眼科 ›› 2026, Vol. 35 ›› Issue (5): 405-410.doi: 10.13281/j.cnki.issn.1004-4469.2026.05.010

• 论著 • 上一篇    下一篇

角膜塑形镜诱导角膜高阶像差变化及与眼轴变化的相关性

任杰1, 2   贾楠1   刘洋1   郭廷廷1   游玉霞1, 3, 4   

  1. 1北京爱尔新力眼科诊所,北京 100027;2首都医科大学附属北京潞河医院眼科,北京 101149;3中南大学爱尔眼科研究院,长沙 410000;4暨南大学附属爱尔眼科医院,广州 510050
  • 收稿日期:2025-07-26 出版日期:2026-09-25 发布日期:2026-09-18
  • 通讯作者: 游玉霞,Email:youyuxia@hotmail.com
  • 基金资助:
    爱尔眼科医院集团科研基金(AGF2503D07)

Correlation between corneal higher order aberrations changes induced by orthokeratology lens and myopia control

Ren Jie1,2, Jia Nan1, Liu Yang1, Guo Tingting1, You Yuxia1,3, 4    

  1. 1 Beijing Aier New Vision Eye Clinic, Beijing 100027, China; 2 Department of Ophthalmology, Beijing Luhe Hospital, Capital Medical University, Beijing 101149, China; 3 Aier School of Ophthalmology, Central South University, Changsha 410000, China; 4 Aier Eye Hospital, Jinan University, Guangzhou 510050, China
  • Received:2025-07-26 Online:2026-09-25 Published:2026-09-18
  • Contact: You Yuxia, Email: youyuxia@hotmail.com
  • Supported by:
     Science Research Foundation of Aier Eye Hospital Group(AGF2503D07) 

摘要:  目的 探究配戴角膜塑形镜后角膜高阶像差的变化及其与眼轴变化的相关性。设计 前瞻性病例系列。研究对象 北京爱尔新力眼科诊所首次验配角膜塑形镜的118名(219眼)中低度近视儿童。方法 于戴镜前和戴镜后1天、1周、1个月、3个月、 6个月、12 个月时进行随访检查,测量视力、角膜高阶像差、角膜地形图及眼轴长度。使用角膜地形图确定光学治疗区中心坐标与瞳孔坐标,计算镜片的偏中心量。用单因素方差分析比较配戴角膜塑形镜前后各个时间点角膜高阶相差的变化,并用Spearman相关性分析及回归模型分析其与眼轴变化量的相关性。主要指标 角膜高阶像差、球差、水平彗差、垂直彗差、三叶草、眼轴。结果 配戴角膜塑形镜12个月时角膜总高阶像差、球差、三叶草、水平彗差均较戴镜前显著增加(P<0.05);垂直彗差在戴镜前后无明显统计学差异(P=0.869)。水平彗差的变化与镜片的偏中心量相关(r=0.181, P=0.010)。戴镜后的各个时间点中度近视组的总角膜高阶像差、球差、水平慧差明显高于低度近视组(P<0.05)。线性回归分析发现,眼轴的增加量与年龄及初始球镜相关(R2=0.298,P<0.001),与角膜高阶像差的变化无明显相关。结论 配戴OK镜12个月时,角膜总高阶像差、球差、三叶草及水平彗差显著增加,而垂直彗差无明显变化;水平彗差的变化与镜片的偏中心量相关;眼轴的增加量与初始的戴镜年龄及戴镜前球镜度数相关。对于中度近视儿童,需关注戴镜后更高的角膜高阶像差;但单纯依靠角膜高阶像差不能预判眼轴增长快慢,仍需关注年龄、基线屈光度及眼轴本身的动态变化。

关键词: 近视, 角膜高阶像差, 眼轴, 角膜塑形镜

Abstract:  Objective To explore the changes of corneal higher order aberrations(HOAs) and their correlation with axial length changes after wearing orthokeratology(OK) lens. Design  Prospective case series. Participants A total of 118 children with moderate-low myopia , 219 eyes, from Beijing Aier New Vision Eye Clinic were included. Methods Vision acuity、corneal high-order aberrations, corneal topography and axial length were examined before(baseline) and at 1 day, 1week, 1 month, 3 months, 6 months and 1 year after overnight wearing OK lenses. Coordinates of the optical treatment zone center and pupil center were obtained from corneal topography to calculate lens decentration magnitude. The changes of corneal high-order aberrations at different time before and after wearing OK lens were compared by one-way repeated measures ANOVA, and the correlation between the changes of corneal high-order aberrations and the changes of axial length was analyzed by Spearman correlation analyses and regression analysis. Main Outcome Measures corneal high-order aberrations, spherical aberration, trefoil, vertical coma, horizontal coma and axial length. Results At 12-month follow-up, the total higher-order aberrations, spherical aberration, trefoil and horizontal coma of cornea were significantly increased (P<0.05). There was no significant difference in vertical coma before and after wearing glasses (P=0.869). The change of horizontal coma was related to the decentration of the lens (r=0.181, P=0.010). The total corneal high-order aberration, spherical aberration and horizontal coma in the moderate myopia group were significantly higher than those in the low myopia group at each time point after wearing orthokeratology lens (P<0.05). Linear regression analysis showed that the increase of axial length was related to age and baseline spherical diopter(R2=0.298, P<0.001), and had no significant correlation with the change of corneal higher-order aberrations. Conclusions At 12 month after OK lens wear,the total higher-order aberrations, spherical aberration, trefoil and horizontal coma of the cornea increased significantly, while the vertical coma did not change significantly. The change of horizontal coma is related to the off-center amount of the lens. The increase of axial length was related to the initial age and the diopter before wearing OK lens. For children with moderate mypoia, attention should be paid to the higher corneal HOAs after lens wear. However, corneal HOAs alone cannot predict the rate of axial length progression; age, baseline refraction and the dynamic changes in axial length itself should still be monitored.

Key words: Myopia, Corneal high-order aberration, Axial length, Orthokeratology