[1]
Kolb H, Fernandez E, Nelson R, Nguyen J, Werner L. Intraocular Lenses for Cataract Surgery. Webvision: The Organization of the Retina and Visual System. 1995:():
[PubMed PMID: 29437325]
[2]
Ridley H. Intra-ocular acrylic lenses after cataract extraction. 1952. Bulletin of the World Health Organization. 2003:81(10):758-61
[PubMed PMID: 14758438]
[3]
Trivedi RH, Apple DJ, Pandey SK, Werner L, Izak AM, Vasavada AR, Ram J. Sir Nicholas Harold Ridley. He changed the world, so that we might better see it. Indian journal of ophthalmology. 2003 Sep:51(3):211-6
[PubMed PMID: 14601845]
[4]
Pouw CA,Zegers RH, [The development of cataract surgery after 1745]. Nederlands tijdschrift voor geneeskunde. 2013;
[PubMed PMID: 23548190]
[5]
Marmamula S, Khanna RC, Shekhar K, Rao GN. Outcomes of Cataract Surgery in Urban and Rural Population in the South Indian State of Andhra Pradesh: Rapid Assessment of Visual Impairment (RAVI) Project. PloS one. 2016:11(12):e0167708. doi: 10.1371/journal.pone.0167708. Epub 2016 Dec 5
[PubMed PMID: 27918589]
[6]
Pandey SK, Apple DJ. Professor Peter Choyce: an early pioneer of intraocular lenses and corneal/refractive surgery. Clinical & experimental ophthalmology. 2005 Jun:33(3):288-93
[PubMed PMID: 15932534]
[7]
Alió JL, Kelman C. The Duet-Kelman lens: A new exchangeable angle-supported phakic intraocular lens. Journal of refractive surgery (Thorofare, N.J. : 1995). 2003 Sep-Oct:19(5):488-95
[PubMed PMID: 14518737]
[8]
Hennig A,Evans JR,Pradhan D,Johnson GJ,Pokhrel RP,Gregson RM,Hayes R,Wormald RP,Foster A, Randomised controlled trial of anterior-chamber intraocular lenses. Lancet (London, England). 1997 Apr 19;
[PubMed PMID: 9113011]
Level 1 (high-level) evidence
[9]
Quentin CD, Behrens-Baumann W, Lindemann K, Hilgers R, Vogel M. [Cystoid macular edema and visual acuity with intracapsular cataract extraction and Choyce anterior chamber lens vs. extracapsular cataract extraction and posterior chamber lens in the partner eye]. Der Ophthalmologe : Zeitschrift der Deutschen Ophthalmologischen Gesellschaft. 1993 Aug:90(4):364-6
[PubMed PMID: 8374234]
[10]
Kelman CD. Phaco-Emulsification and Aspiration: A New Technique of Cataract Removal: A Preliminary Report. American journal of ophthalmology. 2018 Jul:191():xxx-xl. doi: 10.1016/j.ajo.2018.04.014. Epub
[PubMed PMID: 29929630]
[11]
Gimbel HV, Neuhann T. Continuous curvilinear capsulorhexis. Journal of cataract and refractive surgery. 1991 Jan:17(1):110-1
[PubMed PMID: 2005552]
[12]
Gimbel HV,Neuhann T, Development, advantages, and methods of the continuous circular capsulorhexis technique. Journal of cataract and refractive surgery. 1990 Jan;
[PubMed PMID: 2299571]
[13]
Pirogova ES, Fabrikantov OL, Nikolashin SI. [Femtolaser-assisted phacoemulsification of intumescent cataract]. Vestnik oftalmologii. 2022:138(1):13-22. doi: 10.17116/oftalma202213801113. Epub
[PubMed PMID: 35234416]
[14]
Calladine D, Evans JR, Shah S, Leyland M. Multifocal versus monofocal intraocular lenses after cataract extraction. Sao Paulo medical journal = Revista paulista de medicina. 2015 Feb:133(1):68. doi: 10.1590/1516-3180.20151331T2. Epub 2015 Jan 1
[PubMed PMID: 25626855]
[15]
Fletcher A, Vijaykumar V, Selvaraj S, Thulasiraj RD, Ellwein LB. The Madurai Intraocular Lens Study. III: Visual functioning and quality of life outcomes. American journal of ophthalmology. 1998 Jan:125(1):26-35
