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基于浦肯野和Scheimpflug成像的人工晶状体对准

Intraocular lens alignment from purkinje and Scheimpflug imaging.

作者信息

Rosales Patricia, De Castro Alberto, Jiménez-Alfaro Ignacio, Marcos Susana

机构信息

Instituto de Óptica 'Daza de Valdés', Consejo Superior de Investigaciones Científicas, Madrid, Spain.

出版信息

Clin Exp Optom. 2010 Nov;93(6):400-8. doi: 10.1111/j.1444-0938.2010.00514.x. Epub 2010 Aug 25.

Abstract

The improved designs of intraocular lenses (IOLs) implanted during cataract surgery demand understanding of the possible effects of lens misalignment on optical performance. In this review, we describe the implementation, set-up and validation of two methods to measure in vivo tilt and decentration of IOLs, one based on Purkinje imaging and the other on Scheimpflug imaging. The Purkinje system images the reflections of an oblique collimated light source on the anterior cornea and anterior and posterior IOL surfaces and relies on the well supported assumption of the linearity of the Purkinje images with respect to IOL tilt and decentration. Scheimpflug imaging requires geometrical distortion correction and image processing techniques to retrieve the pupillary axis, IOL axis and pupil centre from the three-dimensional anterior segment image of the eye. Validation of the techniques using a physical eye model indicates that IOL tilt is estimated within an accuracy of 0.261 degree and decentration within 0.161 mm. Measurements on patients implanted with aspheric IOLs indicate that IOL tilt and decentration tend to be mirror symmetric between left and right eyes. The average tilt was 1.54 degrees and the average decentration was 0.21 mm. Simulated aberration patterns using custom models of the patients eyes, built using anatomical data of the anterior cornea and foveal position, the IOL geometry and the measured IOL tilt and decentration predict the experimental wave aberrations measured using laser ray tracing aberrometry on the same eyes. This reveals a relatively minor contribution of IOL tilt and decentration on the higher-order aberrations of the normal pseudophakic eye.

摘要

白内障手术中植入的人工晶状体(IOL)设计的改进需要了解晶状体偏心对光学性能可能产生的影响。在本综述中,我们描述了两种测量IOL体内倾斜和偏心的方法的实施、设置和验证,一种基于浦肯野成像,另一种基于Scheimpflug成像。浦肯野系统对斜准直光源在前角膜以及IOL前表面和后表面上的反射进行成像,并依赖于浦肯野图像相对于IOL倾斜和偏心呈线性这一得到充分支持的假设。Scheimpflug成像需要几何失真校正和图像处理技术,以便从眼睛的三维眼前节图像中获取瞳孔轴、IOL轴和瞳孔中心。使用物理眼模型对这些技术进行验证表明,IOL倾斜的估计精度在0.261度以内,偏心的估计精度在0.161毫米以内。对植入非球面IOL的患者进行的测量表明,IOL倾斜和偏心在左右眼之间往往呈镜像对称。平均倾斜度为1.54度,平均偏心度为0.21毫米。使用患者眼睛的定制模型模拟像差模式,该模型利用前角膜和黄斑位置的解剖数据、IOL几何形状以及测量的IOL倾斜和偏心构建而成,能够预测在同一只眼睛上使用激光光线追踪像差仪测量的实验性波前像差。这揭示了IOL倾斜和偏心对正常人工晶状体眼高阶像差的贡献相对较小。

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