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Optimizing myopia prediction in children and adolescents using machine learning: a multi-factorial risk assessment model  ( SCI-EXPANDED收录)  

文献类型:期刊文献

英文题名:Optimizing myopia prediction in children and adolescents using machine learning: a multi-factorial risk assessment model

作者:Xi, Yue[1];Zhu, Wei[2];Yan, Wenjing[3];Wei, Xiaobin[4];Zhao, Qian[5];Dai, Shengting[6]

机构:[1]Shanghai Univ, Sch Phys Educ, Shanghai, Peoples R China;[2]Yinchuan Maternal & Child Hlth Hosp, Yinchuan, Peoples R China;[3]Shanxi Normal Univ, Sch Phys Educ, Taiyuan, Shanxi, Peoples R China;[4]Tsinghua Univ, Div Sports Sci & Phys Educ, Beijing, Peoples R China;[5]10 Primary Sch Zhongning Cty, Zhongwei, Peoples R China;[6]East China Univ Sci & Technol, Sch Sports Sci & Engn, Shanghai, Peoples R China

年份:2025

卷号:12

外文期刊名:FRONTIERS IN MEDICINE

收录:;WOS:【SCI-EXPANDED(收录号:WOS:001624895800001)】;

基金:The author(s) declare that financial support was received for the research and/or publication of this article. This research is supported by the 2024 Youth Fund for Humanities and Social Science Research of the Ministry of Education (No. 24YJC890008) and the 75th batch of Postdoctoral Funding in China (2024M750911).

语种:英文

外文关键词:children and adolescents; myopia; modifiable risk factors; LightGBM; machine learning

摘要:Background Most previous studies on myopia in children and adolescents have primarily focused on genetic and environmental factors. This study aimed to explore modifiable behavioral, sociodemographic, and psychological contributors to myopia and to evaluate the potential of machine learning (ML) models in identifying at-risk individuals.Methods A cross-sectional survey was conducted in eight primary and secondary schools in a Chinese province between October and December 2023. The dataset was split into training and testing sets (7:3). LASSO regression identified potential predictors, followed by multivariate logistic regression to determine independent risk factors. Ten machine learning algorithms were used to build prediction models: logistic regression, support vector machine (SVM), gradient boosting machine (GBM), neural network (NNET), extreme gradient boosting (XGBoost), k-nearest neighbors (KNN), random forest adaptive boosting (AdaBoost), LightGBM, and CatBoost. Model performance was evaluated using accuracy, F1 score, specificity, sensitivity, and area under the receiver operating characteristic (ROC) curve (AUC). SHapley Additive exPlanations (SHAP) were used to interpret variable contributions in the best-performing model.Results The study included 2,086 children and adolescents (mean age 9.8 +/- 2.7 years; 50.5% female), with an overall myopia prevalence of 25.12%. Independent risk factors for myopia included parental myopia, only-child status, physical activity level, mother's education level, age, and physical activity behavior. Among all models, the LightGBM algorithm achieved the best predictive performance (AUC = 0.738, 95% CI: 0.709-0.767). SHAP analysis identified parental myopia, physical activity level, only-child status, and physical activity behavior as the most influential predictors.Conclusion Although ML models showed limited predictive accuracy, they helped identify modifiable risk factors associated with childhood and adolescent myopia. These findings may inform the design of targeted prevention strategies and early behavioral interventions rather than serve as clinical diagnostic tools.

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