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Correlation Analysis and Preventive Intervention Measures between Biological Parameters of the Eyeball and Myopia in Children |
DENG Zifeng, XIAO Zhigang, XIANG Jianbo, et al |
Department of Ophthalmology,Hunan Children's Hospital,Changsha Hunan 410007 |
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Abstract 【Objective】To explore the correlation between biological parameters of the eyeball and myopia in children and preventive interventions.【Methods】A total of 500 children diagnosed and treated in the ophthalmology outpatient department of our hospital from January 2019 to December 2021 were selected. They were divided into myopia group and non myopia group based on whether they were nearsighted. The biological parameters of the eyeballs in the two groups were compared in terms of Axial length (AL), axial length to corneal curvature ratio (AL/CR), lens thickness (LT), white to white distance (WTW), corneal thickness (CT), vitreous cavity length (VCL), and intraocular pressure (IOP), gender, age, and behavioral patterns (table and chair height, time spent using electronic devices, outdoor exercise time, and eye use time); Logistic regression was used to analyze the influencing factors of myopia in children; Pearson analysis was used to investigate the correlation between myopia in children and ocular biological parameters.【Results】The AL, AL/CR, LT, CT,VCL, Age and behavior patterns of two groups of were compared, and the differences were statistically significant (all P<0.05).The results of logistic regression analysis showed that: AL, AL/CR, LT, CT, VCL, Age and behavioral patterns were both influencing factors for myopia in children. Pearson correlation analysis shows that AL, AL/CR, VCL were positively correlated with myopia in children (r=0.472, 0.369, 0.449, all P<0.05); LT, CT were negatively correlated with myopia in children (r=-0.210, -0.170, P<0.05).【Conclusion】Eye biological parameters, age, and behavioral habits are closely related to myopia in children.
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Received: 07 April 2024
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[1] 魏瑞华,张红梅,刘盛鑫,等. 加强我国儿童青少年近视的科学预防与控制[J].眼科新进展,2023,43(1):1-6. [2] 张美,洪流. 大连市近年学龄前视力低常儿童屈光状态分布和弱视发生状况及其影响因素分析[J].中国现代医学杂志,2023,33(23):33-37. [3] 王立华,陈巍,王芬,等. 学龄前散光儿童近视化进展及影响因素分析[J].北京医学,2023,45(6):507-511. [4] 郑晓会,李才锐,由佳鑫,等. 儿童青少年近视防控策略研究进展[J].中华眼视光学与视觉科学杂志,2023,25(12):956-960. [5] 曾艳枫,陆培荣,金建华,等. 苏州市儿童近视与行为习惯的关系研究[J].环球中医药,2013(z1):132-133. [6] 杨吟,杨棹夕,杜念,等. 四川地区近视儿童眼球生物学参数及特性的分析[J].四川大学学报(医学版),2019,50(4):577. [7] 汪婧媛,涂娜. 学龄前儿童近视患病情况调查及其相关影响因素分析[J].首都食品与医药,2023,30(1):84-87. [8] 李辉,许江涛. 眼球生物学参数与儿童近视的相关性研究进展[J].中国斜视与小儿眼科杂志,2020,28(4):45-47. [9] 高云仙,李小龙,马晓玲,等. 乌鲁木齐市中小学生近视与眼部生物学参数调查分析[J].国际眼科杂志,2023,23(3):471-476. [10] 刘雅馨,高庆华,李海燕,等. 同龄青少年近视与屈光要素的相关性[J].中国妇幼保健,2008,23(16):2306-2307. [11] 齐林嵩,姚璐,王雪峰,等. 空军青少年航空学校高三年级学生屈光状态与眼球生物学参数的相关性研究[J].空军军医大学学报,2023,44(7):633-637. [12] 薛庆,张俊兰. 不同屈光状态的青少年眼球生物学参数观察[J].广东医学,2022,43(5):622-625. [13] 徐朝霞,杨朝政,李岱. 儿童屈光状态及眼生物参数研究[J].湖北科技学院学报(医学版),2024,38(1):51-54. [14] 胡平会,张甜甜,郝雪梅,等. 4种仪器测量高度近视患者前房深度和晶状体厚度的临床观察[J].中国眼耳鼻喉科杂志,2022,22(4):402-406. [15] 霍敏灼,梁先军,何锦贤,等. 不同年龄近视人群角膜水平直径及眼轴长度的比较[J].中华眼科医学杂志(电子版),2018,8(1):23-29. [16] 王文吉,毛平安,谢阳,等. 高度近视黄斑区视网膜厚度与其患者年龄的相关性分析[J].医学临床研究,2018,35(12):2450-2452. [17] 《眼轴长度在近视防控管理中的应用专家共识(2023)》专家组. 眼轴长度在近视防控管理中的应用专家共识(2023)[J].中华实验眼科杂志,2024,42(1):1-11. [18] 张芮,沈丽琴,李鸣,等. 青少年近视发展的相关风险因素分析[J].现代预防医学,2024,51(1):65-70. [19] 徐李莎,黄烨,吴汶灿,等. 河南省中小学生2019-2020年近视队列研究结果[J].中国学校卫生,2023,44(12):1814-1818. [20] 钟盼亮,刘云飞,马宁,等. 中国9个省(自治区、直辖市)小学生户外时间对近视发生影响的队列研究[J].中华流行病学杂志,2022,43(7):1099-1106. |
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