Martínez-Espert Anabel, Ferrando Vicente, Garmendía-Martínez Adrián, Muñoz-Pérez Francisco M, Monsoriu Juan A, Furlan Walter D
Departamento de Óptica y Optometría y Ciencias de la Visión, Universitat de València, Burjassot, Spain.
Centro de Tecnologías Físicas, Universitat Politècnica de València, Valencia, Spain.
Biomed Opt Express. 2024 Nov 26;15(12):6999-7012. doi: 10.1364/BOE.540754. eCollection 2024 Dec 1.
In this work, we present two new multifocal intraocular lens (MIOL) designs, both based on the silver mean kinoform diffractive lens. We demonstrate that a single aperiodic diffractive profile can be used to create two different MIOLs: one with a kinoform structure and the other with a stepwise profile. Quantitative assessment of the designs was carried out using the through focus modulation transfer function and the area under the modulation transfer function for the prediction of their visual performance. Our results show that both designs exhibit nearly identical optical performance at the design wavelength (λ = 550 nm), though their intrinsic longitudinal chromatic aberration differs significantly. Given that diffractive extended depth of focus (EDoF) intraocular lenses are prone to image degradation due to dysphotopic phenomena, we also compared the halos generated by these two designs and found notable differences in their behavior. Furthermore, under photopic conditions, the proposed lens designs demonstrated the potential to achieve visual acuity values of 0.2 logMAR or better across a vergence range from approximately 0 to 2 D. Finally, to qualitatively assess the behavior of the MIOLs, an objective experimental evaluation was conducted using an adaptive optics visual simulator in a model eye. Experimental results align with the quantitative assessment of the proposed designs.
在这项工作中,我们展示了两种基于白银均值菲涅耳波带片衍射透镜的新型多焦点人工晶状体(MIOL)设计。我们证明,单一的非周期衍射轮廓可用于创建两种不同的MIOL:一种具有菲涅耳波带片结构,另一种具有阶梯状轮廓。使用全焦距调制传递函数和调制传递函数下的面积对设计进行了定量评估,以预测其视觉性能。我们的结果表明,尽管它们的固有纵向色差有显著差异,但两种设计在设计波长(λ = 550 nm)下都表现出几乎相同的光学性能。鉴于衍射型扩展焦深(EDoF)人工晶状体容易因弱光现象而导致图像退化,我们还比较了这两种设计产生的光晕,并发现它们的表现存在显著差异。此外,在明视条件下,所提出的晶状体设计显示出在大约0至2 D的聚散范围内实现0.2 logMAR或更好视力值的潜力。最后,为了定性评估MIOL的行为,在模型眼中使用自适应光学视觉模拟器进行了客观实验评估。实验结果与所提出设计的定量评估结果一致。