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利用人工晶状体技术优化高阶像差。

Optimizing higher-order aberrations with intraocular lens technology.

作者信息

Bellucci Roberto, Morselli Simonetta

机构信息

Ophthalmic Unit, Hospital and University of Verona, Italy.

出版信息

Curr Opin Ophthalmol. 2007 Feb;18(1):67-73. doi: 10.1097/ICU.0b013e3280121af1.

Abstract

PURPOSE OF REVIEW

Aspheric intraocular lens technology has been implemented during the past 5 years, and more and more intraocular lenses with different amounts of asphericity are becoming available. Despite the efficacy in the correction of spherical aberration and the good results on implanted eyes, the theoretical advantages of aspheric intraocular lenses are still controversial.

RECENT FINDINGS

All investigations showed the ability of the aspheric intraocular lenses to correct the positive spherical aberration of the cornea, with variable impact on the total eye wavefront but with constant advantages in the optical quality of the eyes as measured by the Modulation Transfer Function, the Point Spread Function, and the contrast sensitivity of implanted patients. Theoretical studies on model eyes underlined some possible limitations of aspheric intraocular lenses, especially sensitivity to decentration. In addition, the actual optical quality in implanted eyes is also affected by light scattering, a parameter missed by simple aberration analysis.

SUMMARY

Aspheric intraocular lenses effectively reduce spherical aberration in implanted eyes, with improvement in optical quality over the parent spherical intraocular lens. The advantages for implanted eyes could be limited by decentration, by small pupil diameter, and by reduced media transparency.

摘要

综述目的

非球面人工晶状体技术在过去5年中已得到应用,越来越多不同非球面程度的人工晶状体可供使用。尽管非球面人工晶状体在矫正球差方面有效,且植入眼的效果良好,但其理论优势仍存在争议。

最新发现

所有研究均表明非球面人工晶状体能够矫正角膜的正球差,对全眼球面像差的影响各不相同,但通过调制传递函数、点扩散函数以及植入患者的对比敏感度测量,其在改善眼睛光学质量方面具有持续优势。对模型眼的理论研究强调了非球面人工晶状体的一些可能局限性,尤其是对偏心的敏感性。此外,植入眼中的实际光学质量还受到光散射的影响,而简单像差分析会遗漏这一参数。

总结

非球面人工晶状体可有效降低植入眼中的球差,相较于传统球面人工晶状体,其光学质量有所提高。植入眼的优势可能会受到偏心、小瞳孔直径以及介质透明度降低的限制。

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