Fondation Ophtalmologique A de Rothschild and Center of Expertise and Research in Optics for Clinicians, Paris, France.
J Cataract Refract Surg. 2011 Nov;37(11):2060-7. doi: 10.1016/j.jcrs.2011.05.047.
To theoretically and experimentally assess a new aspheric diffractive trifocal intraocular lens (IOL).
Centre Spatial de Liège, Liège, Belgium.
Evaluation of diagnostic test or technology.
The theoretical profile of the IOL was designed using software simulation and validated by optical calculation software tools that enabled complete theoretical characterization. These data resulted in a new aspheric diffractive trifocal IOL. The IOL theoretically allows improved intermediate vision without impairing near and far vision and favors distance vision in mesopic conditions without increasing halos or glare perception under dim light or large pupil conditions. The theoretical findings were compared with those of in vitro testing on the optical bench.
There was good agreement between the theoretical profile and achieved IOL profile. The simulated and achieved light distribution and focus distribution showed good concordance. The FineVision aspheric trifocal IOL provided intermediate addition at 1.75 diopters.
The combination of 2 diffractive profiles to achieve far, intermediate, and near correction is validated. Further clinical investigations are required to validate these principles.
Dr. Houbrechts has no financial or proprietary interest in any material or method mentioned. Additional disclosures are found in the footnotes.
从理论和实验两方面评估一款新的非球面衍射性三焦点人工晶状体(IOL)。
比利时列日空间中心。
诊断测试或技术的评估。
使用软件模拟设计 IOL 的理论轮廓,并通过光学计算软件工具进行验证,这些工具可实现全面的理论特性描述。这些数据产生了一款新的非球面衍射性三焦点 IOL。该 IOL 理论上可改善中间视力,而不会损害近视力和远视力,并在中光条件下有利于远视力,而在暗光或大瞳孔条件下不会增加晕影或眩光感知。理论发现与光学台上的体外测试结果进行了比较。
理论轮廓与实际 IOL 轮廓之间具有良好的一致性。模拟和实际的光分布和焦点分布显示出良好的一致性。FineVision 非球面三焦点 IOL 提供 1.75 屈光度的中间附加度数。
验证了 2 个衍射性轮廓相结合以实现远、中、近矫正的有效性。需要进一步的临床研究来验证这些原则。
Houbrechts 博士在任何提到的材料或方法方面均无财务或所有权利益。其他披露信息请在脚注中查看。