1、Lam D, Rao SK, Ratra V, et al. Cataract[J]. Nat Rev Dis Primers, 2015, 1: 15014.Lam D, Rao SK, Ratra V, et al. Cataract[J]. Nat Rev Dis Primers, 2015, 1: 15014.
2、Liu YC, Wilkins M, Kim T, et al. Cataracts[J]. Lancet, 2017, 390(10094): 600-612.Liu YC, Wilkins M, Kim T, et al. Cataracts[J]. Lancet, 2017, 390(10094): 600-612.
3、Thompson J, Lakhani N. Cataracts[J]. Prim Care, 2015, 42(3): 409-423.Thompson J, Lakhani N. Cataracts[J]. Prim Care, 2015, 42(3): 409-423.
4、GBD 2019 Blindness and Vision Impairment Collaborators; Vision Loss Expert Group of the Global Burden of Disease Study. Causes of blindness and vision impairment in 2020 and trends over 30 years, and prevalence of avoidable blindness in relation to VISION 2020: the Right to Sight: an analysis for the Global Burden of Disease Study[J]. Lancet Glob Health, 2021, 9(2): e144-e160.GBD 2019 Blindness and Vision Impairment Collaborators; Vision Loss Expert Group of the Global Burden of Disease Study. Causes of blindness and vision impairment in 2020 and trends over 30 years, and prevalence of avoidable blindness in relation to VISION 2020: the Right to Sight: an analysis for the Global Burden of Disease Study[J]. Lancet Glob Health, 2021, 9(2): e144-e160.
5、Olson RJ. Cataract surgery from 1918 to the present and future-just imagine![J]. Am J Ophthalmol, 2018, 185: 10-13.Olson RJ. Cataract surgery from 1918 to the present and future-just imagine![J]. Am J Ophthalmol, 2018, 185: 10-13.
6、Sachdev M. Cataract surgery: the journey thus far[J]. Indian J Ophthalmol, 2017, 65(12): 1273-1274.Sachdev M. Cataract surgery: the journey thus far[J]. Indian J Ophthalmol, 2017, 65(12): 1273-1274.
7、Wu X, Huang Y, Liu Z, et al. Universal artificial intelligence platform for collaborative management of cataracts[J]. Br J Ophthalmol, 2019, 103(11): 1553-1560.Wu X, Huang Y, Liu Z, et al. Universal artificial intelligence platform for collaborative management of cataracts[J]. Br J Ophthalmol, 2019, 103(11): 1553-1560.
8、Zhang H, Niu K, Xiong Y, et al. Automatic cataract grading methods based on deep learning[J]. Comput Methods Programs Biomed, 2019, 182: 104978.Zhang H, Niu K, Xiong Y, et al. Automatic cataract grading methods based on deep learning[J]. Comput Methods Programs Biomed, 2019, 182: 104978.
9、Long E, Lin H, Liu Z, et al. An artificial intelligence platform for the multihospital collaborative management of congenital cataracts[J]. Nature Biomedical Engineering, 2017, 1: 24.Long E, Lin H, Liu Z, et al. An artificial intelligence platform for the multihospital collaborative management of congenital cataracts[J]. Nature Biomedical Engineering, 2017, 1: 24.
10、Lin H, Li R, Liu Z, et al. Diagnostic efficacy and therapeutic decision-making capacity of an artificial intelligence platform for childhood cataracts in eye clinics: a multicentre randomized controlled trial[J]. EClinicalMedicine, 2019, 9: 52-59.Lin H, Li R, Liu Z, et al. Diagnostic efficacy and therapeutic decision-making capacity of an artificial intelligence platform for childhood cataracts in eye clinics: a multicentre randomized controlled trial[J]. EClinicalMedicine, 2019, 9: 52-59.
11、Siddiqui AA, Devgan U. Intraocular lens calculations in atypical eyes[J]. Indian J Ophthalmol, 2017, 65(12): 1289-1293.Siddiqui AA, Devgan U. Intraocular lens calculations in atypical eyes[J]. Indian J Ophthalmol, 2017, 65(12): 1289-1293.
12、Ladas JG, Siddiqui AA, Devgan U, et al. A 3-D “super surface” combining modern intraocular lens formulas to generate a “super formula” and maximize accuracy[J]. JAMA Ophthalmol, 2015, 133(12): 1431-1436.Ladas JG, Siddiqui AA, Devgan U, et al. A 3-D “super surface” combining modern intraocular lens formulas to generate a “super formula” and maximize accuracy[J]. JAMA Ophthalmol, 2015, 133(12): 1431-1436.