[PubMed PMID: 9437310]
Level 2 (mid-level) evidence
[16]
Prajna NV, Chandrakanth KS, Kim R, Narendran V, Selvakumar S, Rohini G, Manoharan N, Bangdiwala SI, Ellwein LB, Kupfer C. The Madurai Intraocular Lens Study. II: Clinical outcomes. American journal of ophthalmology. 1998 Jan:125(1):14-25
[PubMed PMID: 9437309]
Level 2 (mid-level) evidence
[17]
Hirji N, Nanavaty MA. Management of corneal decompensation 4 decades after Sputnik intraocular lens implantation. Eye & contact lens. 2015 Jan:41(1):e1-4. doi: 10.1097/ICL.0b013e31829e8f03. Epub
[PubMed PMID: 24113460]
[18]
Touriño Peralba R, Lamas-Francis D, Sarandeses-Diez T, Martínez-Pérez L, Rodríguez-Ares T. Iris-claw intraocular lens for aphakia: Can location influence the final outcomes? Journal of cataract and refractive surgery. 2018 Jul:44(7):818-826. doi: 10.1016/j.jcrs.2018.05.010. Epub
[PubMed PMID: 30055690]
[19]
Sarwar H, Modi N. Sir Harold Ridley: innovator of cataract surgery. Journal of perioperative practice. 2014 Sep:24(9):210-2
[PubMed PMID: 25326942]
[20]
Tripathy K, Sridhar U. Optical coherence tomography of intraocular lens glistening. Indian journal of ophthalmology. 2019 Jan:67(1):138-139. doi: 10.4103/ijo.IJO_1031_18. Epub
[PubMed PMID: 30574921]
[21]
Yildirim TM, Schickhardt SK, Wang Q, Friedmann E, Khoramnia R, Auffarth GU. Quantitative evaluation of microvacuole formation in five intraocular lens models made of different hydrophobic materials. PloS one. 2021:16(4):e0250860. doi: 10.1371/journal.pone.0250860. Epub 2021 Apr 30
[PubMed PMID: 33930084]
[22]
Marcovich AL, Tandogan T, Bareket M, Eting E, Kaplan-Ashiri I, Bukelman A, Auffarth GU, Khoramnia R. Opacification of hydrophilic intraocular lenses associated with vitrectomy and injection of intraocular gas. BMJ open ophthalmology. 2018:3(1):e000157. doi: 10.1136/bmjophth-2018-000157. Epub 2018 Dec 15
[PubMed PMID: 30623024]
[23]
Kanclerz P, Yildirim TM, Khoramnia R. A review of late intraocular lens opacifications. Current opinion in ophthalmology. 2021 Jan:32(1):31-44. doi: 10.1097/ICU.0000000000000719. Epub
[PubMed PMID: 33165018]
Level 3 (low-level) evidence
[24]
Tarnawska D, Balin K, Jastrzębska M, Talik A, Wrzalik R. Physicochemical Analysis of Sediments Formed on the Surface of Hydrophilic Intraocular Lens after Descemet's Stripping Endothelial Keratoplasty. Materials (Basel, Switzerland). 2020 Sep 17:13(18):. doi: 10.3390/ma13184145. Epub 2020 Sep 17
[PubMed PMID: 32957729]
[25]
Fernández J, Sánchez-García A, Rodríguez-Vallejo M, Piñero DP. Systematic review of potential causes of intraocular lens opacification. Clinical & experimental ophthalmology. 2020 Jan:48(1):89-97. doi: 10.1111/ceo.13650. Epub 2019 Oct 22
[PubMed PMID: 31581356]
Level 1 (high-level) evidence
[26]
Al-Dwairi R, Saleh O, Aleshawi A, Alladkanie Z, Al Deyabat O, Alasheh A, Adi S, Al-Howthi M. Anterior Versus Retropupillary Iris-Claw Intraocular Lens: Indications, Visual Outcome and Postoperative Complications. Ophthalmology and therapy. 2022 Apr:11(2):771-784. doi: 10.1007/s40123-022-00474-2. Epub 2022 Feb 11
[PubMed PMID: 35149965]
[27]
Kirk KR, Werner L, Jaber R, Strenk S, Strenk L, Mamalis N. Pathologic assessment of complications with asymmetric or sulcus fixation of square-edged hydrophobic acrylic intraocular lenses. Ophthalmology. 2012 May:119(5):907-13. doi: 10.1016/j.ophtha.2011.10.022. Epub 2012 Mar 15
