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使用哈特曼-夏克传感器测量圆锥角膜患者的波前像差。

Wavefront aberrations measured with Hartmann-Shack sensor in patients with keratoconus.

作者信息

Maeda Naoyuki, Fujikado Takashi, Kuroda Teruhito, Mihashi Toshifumi, Hirohara Yoko, Nishida Kohji, Watanabe Hitoshi, Tano Yasuo

机构信息

Department of Ophthalmology, Osaka University Medical School, Suita, Japan.

出版信息

Ophthalmology. 2002 Nov;109(11):1996-2003. doi: 10.1016/s0161-6420(02)01279-4.

Abstract

OBJECTIVE

To compare the ocular wavefront aberrations of normal and keratoconic eyes and to describe the characteristics of the higher-order aberrations in eyes with keratoconus.

DESIGN

Prospective case control and observational study.

PARTICIPANTS

Thirty-five keratoconic eyes and thirty-eight normal controls.

METHODS

Higher-order aberrations in refraction were measured with a wavefront sensor, and those aberrations resulting from the cornea were evaluated by videokeratographic data.

MAIN OUTCOME MEASURES

Coma-like (S(3 + 5)), spherical-like (S(4 + 6)), and total (S(3 + 4 + 5 + 6)) higher-order aberrations in both refraction and the cornea.

RESULTS

The mean +/- standard deviation of S(3 + 5) (1.88 +/- 1.16), S(4 + 6) (0.70 +/- 0.55), and S(3 + 4 + 5 + 6) (2.03 +/- 1.23) in refraction (6-mm diameter, root mean square, micro m) were significantly higher in the keratoconic eyes than in normal controls (0.26 +/- 0.10, 0.19 +/- 0.10, 0.34 +/- 0.11, respectively; Mann-Whitney U test, P = 0.001). Coma-like aberrations were 2.32 times larger than spherical-like aberrations in keratoconic eyes.

CONCLUSIONS

The increase of ocular higher-order aberrations in keratoconic eyes results from an increase of corneal higher-order aberrations. Coma-like aberrations were dominant compared with spherical-like aberrations in keratoconic eyes. Wavefront sensing will enable us not only to evaluate the quality of vision but also to differentiate keratoconic eyes from normal eyes by analyzing the characteristics of the higher-order aberrations.

摘要

目的

比较正常眼与圆锥角膜眼的眼波前像差,并描述圆锥角膜眼高阶像差的特征。

设计

前瞻性病例对照和观察性研究。

参与者

35只圆锥角膜眼和38只正常对照眼。

方法

使用波前传感器测量屈光中的高阶像差,并通过角膜地形图数据评估由角膜引起的像差。

主要观察指标

屈光和角膜中的类彗差(S(3 + 5))、类球差(S(4 + 6))和总高阶像差(S(3 + 4 + 5 + 6))。

结果

圆锥角膜眼屈光中(6毫米直径,均方根,微米)S(3 + 5)(1.88 ± 1.16)、S(4 + 6)(0.70 ± 0.55)和S(3 + 4 + 5 + 6)(2.03 ± 1.23)的平均值 ± 标准差显著高于正常对照眼(分别为0.26 ± 0.10、0.19 ± 0.10、0.34 ± 0.11;Mann-Whitney U检验,P = 0.001)。圆锥角膜眼中类彗差比类球差大2.32倍。

结论

圆锥角膜眼眼高阶像差的增加是由角膜高阶像差增加所致。在圆锥角膜眼中,类彗差比类球差更占主导。波前传感不仅能使我们评估视觉质量,还能通过分析高阶像差的特征将圆锥角膜眼与正常眼区分开来。

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