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Review

Myopia in India

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Pages 163-176 | Published online: 20 Jan 2022

References

  • Congdon N, Burnett A, Frick K. The impact of uncorrected myopia on individuals and society. Commun Eye Health. 2019;32(105):7–8.
  • Holden BA, Fricke TR, Wilson DA, et al. Global prevalence of myopia and high myopia and temporal trends from 2000 through 2050. Ophthalmology. 2016;123(5):1036–1042. doi:10.1016/j.ophtha.2016.01.006
  • Agarwal D, Saxena R, Gupta V, et al. Prevalence of myopia in Indian school children: meta-analysis of last four decades. PLoS One. 2020;15(10):e0240750. doi:10.1371/journal.pone.0240750
  • Saxena R, Vashist P, Tandon R, et al. Incidence and progression of myopia and associated factors in urban school children in Delhi: the North India Myopia Study (NIM Study). PLoS One. 2017;12(12):e0189774. doi:10.1371/journal.pone.0189774
  • Zonal Councils; 2012. Available from: https://web.archive.org/web/20120508170915/http://interstatecouncil.nic.in/zonal.htm. Accessed January 10, 2022.
  • Kalikivayi V, Naduvilath TJ, Bansal AK, Dandona L. Visual impairment in school children in southern India. Indian J Ophthalmol. 1997;45(2):129–134.
  • Dandona R, Dandona L, Naduvilath TJ, Srinivas M, McCarty CA, Rao GN. Refractive errors in an urban population in Southern India: the Andhra Pradesh Eye Disease Study. Invest Ophthalmol Vis Sci. 1999;40(12):2810–2818.
  • Khan SA. A retrospective study of low-vision cases in an Indian tertiary eye-care hospital. Indian J Ophthalmol. 2000;48(3):201–207.
  • Dandona R, Dandona L, Srinivas M, Giridhar P, McCarty CA, Rao GN. Population-based assessment of refractive error in India: the Andhra Pradesh eye disease study. Clin Experiment Ophthalmol. 2002;30(2):84–93. doi:10.1046/j.1442-6404.2002.00492.x
  • Dandona R, Dandona L, Srinivas M, et al. Refractive error in children in a rural population in India. Invest Ophthalmol Vis Sci. 2002;43(3):615–622.
  • Krishnaiah S, Srinivas M, Khanna RC, Rao GN. Prevalence and risk factors for refractive errors in the South Indian adult population: the Andhra Pradesh Eye disease study. Clin Ophthalmol Auckl NZ. 2009;3:17–27.
  • Uzma N, Kumar BS, Khaja Mohinuddin Salar BM, Zafar MA, Reddy VD. A comparative clinical survey of the prevalence of refractive errors and eye diseases in urban and rural school children. Can J Ophthalmol J Can Ophtalmol. 2009;44(3):328–333. doi:10.3129/i09-030
  • Bansal A, Krishnappa K, Datti NP, Guruprasal BS, Guha J. Ocular morbidity in school going children of Kolar district South India. J Clin Biomed Sci. 2012;2(4):175–183.
  • Prabhu AV, Ve RS, Talukdar J, Chandrasekaran V. Prevalence of visual impairment in school- going children among the rural and urban setups in the Udupi district of Karnataka, India: a cross-sectional study. Oman J Ophthalmol. 2019;12(3):145–149. doi:10.4103/ojo.OJO_190_2018
  • Raju P, Ramesh SV, Arvind H, et al. Prevalence of refractive errors in a rural South Indian population. Invest Ophthalmol Vis Sci. 2004;45(12):4268–4272. doi:10.1167/iovs.04-0221
  • Prema R, George R, Sathyamangalam Ve R, et al. Comparison of refractive errors and factors associated with spectacle use in a rural and urban South Indian population. Indian J Ophthalmol. 2008;56(2):139–144. doi:10.4103/0301-4738.39119
  • Joseph S, Krishnan T, Ravindran RD, et al. Prevalence and risk factors for myopia and other refractive errors in an adult population in southern India. Ophthalmic Physiol Opt J Br Coll Ophthalmic Opt Optom. 2018;38(3):346–358. doi:10.1111/opo.12447
  • Chandra DB, Swarup D, Srivastava RK. Prevalence and pattern along with socio-economic factors of myopia in school going children-8 to 16 years. Indian J Ophthalmol. 1982;30(6):517.
