[1] |
Holden BA, Fricke TR, Wilson DA, et al. Global prevalence of myopia and high myopia and temporal trends from 2000 through 2050[J]. Ophthalmology, 2016, 123(5): 1036-1042.
|
[2] |
Lv L, Zhang Z. Pattern of myopia progression in Chinese medical students: a two-year follow up study[J]. Graefes Arch Clin Exp Ophthalmol, 2013, 251(1): 163-168.
|
[3] |
Sun J, Zhou J, Zhao P, et al. High prevalence of myopia and high myopia in 5060 Chinese university students in Shanghai[J]. Invest Ophthalmol Vis Sci, 2012, 53(12): 7504-7509.
|
[4] |
姜珺,陈云云,吴戈,等.不同矫正方式对儿童近视眼控制的效果[J].中华眼视光学与视觉科学杂志,2014,16(2):73-77.
|
[5] |
中华医学会眼科学分会眼视光学组. 儿童屈光矫正专家共识(2017)[J].中华眼视光学与视觉科学杂志,2017,19(12):705-710.
|
[6] |
姜珺. 近视管理白皮书(2019)[J].中华眼视光学与视觉科学杂志,2019,21(3):161-165.
|
[7] |
惠延年. 眼科学[M]. 北京:人民卫生出版社,2001:169.
|
[8] |
Ciuffreda KJ, Wallis DM. Myopes show increased susceptibility tonear work after effects[J]. Invest Ophthalmol Vis Sci, 1998, 39(10): 1797-1803.
|
[9] |
张敏,何光华.调节、离焦与儿童近视眼关系的研究进展[J].中国斜视与小儿眼科杂志,2014,22(4):45-46.
|
[10] |
余琼武,张萍,周善璧,等. 不同阅读距离的调节准确度与早发性近视眼的相关性[J]. 中华眼科杂志,2016,52(7):520-524.
|
[11] |
Berntsen DA, Mutti DO, Zadnik K. The effect of bifocaladdon accommodative lag in myopic children with high accommodative lag[J]. Invest Ophthalmol Vis Sci, 2010, 51(12): 6104-6110.
|
[12] |
黄海笑,徐良,金婉卿,等. 单光镜片和多焦点镜片近距阅读宽度差异[J]. 中华眼视光学与视觉科学杂志,2012,14(11):656-658.
|
[13] |
翟志刚. 配戴渐进多焦点镜片对青少年视力调节与集合的影响[J]. 河北北方学院学报(自然科学版),2012,28(3): 88-89.
|
[14] |
Cheng D, Woo GC, Drobe B, et al. Effect of bifocal and prismatic bifocal spectacles on myopia progression in children: three-yearre sults of arandomized clinical trial[J]. JAMA Ophthalmology, 2014, 132(3): 258-264.
|
[15] |
李仕明,武珊珊,詹思延,等. 双光镜延缓近视眼学龄儿童近视眼进展的Meta分析[J].中华实验眼科杂志,2011,29(6):549-554.
|
[16] |
安力,阎文平. 配戴渐进多焦点眼镜对近视眼青少年近视眼进展的影响[J]. 山西大同大学学报(自然科学版),2015,31(2):48-50.
|
[17] |
许俊艳. 观察渐进多焦点眼镜控制青少年近视眼度数的效果[J]. 中国卫生管理,2016,7(6):49-50.
|
[18] |
李丽华,南莉,张淑贤,等. 青少年近视眼配戴渐进多焦点眼镜其屈光度变化相关性研究[J]. 临床眼科杂志,2011,19(6):486-489.
|
[19] |
Berntsen DA, Sinnott LT, Mutti DO, et al. Arandonized trial using progressive addition lenses to evaluate theories of myopia progression in children with a high lag of accommodation[J]. Invest Ophthalmol Vis Sci, 2012, 53(2): 640-649.
|
[20] |
谢祥勇,何碧华,杜惠娟,等. 凸透三棱镜结合视觉生理性眼操训练对青少年近视眼的预防控制作用[J]. 眼科新进展,2013,33(5):475-477.
