中国组织工程研究 ›› 2010, Vol. 14 ›› Issue (17): 3213-3216.doi: 10.3969/j.issn.1673-8225.2010.17.044

• 数字化骨科 digital orthopedics • 上一篇    下一篇

以ZEMAX光学设计软件实现光线追迹:分析人工晶体前移与人眼屈光调节的关系

朱海丰,张亚萍,李书光,黄柳宾,刘彦民   

  1. 中国石油大学(华东)物理科学与技术学院,山东省东营市  257061
  • 出版日期:2010-04-23 发布日期:2010-04-23
  • 作者简介:朱海丰☆,男,1977年生,河北省迁西县人,汉族,2007年南开大学毕业,博士,讲师,主要从事视觉光学及光学设计方面的研究。

Correlation of intraocular lens forward movement with human eye diopter adjustment

Zhu Hai-feng, Zhang Ya-ping, Li Shu-guang, Huang Liu-bin, Liu Yan-min   

  1. College of Physics Science and Technology China University of Petroleum (East China), Physical Science and Technology Institute, Dongying   257061, Shandong Province, China
  • Online:2010-04-23 Published:2010-04-23
  • About author:Zhu Hai-feng☆, Doctor, Lecturer, China University of Petroleum (East China), College of Physics Science and Technology, Dongying 257061, Shandong Province, China zhufeng_1997@163.com

摘要:

背景: 人工晶体在白内障术眼囊袋内可以前移,但目前还不能够对该动态调节过程中人眼屈光变化进行监测,临床数据的难以获得使人工晶体前移与引起的人眼屈光调节量之间的关系目前还未明确。
目的:观察人工晶体眼内移动对人眼屈光调节力的影响。
方法:基于Hwey-Lan Liou眼模型,采用ZEMAX光学设计软件实现光线追迹的方法研究了人工晶体在眼内的前移与人眼屈光调节量的关系。
结果与结论:人工晶体每前移一定的距离,人眼所获得的屈光调节量不恒定;调节量大小依赖于眼轴长度和所需植入的人工晶体,特别是眼轴长度;对于不同眼轴长度术眼中的人工晶体前移,人眼所获得的屈光调节量与眼轴长度呈负相关。

关键词: 眼睛模型, 光线追迹, 屈光调节, 眼轴长度, ZEMAX

Abstract:

BACKGROUND: The intraocular lens can move forward during cataract optic capsular surgery, but the changes in the human eye diopter cannot be monitored in such a dynamically adjustment process, it is difficult to obtain clinical data which could reveal the correlation between intraocular lens forward and human eye diopter adjustment.
OBJECTIVE: To observe the influence of intraocular lens movement on the adjustment of human eye diopter.
METHODS: Based on Hwey-Lan Liou eye model, using optical design software ZEMAX to realize ray tracing, the relationship of intraocular lens forward in the eye with the adjustment of human eye diopter was investigated.
RESULTS AND CONCLUSION: Once the intraocular lens forward for a certain distance, human eye obtained the amount of accommodating diopter was not constant; the adjustment amount depended on the axial length and the required intraocular lens implantation, especially in axial length; for the intraocular lens forward of the surgical eyes at different axial lengths, the amount of accommodating human eye diopter was negatively correlated with axial length.

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