  • Haq I, Khan Z, Khalique N, Amir A, Jilani FA, Zaidi M. Prevalence of common ocular morbidities in adult population of Aligarh. Indian J Commun Med. 2009;34(3):195–201. doi:10.4103/0970-0218.55283
  • Agrawal D, Sahu A, Agrawal D. Prevalence of ocular morbidities among school children in Raipur district, India. Indian J Ophthalmol. 2020;68(2):340–344. doi:10.4103/ijo.IJO_1454_19
  • Mukherji R, Seal SC. An epidemiological study of refractive errors among college students in Calcutta. J Indian Med Assoc. 1979;73(9–10):159–164.
  • Datta A, Choudhury N, Kundu K. An epidemiological study of ocular condition among primary school children of Calcutta Corporation. Indian J Ophthalmol. 1983;31(5):505–510.
  • Das A, Dutta H, Bhaduri G, De sarkar A, Sarkar K, Bannerjee M. A study on refractive errors among school children in Kolkata. J Indian Med Assoc. 2007;105(4):169–172.
  • Bagchi K, Sarkar SN, Chattopadhyaya T, Dan A. Vision screening programme among school children–evaluation of the outcome in a selected urban locality. J Indian Med Assoc. 2008;106(5):283–6, 288.
  • Ghosh S, Mukhopadhyay U, Maji D, Bhaduri G. Visual impairment in urban school children of low-income families in Kolkata, India. Indian J Public Health. 2012;56(2):163–167. doi:10.4103/0019-557X.99919
  • Rao GN, Sabnam S, Pal S, Rizwan H, Thakur B, Pal A. Prevalence of ocular morbidity among children aged 17 years or younger in the eastern India. Clin Ophthalmol Auckl NZ. 2018;12:1645–1652. doi:10.2147/OPTH.S171822
  • Warkad VU, Panda L, Behera P, Das T, Mohanta BC, Khanna R. The Tribal Odisha Eye Disease Study (TOES) 1: prevalence and causes of visual impairment among tribal children in an urban school in Eastern India. J AAPOS. 2018;22(2):145.e1–145.e6. doi:10.1016/j.jaapos.2017.10.020
  • Panda L, Nayak S, Khanna RC, Das T. Tribal Odisha Eye Disease Study (TOES) # 7. Prevalence of refractive error in children in tribal Odisha (India) school screening. Indian J Ophthalmol. 2020;68(8):1596–1599. doi:10.4103/ijo.IJO_2020_19
  • Padhye AS, Khandekar R, Dharmadhikari S, Dole K, Gogate P, Deshpande M. Prevalence of uncorrected refractive error and other eye problems among urban and rural school children. Middle East Afr J Ophthalmol. 2009;16(2):69–74. doi:10.4103/0974-9233.53864
  • Nangia V, Jonas JB, Sinha A, Matin A, Kulkarni M. Refractive error in central India: the Central India Eye and Medical Study. Ophthalmology. 2010;117(4):693–699. doi:10.1016/j.ophtha.2009.09.037
  • Jonas JB, Nangia V, Gupta R, Bhojwani K, Nangia P, Panda-Jonas S. Prevalence of myopic retinopathy in rural Central India. Acta Ophthalmol (Copenh). 2017;95(5):e399–404. doi:10.1111/aos.13301
  • Basu M, Das P, Pal R, Kar S, Desai VK, Kavishwar A. Spectrum of visual impairment among urban female school students of Surat. Indian J Ophthalmol. 2011;59(6):475–479. doi:10.4103/0301-4738.86317
  • Murthy GVS, Gupta SK, Ellwein LB, et al. Refractive error in children in an urban population in New Delhi. Invest Ophthalmol Vis Sci. 2002;43(3):623–631.
  • Saxena R, Vashist P, Tandon R, et al. Prevalence of myopia and its risk factors in urban school children in Delhi: the North India Myopia Study (NIM Study). PLoS One. 2015;10(2):e0117349. doi:10.1371/journal.pone.0117349
  • Shukla P, Vashist P, Singh SS, et al. Assessing the inclusion of primary school children in vision screening for refractive error program of India. Indian J Ophthalmol. 2018;66(7):935–939. doi:10.4103/ijo.IJO_1036_17
  • Ahmed I, Mian S, Mudasir S, Andrabi KI. Prevalence of myopia in students of Srinagar city of Kashmir, India. Int J Health Sci. 2008;2(1):77–81.
  • Jha KN. Baseline ophthalmic data of school children aged 15 years or younger at Leh, Jammu and Kashmir, India. J Clin Diagn Res. 2008;64:1186–1190.