|
[21] |
刘素江,吕建华. 低浓度阿托品滴眼液和棱镜式组合透镜治疗青少年轻度近视眼的临床观察[J]. 河北医药,2013,35(18):2753-2755.
|
[22] |
何碧华,谢祥勇,杜惠娟,等. 近用凸透三棱镜对青少年近视眼防控作用的临床观察[J].广西医学,2012,34(9): 1142-1146.
|
[23] |
伍岚. 凸透三棱镜结合视觉生理性眼操训练对青少年近视眼的预防控制效果研究[J].中国现代药物应用,2018,12(16):28-30.
|
[24] |
Smith EL, Chea-Su K, Ramkumar R, et al. Peripheral visiom can influence eye growth and refractive development in infant monkeys[J]. Invest Opthalmol Vis Sci, 2005, 46: 3965-3972.
|
[25] |
Liu Y, Wildsoet C. The effective add inherent in 2-zone negative lenses inhibits eye growth in myopic young chicks[J]. Invest Ophthalmol Vis Sci, 2012, 53: 5085-5093.
|
[26] |
Smith EL. Optical treatment strategies to slow myopia progression: effects of the visual extent of the optical treatment zone[J]. Exp Eye Res, 2013, 114(1):77-88.
|
[27] |
Atchison DA, Rosén R.The possible role of peripheral refractionin development of myopia[J]. Optom Vis Sci, 2016, 93(9): 1042-1044.
|
[28] |
Mutti DO, Hayes JR, Mitchell GL, et al. Refractive error, axial length, and relative peripheral refractive error before and after the onset of myopia[J]. Invest Ophthalmol Vis Sci, 2007, 48(6): 2510-2519.
|
[29] |
Atchison DA, Li SM, Li H, et al. Relative peripheral hyperopia dose not predict development and progression of myopia in children[J]. Invest Ophthalmol Vis Sci, 2015, 56(10): 6162-6170.
|
[30] |
陈志,姚佩君,周行涛,等.配戴中周部加光设计镜片后的周边屈光度及顺应性分析[J].中国眼耳鼻喉科杂志,2012,12(4):216-221.
|
[31] |
Sankaridurg P, Donovan L, Varnas S, et al. Spectacle lenses designed to reduce progression of myopia: 12-month results[J]. Optom Vis Sci, 2010, 87(9): 631-641.
|
[32] |
张勇,万川,潘红飚,等. 减少旁中心远视离焦镜片治疗儿童近视眼的疗效观察[J].眼科新进展,2016,36(10):967-969.
|
[33] |
刘长辉,魏栋栋,梁玲. 配戴减少周边远视离焦眼镜对近视眼儿童眼部参数的影响[J].国际眼科杂志,2019,19(5):878-880.
|
[34] |
唐秀侠,孙宏霞,买志彬,等.配戴角膜塑形镜矫治青少年近视眼疗效观察[J].中国实用眼科杂志,2013,31(5):601-603.
|
[35] |
Smith MJ, Walline JJ.Controlling myopia progression in childrenand adolescents[J]. Adolesc Health Med Ther, 2015, 6: 133-140.
|
[36] |
Liu YM, Xie P. The safety of orthokeratology a systematic review[J]. Eye Contact Lens, 2016, 42(1): 35-42.
|
[37] |
Swarbrick HA, Alharbi A, Watt K, et al. Myopia control during orthokeratology lens wear in children using a novel study design [J]. Ophthalmology, 2015, 122(3): 620-30.
|
[38] |
Vander VDK, Kraker RT, Pineles SL, et al. Use of orthokeratology for the prevention of myopic progression in children: a report by the American Academy of Ophthalmology[J]. Ophthalmology, 2019, 126: 623-636.
|
[39] |
Santodomingo-Rubido J, Villa-Collar C, Gilmartin B, et al. Myopia control with orthokeratology contact lenses in Spain: refractive and biometric changes[J]. Invest Ophthalmol Vis Sci, 2012, 53(8): 5060-5065.
|
[40] |
Cho P, Sin-Wan C. Retardation of myopia in orthokeratology (ROMIO) study: a 2-year randomized clinical trial[J]. Invest Ophthalmol Vis Sci, 2012, 53(11): 7077-7085.
