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ORIGINAL RESEARCH

Incidence and Risk Factors for Retinal Detachment Following Pediatric Cataract Surgery

, ORCID Icon, , & ORCID Icon
Pages 1623-1636 | Received 13 Feb 2024, Accepted 21 May 2024, Published online: 06 Jun 2024

References

  • Lagrèze WA. Treatment of congenital and early childhood cataract. Ophthalmologe. 2021;118(S2):135–144. doi:10.1007/s00347-021-01370-z
  • Foster A, Gilbert C, Rahi J. Epidemiology of cataract in childhood: a global perspective. J Cataract Refract Surg. 1997;23(Supplement 1):601–604. doi:10.1016/S0886-3350(97)80040-5
  • Agarkar S, Gokhale VV, Raman R, Bhende M, Swaminathan G, Jain M. Incidence, risk factors, and outcomes of retinal detachment after pediatric cataract surgery. Ophthalmology. 2018;125(1):36–42. doi:10.1016/j.ophtha.2017.07.003
  • Daien V, Korobelnik JF, Delcourt C, et al. French Medical-Administrative Database for Epidemiology and Safety in Ophthalmology (EPISAFE): the EPISAFE Collaboration Program in Cataract Surgery. Ophthalmic Res. 2017;58(2):67–73. doi:10.1159/000456721
  • Lenhart PD, Lambert SR. Current management of infantile cataracts. Survey Ophthalmol. 2022;67(5):1476–1505. doi:10.1016/j.survophthal.2022.03.005
  • Huang YC, Chu YC, Wang NK, et al. Impact of etiology on the outcome of pediatric rhegmatogenous retinal detachment. Retina. 2019;39(1):118. doi:10.1097/IAE.0000000000001908
  • Yorston D, Yang YF, Sullivan PM. Retinal detachment following surgery for congenital cataract: presentation and outcomes. Eye. 2005;19(3):317–321. doi:10.1038/sj.eye.6701463
  • Qureshi MH, Steel DHW. Retinal detachment following cataract phacoemulsification—a review of the literature. Eye. 2020;34(4):616–631. doi:10.1038/s41433-019-0575-z
  • Rabiah PK, Du H, Hahn EA. Frequency and predictors of retinal detachment after pediatric cataract surgery without primary intraocular lens implantation. J AAPOS. 2005;9(2):152–159. doi:10.1016/j.jaapos.2004.12.013
  • Al Muammar AR, Al-Harkan D, Al-Rashidy S, Al-Suliman S, Mousa A. Frequency of retinal detachment after cataract surgery in highly myopic patients. Saudi Med J. 2013;34(5):511–517.
  • Malukiewicz-Wiśniewska G, Stafiej J. Changes in axial length after retinal detachment surgery. Eur j Ophthalmolo. 1999;9(2):115–119.
  • Haargaard B, Andersen EW, Oudin A, et al. Risk of retinal detachment after pediatric cataract surgery. Invest Ophthalmol Visual Sci. 2014;55(5):2947–2951. doi:10.1167/iovs.14-13996
  • Rosner M, Treister G, Belkin M. Epidemiology of retinal detachment in childhood and adolescence. J Pediatr Ophthalmol Strabismus. 1987;24(1):42–44. doi:10.3928/0191-3913-19870101-09
  • Chen J, Chen S, Zhao X, et al. Characteristics and management of myopic traction maculopathy in myopic eyes with axial length less than 26.5 mm. Retina. 2022;42(3):540–547. doi:10.1097/IAE.0000000000003351
  • Lake S, Bottema M, Williams K, Reynolds K. The correlation between optical coherence tomography retinal shape irregularity and axial length. PLoS One. 2019;14(12):e0227207.
  • Thylefors J, Jakobsson G, Zetterberg M, Sheikh R. Retinal detachment after cataract surgery: a population‐based study. Acta Ophthalmologica. 2022;100(8). doi:10.1111/aos.15142
  • Mimura R, Mori K, Torii H, et al. Ultra-widefield retinal imaging for analyzing the association between types of pathological myopia and posterior staphyloma. JCM. 2019;8(10):1505. doi:10.3390/jcm8101505
  • Zhang JS, Wang JD, Yusufu M, et al. The effect of retaining intact posterior capsule in congenital cataract surgery in children aged 4–8 years. BMC Ophthalmol. 2021;21(1):332. doi:10.1186/s12886-021-02098-9
  • Zhao YE, Jiang Y, Zhao Y, et al. Cataract surgery: eyes with Microphthalmos Compared to a Comparison Group; 2023. doi:10.21203/rs.3.rs-3398936/v1.
  • Yang Y, Chen H, An J, Fan W. Long-term effects of phacoemulsification and intraocular lens implantation in a patient with pathologic myopia and extremely long axial length: a case report. Medicine. 2020;99(37):e22081. doi:10.1097/MD.0000000000022081