  • Singh NK, James RM, Yadav A, Kumar R, Asthana S, Labani S. Prevalence of myopia and associated risk factors in schoolchildren in North India. Optom Vis Sci. 2019;96(3):200–205. doi:10.1097/OPX.0000000000001344
  • Natung T, Taye T, Lyngdoh LA, Dkhar B, Hajong R. Refractive errors among patients attending the ophthalmology department of a medical college in North-East India. J Fam Med Prim Care. 2017;6(3):543–548. doi:10.4103/2249-4863.222023
  • Basu SK, Jindal A. Genetic aspects of myopia among the Shia Muslim Dawoodi Bohras of Udaipur, Rajsthan. Hum Hered. 1983;33(3):163–169. doi:10.1159/000153369
  • Ratnamala U, Lyle R, Rawal R, et al. Refinement of the X-linked nonsyndromic high-grade myopia locus MYP1 on Xq28 and exclusion of 13 known positional candidate genes by direct sequencing. Invest Ophthalmol Vis Sci. 2011;52(9):6814–6819. doi:10.1167/iovs.10-6815
  • Sharmila F, Ramprabhu K, Kumaramanickavel G, Sudhir RR, Sripriya S, Sripriya S. Genetic analysis of axial length genes in high grade myopia from Indian population. Meta Gene. 2014;2:164–175. doi:10.1016/j.mgene.2014.01.004
  • Annamaneni S, Bindu CH, Reddy KP, Vishnupriya S. Association of vitamin D receptor gene start codon (Fok1) polymorphism with high myopia. Oman J Ophthalmol. 2011;4(2):57–62. doi:10.4103/0974-620X.83654
  • Gupta V, Somarajan BI, Walia GK, et al. Role of CYP1B1, p.E229K and p.R368H mutations among 120 families with sporadic juvenile onset open-angle glaucoma. Graefes Arch Clin Exp Ophthalmol. 2018;256(2):355–362. doi:10.1007/s00417-017-3853-0
  • Ahmed I, Rasool S, Jan T, Qureshi T, Naykoo NA, Andrabi KI. TGIF1 is a potential candidate gene for high myopia in ethnic Kashmiri population. Curr Eye Res. 2014;39(3):282–290. doi:10.3109/02713683.2013.841950
  • Rasool S, Ahmed I, Dar R, et al. Contribution of TGFβ1 codon 10 polymorphism to high myopia in an ethnic Kashmiri population from India. Biochem Genet. 2013;51(3–4):323–333. doi:10.1007/s10528-012-9565-6
  • Shukla P, Verma H, Patel S, Patra PK, Bhaskar LV. Ocular manifestations of sickle cell disease and genetic susceptibility for refractive errors. Taiwan J Ophthalmol. 2017;7(2):89–93. doi:10.4103/tjo.tjo_3_17
  • Verma M, Chhatwal J, Jaison S, Thomas S, Daniel R. Refractive errors in preterm babies. Indian Pediatr. 1994;31(10):1183–1186.
  • Kaur S, Sukhija J, Katoch D, Sharma M, Samanta R, Dogra MR. Refractive and ocular biometric profile of children with a history of laser treatment for retinopathy of prematurity. Indian J Ophthalmol. 2017;65(9):835–840. doi:10.4103/ijo.IJO_872_16
  • Kulkarni S, Shah M, Dole K, Taras S, Deshpande R, Deshpande M. Ocular outcomes and comorbidities in preterm infants enrolled for retinopathy of prematurity screening: a cohort study from western India. Oman J Ophthalmol. 2019;12(1):10–14. doi:10.4103/ojo.OJO_221_2017
  • Katoch D, Sanghi G, Dogra MR, Beke N, Gupta A. Structural sequelae and refractive outcome 1 year after laser treatment for type 1 prethreshold retinopathy of prematurity in Asian Indian eyes. Indian J Ophthalmol. 2011;59(6):423–426. doi:10.4103/0301-4738.86306
  • Anilkumar SE, Anandi V, Shah PK, Ganesh S, Narendran K. Refractive, sensory, and biometric outcome among retinopathy of prematurity children with a history of laser therapy: a retrospective review from a tertiary care center in South India. Indian J Ophthalmol. 2019;67(6):871–876. doi:10.4103/ijo.IJO_2023_18
  • Sathar A, Abbas S, Nujum ZT, Benson JL, Sreedevi GP, Saraswathyamma SK. Visual outcome of preterm infants screened in a tertiary care hospital. Middle East Afr J Ophthalmol. 2019;26(3):158–162. doi:10.4103/meajo.MEAJO_64_17
  • Shah PK, Ramakrishnan M, Sadat B, Bachu S, Narendran V, Kalpana N. Long term refractive and structural outcome following laser treatment for zone 1 aggressive posterior retinopathy of prematurity. Oman J Ophthalmol. 2014;7(3):116–119. doi:10.4103/0974-620X.142592
  • Beri S, Malhotra M, Dhawan A, Garg R, Jain R, D’souza P. A neuroectodermal hypothesis of the cause and relationship of myopia in retinopathy of prematurity. J Pediatr Ophthalmol Strabismus. 2009;46(3):146–150. doi:10.3928/01913913-20090505-05
  • Sanghi G, Dogra MR, Das P, Vinekar A, Gupta A, Dutta S. Aggressive posterior retinopathy of prematurity in Asian Indian babies: spectrum of disease and outcome after laser treatment. Retina Phila. 2009;29(9):1335–1339. doi:10.1097/IAE.0b013e3181a68f3a
  • Fielder AR, Quinn GE. Myopia of prematurity: nature, nurture, or disease? Br J Ophthalmol. 1997;81(1):2–3. doi:10.1136/bjo.81.1.2
  • Cook A, White S, Batterbury M, Clark D. Ocular growth and refractive error development in premature infants with or without retinopathy of prematurity. Invest Ophthalmol Vis Sci. 2008;49(12):5199–5207. doi:10.1167/iovs.06-0114
  • Jain D, Rathi H, Ambekar G, Nangia V. Glaucoma in myopia, its features and correlations: findings from Central India. Invest Ophthalmol Vis Sci. 2019;60(9):5566.
