Marcos Susana, Artal Pablo, Lundström Linda, Yoon Geunyoung
Center for Visual Science, The Institute of Optics, Flaum Eye Institute. University of Rochester, New York, USA.
Laboratorio de Optica, Universidad de Murcia, Spain.
Biomed Opt Express. 2025 Feb 13;16(3):1025-1042. doi: 10.1364/BOE.546971. eCollection 2025 Mar 1.
Cataract surgery requires selecting an intraocular lens (IOL), whose design affects visual outcomes. Traditional IOL evaluation relies on optical models and bench testing, but these methods fall short in simulating perceptual factors crucial to patient experience. Visual simulators, based on different principles including adaptive optics, temporal multiplexing or physical projection of the IOLs, now allow patients and clinicians to preview and compare different IOL designs preoperatively. By simulating real-world interactions of the eye's optics and the visual system with IOLs, these simulators enhance the patient decision-making process, enable personalized cataract surgery, and can aid in regulatory assessments of IOLs by incorporating pre-operative patient-reported visual outcomes. Visual simulators incorporate deformable mirrors, spatial light modulators and optotunable lenses as dynamic elements to simulate monofocal, multifocal and extended depth-of-focus IOLs, including newer designs aimed at improving contrast sensitivity, expanding depth of focus, and minimizing visual disturbances. With ongoing advancements, these simulators hold potential for transforming IOL design, regulatory processes, and patient care by providing realistic and patient-centered visual assessments, ultimately leading to more successful, individualized surgical outcomes.
白内障手术需要选择人工晶状体(IOL),其设计会影响视觉效果。传统的人工晶状体评估依赖于光学模型和台架测试,但这些方法在模拟对患者体验至关重要的感知因素方面存在不足。基于包括自适应光学、时间复用或人工晶状体物理投影等不同原理的视觉模拟器,现在允许患者和临床医生在术前预览和比较不同的人工晶状体设计。通过模拟眼睛光学系统和视觉系统与人工晶状体在现实世界中的相互作用,这些模拟器增强了患者的决策过程,实现了个性化白内障手术,并且通过纳入术前患者报告的视觉结果,有助于对人工晶状体进行监管评估。视觉模拟器将可变形镜、空间光调制器和光调谐透镜作为动态元件,以模拟单焦点、多焦点和扩展焦深人工晶状体,包括旨在提高对比度敏感度、扩大焦深和最小化视觉干扰的更新设计。随着不断进步,这些模拟器通过提供现实且以患者为中心的视觉评估,在改变人工晶状体设计、监管流程和患者护理方面具有潜力,最终带来更成功、个性化的手术结果。