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晶状体在早期屈光发育中的作用:来自一大群中国儿童的证据。

Role of lens in early refractive development: evidence from a large cohort of Chinese children.

机构信息

State Key Laboratory of Ophthalmology, Zhongshan Ophthalmic Center, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Ophthalmology and Visual Science, Guangdong Provincial Clinical Research Center for Ocular Diseases, Guangzhou, Guangdong, China.

Guangdong Provincial Center for Disease Control and Prevention, Guangzhou, China.

出版信息

Br J Ophthalmol. 2024 Nov 22;108(12):1627-1633. doi: 10.1136/bjo-2023-324882.

Abstract

AIMS

To document longitudinal changes in spherical equivalent refraction (SER) and related biometric factors during early refractive development.

METHODS

This was a prospective cohort study of Chinese children, starting in 2018 with annual follow-ups. At each visit, children received cycloplegic autorefraction and ocular biometry measurements. Lens power (LP) was calculated using Bennett's formula. Children were divided into eight groups based on baseline age: the 3-year-old (n=426, 49.77% girls), 4-year-old (n=834, 47.36% girls), 6-year-old (n=292, 46.58% girls), 7-year-old (n=964, 43.46% girls), 9-year-old (n=981, 46.18% girls), 10-year-old (n=1181, 46.32% girls), 12-year-old (n=504, 49.01%) and 13-year-old (n=644, 42.70%) age groups.

RESULTS

This study included right-eye data from 5826 children. The 3-year-old and 4-year-old age groups demonstrated an inflection point in longitudinal SER changes at a mild hyperopic baseline SER (+1 to +2 D), with children with more myopic SER showing hyperopic refractive shifts while those with more hyperopic SER showing myopic shifts. The hyperopic shift in SER was mainly attributed to rapid LP loss and was rarely seen in the older age groups. Axial elongation accelerated in the premyopia stage, accompanied by a partially counter-balancing acceleration of LP loss. For children aged 3-7 years, those with annual SER changes <0.25 D were all mildly hyperopic at baseline (mean: 1.23 D, 95% CI 1.20 to 1.27 D).

CONCLUSION

Our findings suggest that during early refractive development, refractions cluster around or above +1.00 D. There is a pushback process in which increases in the rate of LP occur in parallel with increases in axial elongation.

摘要

目的

记录早期屈光发育过程中球镜等效屈光度(SER)和相关生物测量因素的纵向变化。

方法

这是一项对中国儿童进行的前瞻性队列研究,从 2018 年开始每年进行随访。每次就诊时,儿童均接受睫状肌麻痹自动验光和眼生物测量。使用 Bennett 公式计算晶状体屈光力(LP)。根据基线年龄,将儿童分为 8 组:3 岁组(n=426,49.77%为女孩)、4 岁组(n=834,47.36%为女孩)、6 岁组(n=292,46.58%为女孩)、7 岁组(n=964,43.46%为女孩)、9 岁组(n=981,46.18%为女孩)、10 岁组(n=1181,46.32%为女孩)、12 岁组(n=504,49.01%)和 13 岁组(n=644,42.70%)。

结果

本研究纳入了 5826 名儿童的右眼数据。3 岁和 4 岁年龄组在轻度远视性基线 SER(+1 至+2 D)时出现 SER 纵向变化的拐点,远视性 SER 较深的儿童表现为远视性屈光转移,而远视性 SER 较深的儿童表现为近视性转移。SER 的远视性转移主要归因于 LP 快速损失,在年龄较大的组中很少见。在近视前期,眼轴伸长加速,同时 LP 损失加速部分抵消。对于 3-7 岁的儿童,那些年 SER 变化<0.25 D 的儿童基线时均为轻度远视(平均:1.23 D,95%CI 1.20 至 1.27 D)。

结论

我们的研究结果表明,在早期屈光发育过程中,屈光状态集中在+1.00 D 左右或以上。存在一个回退过程,其中 LP 增长率与眼轴伸长率同步增加。

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