[PubMed PMID: 22424575]
[28]
Naik M, Sethi H, Mehta A. Capsular bag phimosis. American journal of ophthalmology case reports. 2020 Dec:20():100999. doi: 10.1016/j.ajoc.2020.100999. Epub 2020 Dec 3
[PubMed PMID: 33319123]
Level 3 (low-level) evidence
[29]
Gimbel HV, Van Westenbrugge JA, Sanders DR, Raanan MG. Effect of sulcus vs capsular fixation on YAG-induced pressure rises following posterior capsulotomy. Archives of ophthalmology (Chicago, Ill. : 1960). 1990 Aug:108(8):1126-9
[PubMed PMID: 2383202]
[30]
Wormstone IM, Damm NB, Kelp M, Eldred JA. Assessment of intraocular lens/capsular bag biomechanical interactions following cataract surgery in a human in vitro graded culture capsular bag model. Experimental eye research. 2021 Apr:205():108487. doi: 10.1016/j.exer.2021.108487. Epub 2021 Feb 8
[PubMed PMID: 33571531]
[31]
Wang W, Xu D, Liu X, Xu W. Case series: "Double arch" changes caused by capsule contraction syndrome after cataract surgery in highly myopic eyes. BMC ophthalmology. 2021 Oct 18:21(1):367. doi: 10.1186/s12886-021-02113-z. Epub 2021 Oct 18
[PubMed PMID: 34663265]
Level 2 (mid-level) evidence
[32]
Vanags J, Erts R, Laganovska G. Anterior Capsule Opening Contraction and Late Intraocular Lens Dislocation after Cataract Surgery in Patients with Weak or Partially Absent Zonular Support. Medicina (Kaunas, Lithuania). 2021 Jan 3:57(1):. doi: 10.3390/medicina57010035. Epub 2021 Jan 3
[PubMed PMID: 33401604]
[33]
Gamidov AA, Andgelova DV, Averkina EA, Surnina ZV. [Role of ultrasound biomicroscopy in assessing the results of laser treatment in capsular contraction syndrome]. Vestnik oftalmologii. 2021:137(6):26-32. doi: 10.17116/oftalma202113706126. Epub
[PubMed PMID: 34965064]
[34]
Zaleski M, Stahel M, Eberhard R, Alexander Blum R, Barthelmes D. OUTCOMES OF RETROPUPILLARY IRIS CLAW INTRAOCULAR LENS IMPLANTATION COMBINED WITH PARS PLANA VITRECTOMY. Retina (Philadelphia, Pa.). 2022 Jul 1:42(7):1284-1291. doi: 10.1097/IAE.0000000000003443. Epub 2022 Feb 17
[PubMed PMID: 35174810]
[35]
Mohanty A, Mahapatra SK, Mannem N. Multipiece posterior chamber intraocular lens as sutureless, glueless scleral fixated intraocular lens. Oman journal of ophthalmology. 2022 Jan-Apr:15(1):69-72. doi: 10.4103/ojo.ojo_115_21. Epub 2022 Mar 2
[PubMed PMID: 35388260]
[36]
Augustin AJ. [Reliable UV-light protection in intraocular lenses--scientific rationale and quality requirements]. Klinische Monatsblatter fur Augenheilkunde. 2014 Sep:231(9):901-8. doi: 10.1055/s-0034-1368566. Epub 2014 Jul 3
[PubMed PMID: 24992237]
Level 2 (mid-level) evidence
[37]
See LC, Li PR, Lin KK, Hou CH, Lee JS. Effect of Blue Light-Filtering Intraocular Lenses on Insomnia After Cataract Surgery: A Nationwide Cohort Study With 10-Year Follow-up. American journal of ophthalmology. 2022 Jul:239():26-36. doi: 10.1016/j.ajo.2022.01.012. Epub 2022 Feb 4
[PubMed PMID: 35123954]
[38]
Downes SM. Ultraviolet or blue-filtering intraocular lenses: what is the evidence? Eye (London, England). 2016 Feb:30(2):215-21. doi: 10.1038/eye.2015.267. Epub 2016 Jan 8
[PubMed PMID: 26742866]
[39]
Hennig A, Puri LR, Sharma H, Evans JR, Yorston D. Foldable vs rigid lenses after phacoemulsification for cataract surgery: a randomised controlled trial. Eye (London, England). 2014 May:28(5):567-75. doi: 10.1038/eye.2014.26. Epub 2014 Feb 21
[PubMed PMID: 24556879]
Level 1 (high-level) evidence