  • Sebag J. Anomalous posterior vitreous detachment: a unifying concept in vitreo-retinal disease. Graefe’s Arch Clin Exp Ophthalmol. 2004;242(8):690–698. doi:10.1007/s00417-004-0980-1
  • Schulz A, Szurman P. Vitreous substitutes as drug release systems. Trans Vision Sci Technol. 2022;11(9):14. doi:10.1167/tvst.11.9.14
  • Weakley DR, Lynn MJ, Dubois L, et al. Myopic shift 5 years after intraocular lens implantation in the infant aphakia treatment study. Ophthalmology. 2017;124(6):822–827. doi:10.1016/j.ophtha.2016.12.040
  • Ganesh S, Gupta R, Sethi S, Gurung C, Mehta R. Myopic shift after intraocular lens implantation in children less than two years of age. Nep J Oph. 2018;10(1):11–15. doi:10.3126/nepjoph.v10i1.21662
  • Valeina S, Heede S, Erts R, et al. Factors influencing myopic shift in children after intraocular lens implantation. Eur J Ophthalmol. 2020;30(5):933–940. doi:10.1177/1120672119845228
  • Hyman L. Relationship of Age, sex, and ethnicity with myopia progression and axial elongation in the correction of myopia evaluation trial. Arch Ophthalmol. 2005;123(7):977. doi:10.1001/archopht.123.7.977
  • Hou W, Norton TT, Hyman L, Gwiazda J; the COMET Group. Axial elongation in myopic children and its association with myopia progression in the correction of myopia evaluation trial. Eye Contact Lens. 2018;44(4):248–259. doi:10.1097/ICL.0000000000000505
  • Kinoshita N, Konno Y, Hamada N, et al. Efficacy of combined orthokeratology and 0.01% atropine solution for slowing axial elongation in children with myopia: a 2-year randomised trial. Sci Rep. 2020;10(1):12750. doi:10.1038/s41598-020-69710-8
  • Li SM, Kang MT, Wu SS, et al. Efficacy, safety and acceptability of orthokeratology on slowing axial elongation in myopic children by meta-analysis. Curr Eye Res. 2016;41(5):600–608. doi:10.3109/02713683.2015.1050743
  • McBrien NA, Adams DW. A longitudinal investigation of adult-onset and adult-progression of myopia in an occupational group. Refractive and biometric findings. Invest Ophthalmol Vis Sci. 1997;38(2):321–333.
  • Barraquer C. Incidence of retinal detachment following clear-lens extraction in myopic patients: retrospective analysis. Arch Ophthalmol. 1994;112(3):336. doi:10.1001/archopht.1994.01090150066025
  • Celorio J, Pruett RC. Prevalence of lattice degeneration and its relation to axial length in severe myopia. Am J Ophthalmol. 1991;111(1):20–23. doi:10.1016/S0002-9394(14)76891-6
  • De la Huerta I, Williams GA. Rhegmatogenous retinal detachment after pediatric cataract surgery. Ophthalmology. 2018;125(1):4–5. doi:10.1016/j.ophtha.2017.08.032
  • Jin S, Zhang J, Wang J, et al. Advisability of primary intraocular lens implantation for infants under 2: a systematic review and meta‐analysis. Int J Clin Pract. 2021;75(9). doi:10.1111/ijcp.14143
  • Inoue M, Shinoda K, Ishida S, et al. Intraocular lens implantation after atopic cataract surgery decreases incidence of postoperative retinal detachment. Ophthalmology. 2005;112(10):1719–1724. doi:10.1016/j.ophtha.2005.04.021
  • Starr MR, Huang D, Wong JC, et al. Prevalence, characteristics, and outcomes of rhegmatogenous retinal detachment in eyes with trabeculectomy or glaucoma drainage devices. Retina. 2022;42(11):2039–2045. doi:10.1097/IAE.0000000000003587
  • Amer R, Nalcı H, Yalçındağ N. Exudative retinal detachment. Survey Ophthalmol. 2017;62(6):723–769. doi:10.1016/j.survophthal.2017.05.001
  • Flammer J, Orgül S, Costa VP, et al. The impact of ocular blood flow in glaucoma. Prog Retinal Eye Res. 2002;21(4):359–393. doi:10.1016/S1350-9462(02)00008-3
  • Moore D, Harris A, Wudunn D, Kheradiya N, Siesky B. Dysfunctional regulation of ocular blood flow: a risk factor for glaucoma? Clin Ophthalmol. 2008;2(4):849–861. doi:10.2147/opth.s2774
  • Petousis V, Sallam AA, Haynes RJ, et al. Risk factors for retinal detachment following cataract surgery: the impact of posterior capsular rupture. Br J Ophthalmol. 2016;100(11):1461–1465. doi:10.1136/bjophthalmol-2015-307729
  • Oke I, Hwang B, Heo H, Nguyen A, Lambert SR. Risk factors for retinal detachment repair after pediatric cataract surgery in the United States. Ophthalmol Sci. 2022;2(4):100203. doi:10.1016/j.xops.2022.100203