  • Mandal AK, Gothwal VK, Bagga H, Nutheti R, Mansoori T. Outcome of surgery on infants younger than 1 month with congenital glaucoma. Ophthalmology. 2003;110(10):1909–1915. doi:10.1016/S0161-6420(03)00671-7
  • Pan C-W, Cheung CY, Aung T, et al. Differential associations of myopia with major age-related eye diseases: the Singapore Indian Eye Study. Ophthalmology. 2013;120(2):284–291. doi:10.1016/j.ophtha.2012.07.065
  • Manayath GJ, Arora S, Parikh H, Shah PK, Tiwari S, Narendran V. Is myopia a protective factor against central serous chorioretinopathy? Int J Ophthalmol. 2016;9(2):266–270. doi:10.18240/ijo.2016.02.16
  • Praveen MR, Shah GD, Vasavada AR, Mehta PG, Gilbert C, Bhagat G. A study to explore the risk factors for the early onset of cataract in India. Eye Lond Engl. 2010;24(4):686–694.
  • Praveen MR, Vasavada AR, Jani UD, Trivedi RH, Choudhary PK. Prevalence of cataract type in relation to axial length in subjects with high myopia and emmetropia in an Indian population. Am J Ophthalmol. 2008;145(1):176–181. doi:10.1016/j.ajo.2007.07.043
  • Vanathi M, Tandon R, Titiyal JS, Vajpayee RB. Case series of 12 children with progressive axial myopia following unilateral cataract extraction. J AAPOS. 2002;6(4):228–232. doi:10.1067/mpa.2002.123658
  • Jethani J, Kim U, Kharzei H, Vijayalakshmi P. Blepharophimosis syndrome and its association with amblyopia and refractive errors in a South Indian population. Asian J Ophthalmol. 2007;9:68–71.
  • Hussaindeen JR, Mani R, Agarkar S, Ramani KK, Surendran TS. Acute adult-onset comitant esotropia associated with accommodative spasm. Optom Vis Sci. 2014;91(4 Suppl 1):S46–S51. doi:10.1097/OPX.0000000000000182
  • Rutstein RP, Daum KM, Amos JF. Accommodative spasm: a study of 17 cases. J Am Optom Assoc. 1988;59(7):527–538.
  • Rutstein RP, Marsh-Tootle W. Acquired unilateral visual loss attributed to an accommodative spasm. Optom Vis Sci. 2001;78(7):492–495. doi:10.1097/00006324-200107000-00011
  • Faucher C, De Guise D. Spasm of the near reflex triggered by disruption of normal binocular vision. Optom Vis Sci. 2004;81(3):178–181. doi:10.1097/00006324-200403000-00009
  • Hussaindeen JR, Anand M, Sivaraman V, Ramani KK, Allen PM. Variant myopia: a new presentation? Indian J Ophthalmol. 2018;66(6):799–805. doi:10.4103/ijo.IJO_1115_17
  • Merchant RH, Punde H, Thacker N, Bhatt D. Ophthalmic evaluation in beta-thalassemia. Indian J Pediatr. 2017;84(7):509–514. doi:10.1007/s12098-017-2339-8
  • Nangia V, Jonas JB, Matin A, Kulkarni M, Sinha A, Gupta R. Body height and ocular dimensions in the adult population in rural Central India. The Central India Eye and Medical Study. Graefes Arch Clin Exp Ophthalmol. 2010;248(11):1657–1666. doi:10.1007/s00417-010-1448-0
  • Chen ZT-Y, Wang I-J, Liao Y-T, Shih Y-F, Lin LL-K. Polymorphisms in steroidogenesis genes, sex steroid levels, and high myopia in the Taiwanese population. Mol Vis. 2011;17:2297–2310.