[40]
Tripathy K. Posterior Capsular Cyst on Anterior Segment OCT. Ophthalmology. 2018 Sep:125(9):1324. doi: 10.1016/j.ophtha.2018.06.033. Epub 2018 Aug 21
[PubMed PMID: 30143089]
[41]
Mastromonaco C, Balazsi M, Coblentz J, Dias ABT, Zoroquiain P, Burnier MN Jr. Histopathological analysis of residual lens cells in capsular opacities after cataract surgery using objective software. Indian journal of ophthalmology. 2022 May:70(5):1617-1625. doi: 10.4103/ijo.IJO_291_21. Epub
[PubMed PMID: 35502038]
[42]
Han Y,Tang J,Xia J,Wang R,Qin C,Liu S,Zhao X,Chen H,Lin Q, Anti-Adhesive And Antiproliferative Synergistic Surface Modification Of Intraocular Lens For Reduced Posterior Capsular Opacification. International journal of nanomedicine. 2019
[PubMed PMID: 31819418]
Level 2 (mid-level) evidence
[43]
Maedel S, Evans JR, Harrer-Seely A, Findl O. Intraocular lens optic edge design for the prevention of posterior capsule opacification after cataract surgery. The Cochrane database of systematic reviews. 2021 Aug 16:8(8):CD012516. doi: 10.1002/14651858.CD012516.pub2. Epub 2021 Aug 16
[PubMed PMID: 34398965]
Level 1 (high-level) evidence
[44]
Peng Q, Visessook N, Apple DJ, Pandey SK, Werner L, Escobar-Gomez M, Schoderbek R, Solomon KD, Guindi A. Surgical prevention of posterior capsule opacification. Part 3: Intraocular lens optic barrier effect as a second line of defense. Journal of cataract and refractive surgery. 2000 Feb:26(2):198-213
[PubMed PMID: 10683787]
[45]
Hollick EJ, Spalton DJ, Ursell PG, Meacock WR, Barman SA, Boyce JF. Posterior capsular opacification with hydrogel, polymethylmethacrylate, and silicone intraocular lenses: two-year results of a randomized prospective trial. American journal of ophthalmology. 2000 May:129(5):577-84
[PubMed PMID: 10844047]
Level 1 (high-level) evidence
[46]
Apple DJ, Peng Q, Visessook N, Werner L, Pandey SK, Escobar-Gomez M, Ram J, Auffarth GU. Eradication of posterior capsule opacification: documentation of a marked decrease in Nd:YAG laser posterior capsulotomy rates noted in an analysis of 5416 pseudophakic human eyes obtained postmortem. Ophthalmology. 2001 Mar:108(3):505-18
[PubMed PMID: 11237905]
[47]
Farukhi MA, Werner L, Kohl JC, Gardiner GL, Ford JR, Cole SC, Vasavada SA, Noristani R, Mamalis N. Evaluation of uveal and capsule biocompatibility of a single-piece hydrophobic acrylic intraocular lens with ultraviolet-ozone treatment on the posterior surface. Journal of cataract and refractive surgery. 2015 May:41(5):1081-7. doi: 10.1016/j.jcrs.2014.11.043. Epub 2015 Apr 29
[PubMed PMID: 25935337]
[48]
Matsushima H, Iwamoto H, Mukai K, Obara Y. Active oxygen processing for acrylic intraocular lenses to prevent posterior capsule opacification. Journal of cataract and refractive surgery. 2006 Jun:32(6):1035-40
[PubMed PMID: 16814067]
[49]
Hessemer V, Dick B. [Viscoelastic substances in cataract surgery. Principles and current overview]. Klinische Monatsblatter fur Augenheilkunde. 1996 Aug-Sep:209(2-3):55-61
[PubMed PMID: 8992084]
Level 3 (low-level) evidence
[50]
Sorrentino FS. Qualitative Alterations on Corneal Endothelial Cell Morphometry and Hexagonality After Cataract Surgery. Clinical ophthalmology (Auckland, N.Z.). 2021:15():4847-4853. doi: 10.2147/OPTH.S338001. Epub 2021 Dec 29
[PubMed PMID: 35002220]
Level 2 (mid-level) evidence
[51]
