目的了解上海市静安区3~12岁儿童晶状体屈光力(LP)的变化趋势及其影响因素。
方法采用横断面研究方法,收集2019年10月至2020年1月在上海市眼病防治中心视光科门诊就诊的3~12岁儿童131人131眼。分别使用质量分数1%硫酸阿托品眼膏对≤6岁和0.5%托吡卡胺滴眼液对>6岁的受检者进行扩瞳。采用光学生物测量仪测量眼轴长度(AL)、平均角膜曲率(Km)、中央前房深度(ACD)、晶状体厚度(LT)和中央角膜厚度(CCT)。采用电脑验光仪和综合验光仪测量平均等效球镜度(SE)和平均最佳矫正视力,采用Bennett公式计算LP。根据年龄不同将受检者分为3~4岁组16眼、5~6岁组20眼、7~8岁组25眼、9~10岁组33眼和11~12岁组37眼;根据性别不同将受检者分为男性组57眼和女性组74眼;根据SE不同将受检者分为低度近视组38眼、中度近视组12眼、高度近视组25眼、正视组11眼、低度远视组9眼、中度远视组13眼和高度远视组23眼。比较不同年龄组、不同性别组、不同屈光度组眼部生物学参数测量值的差异。年龄及眼部屈光参数与LP的相关性采用Pearson线性相关分析。多个影响因素对LP的贡献分析采用逐步回归法建立多重线性回归模型。
结果3~4岁组、5~6岁组、7~8岁组、9~10岁组和11~12岁组儿童的平均LP分别为(27.35±1.88)、(24.71±1.92)、(22.92±1.87)、(21.49±1.54)和(21.25±1.55)D,随着年龄的增加,LP值逐渐降低,3~4岁组与5~6岁组、5~6岁组与7~8岁组、7~8岁组与9~10岁组比较,差异均有统计学意义(均 P<0.05)。女性儿童的平均LP值高于男性儿童,差异有统计学意义( t=-3.38, P<0.01)。高度近视组LP值低于正视组,中度近视、低度近视组LP值均低于远视组,低度远视组、中度远视组LP值均高于正视组,差异均有统计学意义(均 P<0.05)。受检者的年龄、AL、ACD、CCT与LP均呈负相关( r=-0.76、-0.79、-0.38、-0.18,均 P<0.05),SE、LT与LP均呈正相关( r=0.62, P<0.05; r=0.68, P<0.01),Km与LP无明显线性相关性( r=0.07, P=0.45)。通过多重线性回归方程分析LP的独立影响因素,得到LP=-0.430×AL+0.329×LT-0.267×年龄-0.108×性别-0.084×CCT(男=1,女=0),各因素的标准化系数从大到小依次排列后分别为AL、LT、年龄、性别、CCT(均 P<0.05)。
结论上海市静安区3~12岁儿童的LP变化较大,LP随年龄增长呈下降趋势,随SE增长呈上升趋势,女性儿童LP值高于男性儿童。
ObjectiveTo understand the changing trend and influencing factors of lens power (LP) in children aged 3-12 in Jing'an District, Shanghai.
MethodsA cross-sectional study was conducted.One hundred and thirty-one eyes of 131 patients with refractive errors were included in the Optometry Clinic of Shanghai Eye Hospital from October 2019 to January 2020.The 1% atropine sulfate was employed to dilate pupils for children aged 6 years or younger, and 0.5% topiramate for children older than 6 years.The axial length, mean keratometry (Km), anterior chamber depth (ACD), lens thickness (LT) and central corneal thickness (CCT) were measured using an IOL Master.The spherical equivalent (SE) and best corrected visual acuity (BCVA) were measured after cycloplegia using autorefractor and phoropter, and the LP was calculated using the Bennett formula.The patients were divided into different age groups, including 3-4 years group (16 eyes), 5-6 years group (20 eyes), 7-8 years group (25 eyes), 9-10 years group (33 eyes) and 11-12 years group (37 eyes). There were 57 eyes in the male group and 74 eyes in the female group.The patients were also divided into different refractive groups, including mild myopia group (38 eyes), moderate myopia group (12 eyes), high myopia group (25 eyes), emmetropia group (11 eyes), mild hyperopia group (9 eyes), moderate hyperopia group (13 eyes), and high hyperopia group (23 eyes). The differences in ocular biological parameter measurements between different age groups, different gender groups and different refractive groups were compared and the correlations between age, eye parameters and LP were analyzed using Pearson correlation analysis.The contribution of multiple influencing factors to LP was analyzed by multiple linear regression models.The study protocol followed the Declaration of Helsinki and was approved by an Ethics Committee of Shanghai General Hospital, Shanghai Jiao Tong University Hospital (No.2020KY018). Written informed consent was obtained from each guardian of the subject.
ResultsThe average LP of children in the 3-4 years group, 5-6 years group, 7-8 years group, 9-10 years group and 11-12 years group were (27.35±1.88), (24.71±1.92), (22.92±1.87), (21.49±1.54) and (21.25±1.55) D, respectively.With the increase of age, the LP value was decreased gradually.There were significant differences between 3-4 years group and 5-6 years group, 5-6 years group and 7-8 years group, 7-8 years group and 9-10 years group (all at P<0.05). The average LP value of girls was obviously higher than that of boys ( t=-3.38, P<0.01). The LP value of the high myopia group was significantly lower than that of the emmetropia group, and the LP values of the moderate myopia and the low myopia group were significantly lower than that of the hyperopia group, and the LP values of the low hyperopia group and the moderate hyperopia group were significantly higher than that of the emmetropia group (all at P<0.05). The LP value was negatively correlated with age, AL, ACD and CCT ( r=-0.76, -0.79, -0.38, -0.18; all at P<0.05), and was positively correlated with SE and LT ( r=0.62, P<0.05; r=0.68, P<0.01). There was no obvious correlation between Km and LP ( r=0.07, P=0.45). The independent influencing factors of LP were analyzed through multiple linear regression equations, showing that LP=-0.430×AL+ 0.329×LT-0.267×age-0.108×gender-0.084×CCT (male=1, female=0). The standardized coefficients of each factor arranged in descending order were AL, LT, age, gender and CCT (all at P<0.05).
ConclusionsThe LP of children aged 3-12 in Jing'an District of Shanghai decreases with age and increases with SE.LP values of girls are higher than those of boys.
向棹宇,林秋蓉,许琰,等. 3~12岁儿童晶状体屈光力变化趋势及其影响因素分析[J]. 中华实验眼科杂志,2021,39(06):550-556.
DOI:10.3760/cma.j.cn115989-20200304-00138版权归中华医学会所有。
未经授权,不得转载、摘编本刊文章,不得使用本刊的版式设计。
除非特别声明,本刊刊出的所有文章不代表中华医学会和本刊编委会的观点。

你好,我可以帮助您更好的了解本文,请向我提问您关注的问题。