首页> 外文期刊>Clinical & experimental optometry: journal of the Australian Optometrical Association >Intraocular lens alignment from purkinje and Scheimpflug imaging.
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Intraocular lens alignment from purkinje and Scheimpflug imaging.

机译:从浦肯野和人工晶状体对齐Scheimpflug imaging。

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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.
机译:眼内晶状体(人工晶体)的改进设计植入在白内障手术需求对镜头的可能的影响的理解对光学性能失调。审查,我们描述了实现,设置和验证两种方法测量体内倾斜和偏心的人工晶体,一个基于浦肯野Scheimpflug成像和其他成像。斜平行光源的反射前角膜和前部和后部晶体表面和依赖于良好支持假设线性的浦肯野图像对晶体倾斜和偏心。Scheimpflug成像需要几何失真校正和图像处理技术获取瞳孔轴,人工晶体从三维轴和瞳孔中心前部分的形象。使用物理眼模型的技术表明,晶体内倾斜估计0.261度和偏心的准确性0.161毫米。非球面人工晶体表明晶体和倾斜偏心之间往往是镜像对称左派和右派的眼睛。度和平均偏心是0.21毫米。使用自定义模型模拟畸变模式病人的眼睛,使用解剖数据前角膜和视网膜中央凹的位置的晶体几何和测量晶体倾斜偏心预测实验波形畸变测量用激光射线追踪aberrometry在相同的眼睛。相对较小的贡献的晶体和倾斜偏心的高阶像差人工晶状体眼眼睛正常的临床效果。

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