Pérez-Merino P, Dorronsoro C, Llorente L, Durán S, Jiménez-Alfaro I, Marcos S. In vivo chromatic aberration in eyes implanted with intraocular lenses. Investigative ophthalmology & visual science. 2013 Apr 12:54(4):2654-61. doi: 10.1167/iovs.13-11912. Epub 2013 Apr 12
[PubMed PMID: 23493299]
[52]
A Bartol-Puyal FD, Giménez G, Altemir I, Larrosa JM, Polo V, Pablo L. Optical aberrations in three different intraocular lens designs of a same platform. Saudi journal of ophthalmology : official journal of the Saudi Ophthalmological Society. 2021 Apr-Jun:35(2):126-130. doi: 10.4103/1319-4534.337865. Epub 2022 Feb 18
[PubMed PMID: 35391809]
[53]
Nanavaty MA,Ashena Z,Gallagher S,Borkum S,Frattaroli P,Barbon E, Visual Acuity, Wavefront Aberrations, and Defocus Curves With an Enhanced Monofocal and a Monofocal Intraocular Lens: A Prospective, Randomized Study. Journal of refractive surgery (Thorofare, N.J. : 1995). 2022 Jan
[PubMed PMID: 35020542]
Level 1 (high-level) evidence
[54]
Baillif S, Ecochard R, Hartmann D, Freney J, Kodjikian L. [Intraocular lens and cataract surgery: comparison between bacterial adhesion and risk of postoperative endophthalmitis according to intraocular lens biomaterial]. Journal francais d'ophtalmologie. 2009 Sep:32(7):515-28. doi: 10.1016/j.jfo.2009.04.026. Epub 2009 Jun 17
[PubMed PMID: 19539399]
[55]
Kodjikian L, Roques C, Pellon G, Renaud F, Hartmann D, Freney J, Burillon C. [Bacterial adhesion to intraocular lenses and endophthalmitis prevention: review of the literature]. Journal francais d'ophtalmologie. 2006 Jan:29(1):74-81
[PubMed PMID: 16465128]
[56]
Shi SL, Yu XN, Cui YL, Zheng SF, Shentu XC. Incidence of endophthalmitis after phacoemulsification cataract surgery: a Meta-analysis. International journal of ophthalmology. 2022:15(2):327-335. doi: 10.18240/ijo.2022.02.20. Epub 2022 Feb 18
[PubMed PMID: 35186695]
Level 1 (high-level) evidence
[58]
Tripathy K. Re: Haripriya et al.: Endophthalmitis reduction with intracameral moxifloxacin prophylaxis: analysis of 600 000 surgeries (Ophthalmology. 2017;124:768-775). Ophthalmology. 2017 Sep:124(9):e72. doi: 10.1016/j.ophtha.2017.04.019. Epub
[PubMed PMID: 28823359]
[59]
Haripriya A, Chang DF, Ravindran RD. Endophthalmitis Reduction with Intracameral Moxifloxacin Prophylaxis: Analysis of 600 000 Surgeries. Ophthalmology. 2017 Jun:124(6):768-775. doi: 10.1016/j.ophtha.2017.01.026. Epub 2017 Feb 14
[PubMed PMID: 28214101]
[60]
Wenzel M,Langenbucher A,Eppig T, [Causes, Diagnosis and Therapy of Negative Dysphotopsia]. Klinische Monatsblatter fur Augenheilkunde. 2019 Jun
[PubMed PMID: 28837979]
[61]
Davison JA. Positive and negative dysphotopsia in patients with acrylic intraocular lenses. Journal of cataract and refractive surgery. 2000 Sep:26(9):1346-55
[PubMed PMID: 11020620]
[62]
Osher RH. Differentiating transient and permanent negative dysphotopsia. Journal of cataract and refractive surgery. 2010 Sep:36(9):1619; author reply 161-9. doi: 10.1016/j.jcrs.2010.06.018. Epub
[PubMed PMID: 20692588]
[63]
Osher RH. Negative dysphotopsia: long-term study and possible explanation for transient symptoms. Journal of cataract and refractive surgery. 2008 Oct:34(10):1699-707. doi: 10.1016/j.jcrs.2008.06.026. Epub
[PubMed PMID: 18812121]
[64]
Rocha KM, Soriano ES, Chamon W, Chalita MR, Nosé W. Spherical aberration and depth of focus in eyes implanted with aspheric and spherical intraocular lenses: a prospective randomized study. Ophthalmology. 2007 Nov:114(11):2050-4
