MTF(平均值)为0.221/0.360,4.5 mm孔径为0.214/0.229。孔径3.0 mm时的平均SR为0.232/0.428,孔径4.5 mm时的平均SR为0.225/0.229。用美国空军测试靶模拟的视觉功能得到了相应的定性结果。波前测量证明了一种复杂的光学设计。光学元件中心部分的高阶像差被调制到10阶,以增强功能视觉的近距离范围,使光学元件的外围部分没有像差或作为像差校正。结论:必须了解EDOF人工晶状体的多样性、它们的光学特性及其对视力质量的影响,以便在每个病例中选择合适的人工晶状体。这种基于增加负球差的新型创新IOL光学分析可以帮助眼科医生选择符合患者个性化要求的IOL,以获得最佳的术后效果。似乎不存在适合所有患者的完美人工晶状体,但正确的选择是根据患者的期望进行个性化定制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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