...
首页> 外文期刊>Investigative ophthalmology & visual science >In vitro strehl ratios with spherical, aberration-free, average, and customized spherical aberration-correcting intraocular lenses.
【24h】

In vitro strehl ratios with spherical, aberration-free, average, and customized spherical aberration-correcting intraocular lenses.

机译:球面,无像差,平均和定制球面像差校正人工晶状体的体外strehl比率。

获取原文
获取原文并翻译 | 示例
           

摘要

PURPOSE: To determine in vitro image qualities of artificial eyes achieved with spherical, aberration-free, average spherical aberration-correcting, and customized spherical aberration-correcting IOLs in centered, decentered, and tilted positions. METHODS: The in vitro performance of these IOL models was determined by optical bench measurements. The experimental setup included a laser light source controlled by aperture stops that corresponded to 3- and 5-mm pupil apertures, an artificial eye with three alternative corneal models exhibiting low, intermediate, and high spherical aberration (SA), IOLs mounted to an immersed IOL holder that could be moved laterally and tilted, and a charge-coupled device camera and software to determine three-dimensional point spread function (PSF), modulation transfer function, and Strehl ratio. RESULTS: Differences among the various lens models turned out to be low for a 3-mm pupil. For a pupil aperture of 5 mm, customized IOLs showed the best results for perfect lens positioning. With ongoing decentration and tilt, customized IOLs rapidly lost their advantages, particularly in corneas with high SA and IOLs of high diopters. Spherical IOLs were always inferior to aberration-free IOLs. CONCLUSIONS: Reasonably well-centered aberration-correcting IOLs may provide considerably better image quality than conventional spherical IOLs. In the presence of significant postoperative decentration and tilt of the IOL, aberration-free IOLs are the safest option among the various intraocular lens designs.
机译:目的:确定在中心,偏心和倾斜位置使用球形,无像差,平均球面像差校正和定制的球面像差校正IOL所获得的人造眼睛的体外图像质量。方法:通过光具座测量来确定这些IOL模型的体外性能。实验装置包括一个由对应于3毫米和5毫米瞳孔的孔径光阑控制的激光光源,一个具有三种可选的,表现出低,中和高球面像差(SA)的角膜模型的人工眼,以及将IOL安装到浸入式可以横向移动和倾斜的IOL支架,以及一个电荷耦合设备摄像头和软件,用于确定三维点扩散函数(PSF),调制传递函数和Strehl比率。结果:对于3毫米瞳孔,各种镜片型号之间的差异很小。对于5 mm的瞳孔,定制的IOL显示出最佳的结果,可实现完美的镜片定位。随着偏心和倾斜的不断进行,定制的IOL迅速失去了优势,尤其是在具有高SA和高屈光度IOL的角膜中。球形IOL始终不如无像差IOL。结论:居中合理的像差校正IOL可以提供比传统球形IOL更好的图像质量。在IOL术后明显偏心和倾斜的情况下,在各种人工晶状体设计中,无像差的IOL是最安全的选择。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号