[PubMed PMID: 17445897]
Level 1 (high-level) evidence
[65]
Placeres Dabán J, Elvira JC, Azrak C, Rial L, Piñero DP, Belda JI. Long-Term Clinically Significant Posterior Capsular Opacification Development Pattern in Eyes Implanted with an Aspheric Monofocal Intraocular Lens with a Square Optic Edge. Journal of ophthalmology. 2021:2021():4566436. doi: 10.1155/2021/4566436. Epub 2021 Sep 30
[PubMed PMID: 34631162]
[66]
Belda JI, Dabán JP, Elvira JC, O'Boyle D, Puig X, Pérez-Vives C, Zou M, Sun S. Nd:YAG capsulotomy incidence associated with five different single-piece monofocal intraocular lenses: a 3-year Spanish real-world evidence study of 8293 eyes. Eye (London, England). 2022 Nov:36(11):2205-2210. doi: 10.1038/s41433-021-01828-z. Epub 2021 Nov 11
[PubMed PMID: 34764439]
[67]
Trakos N, Ioachim E, Tsanou E, Aspiotis M, Psilas K, Kalogeropoulos C. Findings of an experimental study in a rabbit model on posterior capsule opacification after implantation of hydrophobic acrylic and hydrophilic acrylic intraocular lenses. Clinical ophthalmology (Auckland, N.Z.). 2008 Dec:2(4):997-1005
[PubMed PMID: 19668459]
[68]
Fazly Bazzaz BS, Jalalzadeh M, Sanati M, Zarei-Ghanavati S, Khameneh B. Biofilm Formation by Staphylococcus epidermidis on Foldable and Rigid Intraocular Lenses. Jundishapur journal of microbiology. 2014 May:7(5):e10020. doi: 10.5812/jjm.10020. Epub 2014 May 1
[PubMed PMID: 25147711]
[69]
Huh J, Eom Y, Yang SK, Choi Y, Kim HM, Song JS. A comparison of clinical outcomes and optical performance between monofocal and new monofocal with enhanced intermediate function intraocular lenses: a case-control study. BMC ophthalmology. 2021 Oct 16:21(1):365. doi: 10.1186/s12886-021-02124-w. Epub 2021 Oct 16
[PubMed PMID: 34656091]
Level 2 (mid-level) evidence
[70]
Schmid R, Luedtke H, Borkenstein AF. Enhanced Depth-of-focus Intraocular Lenses: Latest Wavefront-shaped Optics versus Diffractive Optics. Optometry and vision science : official publication of the American Academy of Optometry. 2022 Apr 1:99(4):335-341. doi: 10.1097/OPX.0000000000001894. Epub
[PubMed PMID: 35383733]
[71]
Britton JJL, El-Defrawy S, Wong BM, Chandrakumar M, Omali NB, Pham S, Hatch W. Patient Satisfaction and Visual Function Following Implantation of Trifocal or Extended Range of Vision Intraocular Lenses. Clinical ophthalmology (Auckland, N.Z.). 2022:16():669-676. doi: 10.2147/OPTH.S339385. Epub 2022 Mar 5
[PubMed PMID: 35282167]
[72]
Paritekar P, Nayak A, Umesh Y, Sirivella I, Manoharan S, Khatib Z. Comparison of newer Kane formula with Sanders Retzlaff Kraff/Theoretical and Barrett Universal II for calculation of intraocular lens power in Indian eyes. Indian journal of ophthalmology. 2022 Apr:70(4):1203-1207. doi: 10.4103/ijo.IJO_2014_21. Epub
[PubMed PMID: 35326016]
[73]
Lin L, Xu M, Mo E, Huang S, Qi X, Gu S, Sun W, Su Q, Li J, Zhao YE. Accuracy of Newer Generation IOL Power Calculation Formulas in Eyes With High Axial Myopia. Journal of refractive surgery (Thorofare, N.J. : 1995). 2021 Nov:37(11):754-758. doi: 10.3928/1081597X-20210712-08. Epub 2021 Nov 1
[PubMed PMID: 34756144]
Level 2 (mid-level) evidence
[74]
Iida Y, Shimizu K, Shoji N. Development of a New Method for Calculating Intraocular Lens Power after Myopic Laser In Situ Keratomileusis by Combining the Anterior-Posterior Ratio of the Corneal Radius of the Curvature with the Double-K Method. Journal of clinical medicine. 2022 Jan 20:11(3):. doi: 10.3390/jcm11030522. Epub 2022 Jan 20