13、Siddiqui AA, Ladas JG, Lee JK. Artificial intelligence in cornea, refractive, and cataract surgery[J]. Curr Opin Ophthalmol, 2020, 31(4): 253-260.Siddiqui AA, Ladas JG, Lee JK. Artificial intelligence in cornea, refractive, and cataract surgery[J]. Curr Opin Ophthalmol, 2020, 31(4): 253-260.
14、Ladas J, Ladas D, Lin SR, et al. Improvement of Multiple Generations of Intraocular Lens Calculation Formulae with a Novel Approach Using Artificial Intelligence[J]. Transl Vis Sci Technol, 2021, 10(3): 7.Ladas J, Ladas D, Lin SR, et al. Improvement of Multiple Generations of Intraocular Lens Calculation Formulae with a Novel Approach Using Artificial Intelligence[J]. Transl Vis Sci Technol, 2021, 10(3): 7.
15、Nemeth G, Kemeny-Beke A, Modis L Jr. Comparison of accuracy of different intraocular lens power calculation methods using artificial intelligence[J]. Eur J Ophthalmol, 2022, 32(1): 235-241.Nemeth G, Kemeny-Beke A, Modis L Jr. Comparison of accuracy of different intraocular lens power calculation methods using artificial intelligence[J]. Eur J Ophthalmol, 2022, 32(1): 235-241.
16、Wan KH, Lam TCH, Yu MCY, et al. Accuracy and precision of intraocular lens calculations using the new Hill-RBF version 2.0 in eyes with high axial myopia[J]. Am J Ophthalmol, 2019, 205: 66-73.Wan KH, Lam TCH, Yu MCY, et al. Accuracy and precision of intraocular lens calculations using the new Hill-RBF version 2.0 in eyes with high axial myopia[J]. Am J Ophthalmol, 2019, 205: 66-73.
17、Savini G, Di Maita M, Hoffer KJ, et al. Comparison of 13 formulas for IOL power calculation with measurements from partial coherence interferometry[J]. Br J Ophthalmol, 2021, 105(4): 484-489.Savini G, Di Maita M, Hoffer KJ, et al. Comparison of 13 formulas for IOL power calculation with measurements from partial coherence interferometry[J]. Br J Ophthalmol, 2021, 105(4): 484-489.
18、Langenbucher A, Szentmáry N, Wendelstein J, et al. Artificial intelligence, machine learning and calculation of intraocular lens power[J]. Klin Monbl Augenheilkd, 2020, 237(12): 1430-1437.Langenbucher A, Szentmáry N, Wendelstein J, et al. Artificial intelligence, machine learning and calculation of intraocular lens power[J]. Klin Monbl Augenheilkd, 2020, 237(12): 1430-1437.
19、Li T, Yang K, Stein JD, et al. Gradient boosting decision tree algorithm for the prediction of postoperative intraocular lens position in cataract surgery[J]. Transl Vis Sci Technol, 2020, 9(13): 38.Li T, Yang K, Stein JD, et al. Gradient boosting decision tree algorithm for the prediction of postoperative intraocular lens position in cataract surgery[J]. Transl Vis Sci Technol, 2020, 9(13): 38.
20、Wei L, He W, Wang J, et al. An optical coherence tomography-based deep learning algorithm for visual acuity prediction of highly myopic eyes after cataract surgery[J]. Front Cell Dev Biol, 2021, 9: 652848.Wei L, He W, Wang J, et al. An optical coherence tomography-based deep learning algorithm for visual acuity prediction of highly myopic eyes after cataract surgery[J]. Front Cell Dev Biol, 2021, 9: 652848.
21、Long E, Chen J, Wu X, et al. Artificial intelligence manages congenital cataract with individualized prediction and telehealth computing[J]. NPJ Digit Med, 2020, 3: 112.Long E, Chen J, Wu X, et al. Artificial intelligence manages congenital cataract with individualized prediction and telehealth computing[J]. NPJ Digit Med, 2020, 3: 112.
22、林卓玲, 李强, 项毅帆, 等. 智能语音随访系统在先天性白内障患儿术后随访中的应用与分析[J]. 眼科学报, 2021, 36(1): 23-29. 林卓玲, 李强, 项毅帆, 等. 智能语音随访系统在先天性白内障患儿术后随访中的应用与分析[J]. 眼科学报, 2021, 36(1): 23-29.
