Suppr超能文献

同步双光学调节人工晶状体。第1部分:光学和生物力学原理及设计考量。

Synchrony dual-optic accommodating intraocular lens. Part 1: optical and biomechanical principles and design considerations.

作者信息

McLeod Stephen D, Vargas Luis G, Portney Val, Ting Albert

机构信息

Department of Ophthalmology, University of California San Francisco, San Francisco, California, USA.

出版信息

J Cataract Refract Surg. 2007 Jan;33(1):37-46. doi: 10.1016/j.jcrs.2006.09.020.

Abstract

PURPOSE

To describe a dual-optic accommodating intraocular lens (IOL) based on theoretical considerations.

SETTING

University and independent research group.

METHODS

Ray-tracing analysis using optical modeling software (ZEMAXTM, Focus Software Inc., Tucson, Ariz) in a theoretical model eye was used to analyze lens configurations to optimize the accommodative and magnification effects of axial lens displacement. Finite-element modelling using a commercially available PC-based software package (COSMOS DesignSTAR) was applied to design the biomechanical parameters of the inter-optic articulations and optics.

RESULTS

Ray-tracing analysis indicated that a dual-optic design with a high plus-powered front optic coupled to a minus posterior optic produced greater change in conjugation power of the eye compared to a single-optic intraocular lens and that magnification effects were unlikely to account for improved near vision. Finite-element modelling indicated that the 2 optics can be linked by spring-loaded haptics that allow anterior and posterior axial displacement of the front optic in response to changes in ciliary body tone and capsular tension.

CONCLUSION

A dual-optic design linked by spring haptics increases the accommodative effect of axial optic displacement with minimal magnification effect and has promise for improving the performance of accommodative intraocular lenses.

摘要

目的

基于理论考量描述一种双光学部可调节人工晶状体(IOL)。

设置

大学及独立研究小组。

方法

在理论模型眼中使用光学建模软件(ZEMAXTM,Focus Software Inc.,亚利桑那州图森市)进行光线追迹分析,以分析晶状体结构,优化轴向晶状体移位的调节和放大效果。使用基于商用个人电脑的软件包(COSMOS DesignSTAR)进行有限元建模,以设计光学部间关节和光学部的生物力学参数。

结果

光线追迹分析表明,与单光学部人工晶状体相比,具有高正屈光力前光学部与负屈光力后光学部相结合的双光学部设计可使眼睛的共轭力产生更大变化,且放大效果不太可能解释近视力的改善。有限元建模表明,两个光学部可通过弹簧加载的襻相连,使前光学部能够根据睫状体张力和囊袋张力的变化进行前后轴向移位。

结论

通过弹簧襻相连的双光学部设计可增加轴向光学部移位的调节效果,同时使放大效果最小化,有望改善可调节人工晶状体的性能。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验