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从非球面人工晶状体眼的角膜形状到眼波前像差:人工晶状体个性化定制的可行性

From corneal shape to ocular wavefront in eyes with aspheric IOLs: the feasibility of IOL customisation.

作者信息

de Jong Tim, Canovas Carmen, Weeber Henk, Jansonius Nomdo M

机构信息

Department of Ophthalmology, University of Groningen, University Medical Center Groningen, Groningen, the Netherlands.

AMO Groningen B.V., Groningen, the Netherlands.

出版信息

Ophthalmic Physiol Opt. 2016 Jan;36(1):43-50. doi: 10.1111/opo.12258. Epub 2015 Oct 21.

Abstract

PURPOSE

To determine if it is possible to predict the ocular wavefront aberrations of eyes with an aspheric IOL from the corneal shape and other readily available eye characteristics. A reliable prediction is a prerequisite for future IOL customisation.

METHODS

Sixty pseudophakic eyes with aspheric IOLs of 60 patients were included. The corneal shape and the ocular wavefront aberrations were measured postoperatively with a Scheimpflug camera and an aberrometer, respectively. The elevation data of the anterior corneal surface were fitted by Zernike polynomials. Linear regression models for the Zernike coefficients describing the ocular wavefront aberrations up till the fourth order were determined, with as independent variables the Zernike coefficients describing the corneal shape, the eye (right/left), IOL power, and axial length.

RESULTS

Linear regression equations with an explained variance (adjusted R-square) above 0.50 were found for five Zernike aberration terms: defocus (z(2,0); adjusted R-square 0.90), the astigmatism terms (0.81 for oblique astigmatism [z(2,-2)] and 0.88 for regular astigmatism [z(2,2)]), vertical coma (z(3,-1); 0.52), and spherical aberration (z(4,0); 0.71).

CONCLUSION

The defocus, astigmatism, vertical coma, and spherical aberration terms of the ocular wavefront are strongly associated with the corneal shape in pseudophakic eyes and may thus be predicted from the corneal shape and other eye characteristics.

摘要

目的

确定能否根据角膜形状及其他易于获取的眼部特征来预测植入非球面人工晶状体眼的眼波前像差。可靠的预测是未来人工晶状体个性化定制的前提条件。

方法

纳入60例患者的60只植入非球面人工晶状体的假晶状体眼。术后分别使用Scheimpflug相机和像差仪测量角膜形状和眼波前像差。用Zernike多项式拟合角膜前表面的高度数据。确定用于描述直至四阶眼波前像差的Zernike系数的线性回归模型,将描述角膜形状、眼(右/左)、人工晶状体度数和眼轴长度的Zernike系数作为自变量。

结果

对于五个Zernike像差项,发现解释方差(调整R平方)高于0.50的线性回归方程:散焦(z(2,0);调整R平方0.90)、散光项(斜轴散光[z(2,-2)]为0.81,规则散光[z(2,2)]为0.88)、垂直彗差(z(3,-1);0.52)和球差(z(4,0);0.71)。

结论

假晶状体眼的眼波前像差中的散焦、散光、垂直彗差和球差项与角膜形状密切相关,因此可根据角膜形状和其他眼部特征进行预测。

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