Suppr超能文献

通过浦肯野和申普夫鲁格成像技术对眼内晶状体在体内的倾斜和偏心进行研究。验证性研究。

Tilt and decentration of intraocular lenses in vivo from Purkinje and Scheimpflug imaging. Validation study.

作者信息

de Castro Alberto, Rosales Patricia, Marcos Susana

机构信息

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

出版信息

J Cataract Refract Surg. 2007 Mar;33(3):418-29. doi: 10.1016/j.jcrs.2006.10.054.

Abstract

PURPOSE

To measure tilt and decentration of intraocular lenses (IOLs) with Scheimpflug and Purkinje imaging systems in physical model eyes with known amounts of tilt and decentration and patients.

SETTING

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

METHODS

Measurements of IOL tilt and decentration were obtained using a commercial Scheimpflug system (Pentacam, Oculus), custom algorithms, and a custom-built Purkinje imaging apparatus. Twenty-five Scheimpflug images of the anterior segment of the eye were obtained at different meridians. Custom algorithms were used to process the images (correction of geometrical distortion, edge detection, and curve fittings). Intraocular lens tilt and decentration were estimated by fitting sinusoidal functions to the projections of the pupillary axis and IOL axis in each image. The Purkinje imaging system captures pupil images showing reflections of light from the anterior corneal surface and anterior and posterior lens surfaces. Custom algorithms were used to detect the Purkinje image locations and estimate IOL tilt and decentration based on a linear system equation and computer eye models with individual biometry. Both methods were validated with a physical model eye in which IOL tilt and decentration can be set nominally. Twenty-one eyes of 12 patients with IOLs were measured with both systems.

RESULTS

Measurements of the physical model eye showed an absolute discrepancy between nominal and measured values of 0.279 degree (Purkinje) and 0.243 degree (Scheimpflug) for tilt and 0.094 mm (Purkinje) and 0.228 mm (Scheimpflug) for decentration. In patients, the mean tilt was less than 2.6 degrees and the mean decentration less than 0.4 mm. Both techniques showed mirror symmetry between right eyes and left eyes for tilt around the vertical axis and for decentration in the horizontal axis.

CONCLUSIONS

Both systems showed high reproducibility. Validation experiments on physical model eyes showed slightly higher accuracy with the Purkinje method than the Scheimpflug imaging method. Horizontal measurements of patients with both techniques were highly correlated. The IOLs tended to be tilted and decentered nasally in most patients.

摘要

目的

使用Scheimpflug和浦肯野成像系统,测量已知倾斜和偏心量的物理模型眼以及患者眼内晶状体(IOL)的倾斜和偏心情况。

设置

西班牙马德里科学研究高级理事会光学研究所Daza de Valdés研究所。

方法

使用商用Scheimpflug系统(Pentacam,Oculus)、定制算法和定制的浦肯野成像设备测量IOL的倾斜和偏心。在不同子午线上获取25张眼前节的Scheimpflug图像。使用定制算法处理图像(几何畸变校正、边缘检测和曲线拟合)。通过对每个图像中瞳孔轴和IOL轴的投影拟合正弦函数来估计IOL的倾斜和偏心。浦肯野成像系统捕获显示来自角膜前表面以及晶状体前、后表面的光反射的瞳孔图像。使用定制算法检测浦肯野图像位置,并基于线性系统方程和具有个体生物测量数据的计算机眼模型估计IOL的倾斜和偏心。两种方法均在可标称设置IOL倾斜和偏心的物理模型眼中进行了验证。使用这两种系统对12例植入IOL的患者的21只眼睛进行了测量。

结果

物理模型眼的测量结果显示,倾斜的标称值与测量值之间的绝对差异为浦肯野法0.279度、Scheimpflug法0.243度,偏心的绝对差异为浦肯野法0.094 mm、Scheimpflug法0.228 mm。在患者中,平均倾斜小于2.6度,平均偏心小于0.4 mm。两种技术均显示,垂直轴周围的倾斜以及水平轴上的偏心在右眼和左眼之间呈镜像对称。

结论

两种系统均显示出高重现性。物理模型眼的验证实验表明,浦肯野法的准确性略高于Scheimpflug成像法。两种技术对患者的水平测量高度相关。大多数患者的IOL倾向于向鼻侧倾斜和偏心。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验