Miret Juan J, Camps Vicente J, García Celia, Caballero Maria T, Gonzalez-Leal Juan M
Group of Optics and Visual Perception. Department of Optics, Pharmacology and Anatomy, University of Alicante, San Vicente del Raspeig, Alicante, Spain.
Department of Condensed Matter Physics. Faculty of Sciences, University of Cadiz, Cadiz, Spain.
Graefes Arch Clin Exp Ophthalmol. 2025 Feb;263(2):451-465. doi: 10.1007/s00417-024-06628-1. Epub 2024 Sep 17.
The aim of this study was to develop a methodology, based on profilometer measurements to assess the optical behaviour of Intraocular Lenses (IOls). The "Modulation Transfer Function through-object" (MTF through-object) based on vergence object displacement was calculated for different pupil sizes and pseudophakic eyes. Tilt and decentration were also analysed in a realistic cornea eye model.
For comparison between the different IOLs, an optical quality criterion based on a minimum value the MTF through-object and the recognition of simulated vision optotypes was introduced. Five IOLs were used in this study: Tecnis Eyhance, Mini Well, Tecnis Symfony, Tecnis Synergy and RayOne EMV.
The technique was validated with previous methodologies. A general narrowing of the through-object MTF curve compared to the through-focus MTF curve was shown, resulting in greater distances between near and intermediate points and less depth of field around the far peak. The comparison between the IOLs showed that variations in corneal aberrations, pupil size and decentration caused relevant changes in IOL performance. A decrease of the SA produced a hypermetropic shift of the far focus between + 0.3 D and + 0.4 D. Most of IOLs worsen the optical quality as pupil size increased, even the MTF through-object shape changed. Decentration was an important factor in IOL implantation, causing a significant change in MTF through-object shape in most of IOLs.
This study highlights the need to evaluate pre-operative patients for corneal aberrations and pupillary size to have the best optical success after cataract surgery in multifocal or extended depth of focus IOLs.
What is known MTF(Modulation Transfer Function) through-focus curves (calculated in image space by moving the detector plane) can be obtained from optical bench assembly or from commercial devices. Recently, some studies proposed to characterize the lens surface design based on the profilometric measurements What is new A novel methodology based on profilometer measurements to assess the optical behaviour of Intraocular Lenses (IOls) was shown. The "Modulation Transfer Function through-object" based on vergence object displacement was introduced in order to analyse five premium IOLs. MTF through-object curve is more appropriate for studying clinical behaviour, as it provides further near and intermediate points distances and lower depth of focus around far peak compare to MTF through-focus curves. The optical behaviour of the five IOLs can vary considerably depending on the eye model and pupil size. The effect of tilt and decentration on the MTF through-object the IOLs was analysed.
本研究的目的是开发一种基于轮廓仪测量的方法,以评估人工晶状体(IOL)的光学性能。针对不同瞳孔大小和假晶状体眼,计算基于聚散物距位移的“透过物体调制传递函数”(MTF透过物体)。还在逼真的角膜眼模型中分析了倾斜和偏心情况。
为了比较不同的IOL,引入了基于MTF透过物体最小值和模拟视力视标的识别的光学质量标准。本研究使用了五种IOL:Tecnis Eyhance、Mini Well、Tecnis Symfony、Tecnis Synergy和RayOne EMV。
该技术已通过先前的方法进行了验证。与焦移MTF曲线相比,显示出透过物体MTF曲线普遍变窄,导致近点和中间点之间的距离更大,远峰值周围的景深更小。IOL之间的比较表明,角膜像差、瞳孔大小和偏心的变化会导致IOL性能发生相关变化。球差(SA)的降低会使远焦点产生+0.3 D至+0.4 D的远视性偏移。随着瞳孔大小增加,大多数IOL的光学质量会变差,甚至MTF透过物体的形状也会改变。偏心是IOL植入中的一个重要因素,在大多数IOL中会导致MTF透过物体形状发生显著变化。
本研究强调在白内障手术中植入多焦点或扩展焦深IOL后,为了获得最佳光学效果,需要对术前患者的角膜像差和瞳孔大小进行评估。
已知的情况 通过移动探测器平面在像空间中计算得到的焦移调制传递函数(MTF)曲线,可以从光学平台组件或商业设备中获得。最近,一些研究建议基于轮廓测量来表征镜片表面设计。新的内容 展示了一种基于轮廓仪测量来评估人工晶状体(IOL)光学性能的新方法。引入了基于聚散物距位移的“透过物体调制传递函数”,以分析五种高端IOL。MTF透过物体曲线更适合研究临床行为,因为与MTF焦移曲线相比,它提供了更远的近点和中间点距离以及远峰值周围更低的焦深。五种IOL在不同的眼模型和瞳孔大小下,其光学性能可能会有很大差异。分析了倾斜和偏心对IOL的MTF透过物体的影响。