Efficacy comparison of atropine, orthokeratology and repeated low-level red-light therapy for myopia control in children: a systematic review and network meta-analysis. [PDF]
Zheng Z, Jiang X, Chen R, Dong L.
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The application of hyaluronic acid-containing artificial tears on the ocular surface of children receiving orthokeratology contact lens treatment. [PDF]
Lee CY, Yang SF, Huang JY, Chang CK.
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Morning Administration is More Effective than Evening Administration of 0.01% Atropine Eye Drops Combined with Orthokeratology for Myopia Control. [PDF]
Xiong S +5 more
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Comparative study on the quality of life and clinical efficacy of orthokeratology lens, defocus spectacle lens and single vision spectacles in myopic children and adolescents in China. [PDF]
Li R +10 more
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Standardized Corneal Topography-Driven AI for Orthokeratology Fitting: A Hybrid Deep/Machine Learning Approach With Enhanced Generalizability. [PDF]
Xu Z +8 more
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Analysis of axial shortening induced by orthokeratology lenses and its mechanical mechanisms. [PDF]
Meng ZY, Yang L, Zhou P.
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Analysis of factors influencing axial length changes in adolescents wearing corneal reshaping lenses. [PDF]
Zhong G, Zheng R, Luo L.
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Assessment of Corneal Biomechanical Changes After Discontinuation of Long-Term Orthokeratology: A 2-Year Prospective Study. [PDF]
Tsai HR, Wang JH, Chiu CJ.
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Effectiveness of 0.01% atropine and orthokeratology for incipient myopia: a 1-year retrospective study. [PDF]
Sun X, Chu H, Zhang R, Han L, Yu J.
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Orthokeratology for myopia control: a three-year longitudinal study on axial length modulation influenced by baseline age and spherical equivalent. [PDF]
Hu X +6 more
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