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大焦深人工晶体的设计

饶丰

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饶丰. 大焦深人工晶体的设计[J]. , 2012, 5(5): 485-492. doi: 10.3788/CO.20120505.0485
引用本文: 饶丰. 大焦深人工晶体的设计[J]. , 2012, 5(5): 485-492.doi:10.3788/CO.20120505.0485
RAO Feng. Design of multi-focus intraocular lenses[J]. Chinese Optics, 2012, 5(5): 485-492. doi: 10.3788/CO.20120505.0485
Citation: RAO Feng. Design of multi-focus intraocular lenses[J].Chinese Optics, 2012, 5(5): 485-492.doi:10.3788/CO.20120505.0485

大焦深人工晶体的设计

doi:10.3788/CO.20120505.0485
基金项目:

国家自然科学基金资助项目(No.60438030,No.60777011);江苏检验检疫基金资助项目(No.2011KJ24)

详细信息
    通讯作者:

    饶丰

  • 中图分类号:O435.2;R776

Design of multi-focus intraocular lenses

  • 摘要:运用Zemax光学设计软件构建Liou-Brennan眼模型,设计了增大焦深的非球面、折射型多焦点和衍射型多焦点人工晶体,并用点列图和视锐度分析了所设计的人工晶体的光学质量。对于非球面人工晶体,在3 mm瞳孔下,当人眼无球差时,最佳视锐度相当高,但焦深仅为1.4 m-1;当人眼球差为0.4时,最佳视锐度可达0.9,焦深达2.2 m-1,同时在整个焦深范围内视觉质量均优越。对于衍射型和折射型多焦点人工晶体,在明视条件下,虽然视远和视近时视觉质量良好,但是中间距离的视锐度0.5。衍射型多焦点人工晶体只有81%的光能用于成像,远近焦点能量均分,且与瞳孔大小无关;折射型多焦点人工晶体的远近焦点能量与瞳孔大小相关。设计的人工晶体均能增大人眼的焦深,但各有优缺点,临床上应该酌情选用。

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出版历程
  • 收稿日期:2012-06-12
  • 修回日期:2012-08-15
  • 刊出日期:2012-10-10

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