[PubMed PMID: 35159971]
[75]
Diener R, Treder M, Lauermann JL, Eter N, Alnawaiseh M. Optimizing intraocular lens power calculation using adjusted conventional keratometry for cataract surgery combined with Descemet membrane endothelial keratoplasty. Graefe's archive for clinical and experimental ophthalmology = Albrecht von Graefes Archiv fur klinische und experimentelle Ophthalmologie. 2022 Sep:260(9):3087-3093. doi: 10.1007/s00417-022-05598-6. Epub 2022 Mar 8
[PubMed PMID: 35258717]
[76]
Hou Y, Liu L, Wang G, Xie J, Wang Y. Different lens power calculation formulas for the prediction of refractive outcome after phacoemulsification with silicone oil removal. BMC ophthalmology. 2022 Feb 13:22(1):74. doi: 10.1186/s12886-022-02304-2. Epub 2022 Feb 13
[PubMed PMID: 35151281]
[77]
Kanclerz P, Grzybowski A. Accuracy of Intraocular Lens Power Calculation in Eyes Filled with Silicone Oil. Seminars in ophthalmology. 2019:34(5):392-397. doi: 10.1080/08820538.2019.1636097. Epub 2019 Jul 1
[PubMed PMID: 31257972]
[78]
Dong J, Yao J, Chang S, Kanclerz P, Khoramnia R, Wang X. Comparison Study of the Two Biometers Based on Swept-Source Optical Coherence Tomography Technology. Diagnostics (Basel, Switzerland). 2022 Feb 26:12(3):. doi: 10.3390/diagnostics12030598. Epub 2022 Feb 26
[PubMed PMID: 35328151]
[79]
Khan MA, Burden J, Dinsmore J, Lockwood AJ. Making cataract surgery possible in patients with ankylosing spondylitis: A new positioning technique. American journal of ophthalmology case reports. 2022 Mar:25():101246. doi: 10.1016/j.ajoc.2021.101246. Epub 2021 Dec 22
[PubMed PMID: 35005297]
Level 3 (low-level) evidence
[80]
Park SSE, Wilkinson S, Mamalis N. Dealing with floppy iris syndrome. Current opinion in ophthalmology. 2022 Jan 1:33(1):3-8. doi: 10.1097/ICU.0000000000000815. Epub
[PubMed PMID: 34711714]
Level 3 (low-level) evidence
[81]
Tobaiqy M, Aalam W, Banji D, Al Haleem ENA. Intraoperative Floppy Iris Syndrome Induced by Tamsulosin: The Risk and Preventive Strategies. Middle East African journal of ophthalmology. 2021 Jan-Mar:28(1):51-56. doi: 10.4103/meajo.MEAJO_561_20. Epub 2021 Apr 30
[PubMed PMID: 34321822]
[82]
Lenhart PD, Lambert SR. Current management of infantile cataracts. Survey of ophthalmology. 2022 Sep-Oct:67(5):1476-1505. doi: 10.1016/j.survophthal.2022.03.005. Epub 2022 Mar 17
[PubMed PMID: 35307324]
Level 3 (low-level) evidence
[83]
Chattannavar G, Badakere A, Mohamed A, Kekunnaya R. Visual outcomes and complications in infantile cataract surgery: a real - world scenario. BMJ open ophthalmology. 2022:7(1):e000744. doi: 10.1136/bmjophth-2021-000744. Epub 2022 Mar 8
[PubMed PMID: 35342821]
[84]
Sadlak N, Fiorello MG, Cabral HJ, Subramanian ML, Desai MA, Lee HJ. Poor Correlation of Provider and Patient Satisfaction with Anesthesia in Ophthalmic Surgeries: A Secondary Analysis of a Clinical Trial. Clinical ophthalmology (Auckland, N.Z.). 2022:16():677-683. doi: 10.2147/OPTH.S351010. Epub 2022 Mar 6
[PubMed PMID: 35282171]
[85]
Micieli JA, Arshinoff SA. Cataract surgery. CMAJ : Canadian Medical Association journal = journal de l'Association medicale canadienne. 2011 Oct 4:183(14):1621. doi: 10.1503/cmaj.110549. Epub 2011 Aug 8
[PubMed PMID: 21825045]