23、 Application and analysis of artificial intelligence voice system in postoperative follow-up of children with congenital cataract[J]. Eye Science, 2021, 36(1): 23-29. Application and analysis of artificial intelligence voice system in postoperative follow-up of children with congenital cataract[J]. Eye Science, 2021, 36(1): 23-29.
24、Zhang K, Liu X, Jiang J, et al. Prediction of postoperative complications of pediatric cataract patients using data mining[J]. J Transl Med, 2019, 17(1): 2.Zhang K, Liu X, Jiang J, et al. Prediction of postoperative complications of pediatric cataract patients using data mining[J]. J Transl Med, 2019, 17(1): 2.
25、Forslund Jacobsen M, Konge L, la Cour M, et al. Simulation of advanced cataract surgery—validation of a newly developed test[J]. Acta Ophthalmol, 2020, 98(7): 687-692.Forslund Jacobsen M, Konge L, la Cour M, et al. Simulation of advanced cataract surgery—validation of a newly developed test[J]. Acta Ophthalmol, 2020, 98(7): 687-692.
26、Thomsen AS, Bach-Holm D, Kj?rbo H, et al. Operating room performance improves after proficiency-based virtual reality cataract surgery training[J]. Ophthalmology, 2017, 124(4): 524-531.Thomsen AS, Bach-Holm D, Kj?rbo H, et al. Operating room performance improves after proficiency-based virtual reality cataract surgery training[J]. Ophthalmology, 2017, 124(4): 524-531.
27、Jacobsen MF, Konge L, Bach-Holm D, et al. Correlation of virtual reality performance with real-life cataract surgery performance[J]. J Cataract Refract Surg, 2019, 45(9): 1246-1251.Jacobsen MF, Konge L, Bach-Holm D, et al. Correlation of virtual reality performance with real-life cataract surgery performance[J]. J Cataract Refract Surg, 2019, 45(9): 1246-1251.
28、朱思泉, 宋黎, 唐莉. 智能化白内障超声乳化仪的初步研究[C]. 郑州: 中华医学会第十二届全国眼科学术大会, 2007. 朱思泉, 宋黎, 唐莉. 智能化白内障超声乳化仪的初步研究[C]. 郑州: 中华医学会第十二届全国眼科学术大会, 2007.
29、 A preliminary study on intelligent phacoemulsification instrument for cataract[C]. Zhengzhou: Proceedings of the 12th National Ophthalmology Conference of Chinese Medical Association, 2007. A preliminary study on intelligent phacoemulsification instrument for cataract[C]. Zhengzhou: Proceedings of the 12th National Ophthalmology Conference of Chinese Medical Association, 2007.
30、赵朋生. 超声乳化联合人工晶体植入术后干眼研究进展[J]. 中国城乡企业卫生, 2020, 35(6): 74-76. 赵朋生. 超声乳化联合人工晶体植入术后干眼研究进展[J]. 中国城乡企业卫生, 2020, 35(6): 74-76.
31、 Research progress of dry eye after phacoemulsification combined with intraocular lens implantation[J]. Chinese Journal of Urban and Rural Enterprise Hygiene, 2020, 35(6): 74-76. Research progress of dry eye after phacoemulsification combined with intraocular lens implantation[J]. Chinese Journal of Urban and Rural Enterprise Hygiene, 2020, 35(6): 74-76.
32、Gandhi JS. Cystoid macular edema after cataract surgery[J]. J Cataract Refract Surg, 2018, 44(12): 1536.Gandhi JS. Cystoid macular edema after cataract surgery[J]. J Cataract Refract Surg, 2018, 44(12): 1536.
33、Kawahara A, Sato T, Hayashi K. Multivariate regression analysis to predict postoperative refractive astigmatism in cataract surgery[J]. J Ophthalmol, 2020, 2020: 9842803.Kawahara A, Sato T, Hayashi K. Multivariate regression analysis to predict postoperative refractive astigmatism in cataract surgery[J]. J Ophthalmol, 2020, 2020: 9842803.
34、Leffler CT, Javey G, Mahmood MA. Prediction of postoperative astigmatism in cataract surgery[J]. Can J Ophthalmol, 2008, 43(5): 551-554.Leffler CT, Javey G, Mahmood MA. Prediction of postoperative astigmatism in cataract surgery[J]. Can J Ophthalmol, 2008, 43(5): 551-554.
35、Kawahara A. Prediction of postoperative refractive astigmatism before toric intraocular lens implantation[J]. BMC Ophthalmol, 2021, 21(1): 202.Kawahara A. Prediction of postoperative refractive astigmatism before toric intraocular lens implantation[J]. BMC Ophthalmol, 2021, 21(1): 202.