|
[41] |
姜瑾. 角膜塑形镜、低浓度阿托品与框架眼镜控制青少年近视眼的疗效比较[J].国际眼科杂志,2018,18(7):1349-1351.
|
[42] |
Lin HJ, Wan L, Tsai F, et al. Overnight orthokeratology is comparable with atropine in controlling myopia[J]. BMC Ophthalmology, 2014, 14: 40.
|
[43] |
Lyn Y, Ji N, Fu AC, et al.Comparison of administration of 0.02% atropine and orthokeratology for myopia control[J]. Eye Contact Lens, 2020,14(5): 1-5.
|
[44] |
Kang P, Fan Y, Oh K, et al. The effect of multifocal soft contact lenses on peripheral refraction[J]. Optom Vis Sci, 2013, 90(7): 658-666.
|
[45] |
Kelly E, Moore JSB, Berntsen DA. Spherical soft contact lens designs and peripheral defocus in myopic eyes[J]. Optom Vis Sci, 2017, 94: 370-379.
|
[46] |
Berntsen DA, Kramer CE. Peripheral defocus with spherical and multifocal soft contact lenses[J]. Optom Vis Sci, 2013, 90(11): 1215-1224.
|
[47] |
Sankaridurg P, Holden B, Smith E, et al. Decrease in rate of myopia progression with a contact lens designed to reduce relative peripheral hyperopia: one-year results[J]. Invest Ophthalmol Vis Sci, 2011, 52(13): 9362-9367.
|
[48] |
Kang P. Optical and pharmacological strategies of myopia control[J]. Clin Exp Optom, 2018, 101(3): 321-332.
|
[49] |
Lopes-Ferreira D, Ribeiro C, Maia R, et al.Peripheral myopization using a dominant design multifocal contact lens[J]. J Optometry, 2011,4(11): 14-21.
|
[50] |
Siun-Yin LC, Chun TW, Yan-Yin D, et al. Defocus incorporate soft contact (DISC) lens slow myopia progression in Hong Kong Chinese school children: a 2-year randomised clinical trial[J]. Br J Ophthalmol, 2014, 98: 40-45.
|
[51] |
杨洋,张明洲,吕会斌,等. 周边离焦软性角膜接触镜与单焦点软性角膜接触镜对青少年近视眼进展控制效果的Meta分析[J/CD]. 中华眼科医学杂志(电子版),2017,7(1):25-31.
|
[52] |
Li SM, Kang MT, Wu SS, et al. Studies using concentric ring bifocal and peripheral add multifocal contact lenses to slow myopia progression in school-aged children: a meta-analysis [J]. Ophthalmic Physiol Opt, 2017, 37(1): 51-59.
|
[53] |
Walline JJ, Gaume GA, Sinnott LT, et al. A randomized trial of soft multifocal contact lenses for myopia control: baseline data and methods[J]. Optom Vis Sci, 2017, 94(9):856-866.
|
[54] |
Chamberlain P, Peixoto-de-Matos SC, Logan NS, et al. A 3-year randomized clinical trial of Misight lenses for myopia confrol[J]. Optom Vis Sci, 2019, 96: 556-557.
|
[55] |
Pauné J, Morales H, Armengol J, et al. Myopia control with a novel peripheral gradient soft lens and orthokeratology: a 2-year clinical trial[J]. Biomed Res Int, 2015: 507572.
|
[56] |
Pauné J, Queiros A, Lopes-Ferreira D. Efficacy of a gas permeable contact lens to induce peripheral myopia dufocus[J]. Optom Vis Sci, 2015, 92: 596-603.
|
[57] |
Siu-Yin LC, Chun TW, Yan-Yin TD, et al. Defocus incorporated multiple segments (DIMS) spectacle lenses slow myopia progression: a 2-year randomized clinical trial[J]. Br J Ophthalmol, 2020, 104(3): 363-368.
|
[58] |
曾彩琼. 近视眼发病机制的研究进展[J]. 临床眼科杂志,2017,25(6):565-568.
|
[59] |
Huang JH, Wen DZ, Wang QM, et al.Efficacy comparison of 16 interventions formyopia control in children[J]. Ophthalmology, 2016, 123(4): 697-708.
|