  • Gupta M, Rana SK, Mittal SK, Sinha RNP. Profile of amblyopia in school going (5–15 years) children at state level referral hospital in Uttarakhand. J Clin Diagn Res. 2016;10(11):SC09–SC11. doi:10.7860/JCDR/2016/16026.8866
  • Kemmanu V, Hegde K, Giliyar SK, Shetty BK, Kumaramanickavel G, McCarty CA. Prevalence of childhood blindness and ocular morbidity in a rural pediatric population in Southern India: the Pavagada Pediatric Eye Disease Study-1. Ophthalmic Epidemiol. 2016;23(3):185–192. doi:10.3109/09286586.2015.1090003
  • Mhaske MS, Khismatrao DS, Kevin F, Pandve HT, Kundap RP. Morbidity pattern and personal hygiene in children among private primary school in urban area: are the trends changing? J Fam Med Prim Care. 2013;2(3):266–269. doi:10.4103/2249-4863.120753
  • Kaur G, Thomas S, Jindal M, Bhatti SM. Visual function and ocular status in children with disabilities in special schools of Northern India. J Clin Diagn Res. 2016;10(10):NC01–4. doi:10.7860/JCDR/2016/23615.8742
  • Joshi RS, Somani AAK. Ocular disorder in children with mental retardation. Indian J Psychiatry. 2013;55(2):170–172. doi:10.4103/0019-5545.111457
  • Gogate P, Soneji FR, Kharat J, Dulera H, Deshpande M, Gilbert C. Ocular disorders in children with learning disabilities in special education schools of Pune, India. Indian J Ophthalmol. 2011;59(3):223–228. doi:10.4103/0301-4738.81036
  • Sheth PB, Shah HA, Dave JN. Periorbital hyperpigmentation: a study of its prevalence, common causative factors and its association with personal habits and other disorders. Indian J Dermatol. 2014;59(2):151–157. doi:10.4103/0019-5154.127675
  • Kumaran SE, Balasubramaniam SM, Kumar DS, Ramani KK. Refractive error and vision-related quality of life in South Indian children. Optom Vis Sci. 2015;92(3):272–278. doi:10.1097/OPX.0000000000000494
  • Rao YK, Padhye A, Midha T, Gupta A, Kumar A, Mohan K. Predictive value of headache for screening of refractive errors in the pediatric age group. J Pediatr Neurol. 2015;13(3):99–104. doi:10.1055/s-0035-1557146
  • Sivaraman V, Rizwana JH, Ramani K, et al. Near work-induced transient myopia in Indian subjects. Clin Exp Optom. 2015;98(6):541–546. doi:10.1111/cxo.12306
  • Hedge SP, Dayanidhi VK. Study of pattern of change in handwriting class characters with different grades of myopia. J Clin Diagn Res. 2015;9(12):HC01–04. doi:10.7860/JCDR/2015/15942.6960
  • Joseph L. Refractive errors and academic achievements of primary school children. Nurs J India. 2014;105(6):269–271.
  • Kesarwani P, Narang S, Chawla D, Jain S, Chandel M, Sood S. Vision-related quality of life in children with treated retinopathy of prematurity. Indian J Ophthalmol. 2019;67(6):932–935. doi:10.4103/ijo.IJO_323_19
  • Saxena R, Vashist P, Menon V. Is myopia a public health problem in India? Indian J Commun. 2013;38(2):83–85. doi:10.4103/0970-0218.112436
  • Baskaran AA, Britto T, Rajkumar S, Thomas PA, Jesudasan CAN. Comparison of torsional amplitudes between emmetropes and myopes using after-image slides. Indian J Ophthalmol. 2019;67(5):655–658. doi:10.4103/ijo.IJO_1663_18
  • Kenia VP, Kenia RV, Pirdankar OH. Association between corneal biomechanical parameters and myopic refractive errors in young Indian individuals. Taiwan J Ophthalmol. 2020;10(1):45–53. doi:10.4103/tjo.tjo_15_19
  • Jonas JB, Bi HS, Wu JF, et al. Corneal curvature radius in myopia of schoolchildren versus adult myopia. Cornea. 2016;35(10):1333–1337. doi:10.1097/ICO.0000000000000854
  • Dhakal R, Vupparaboina KK, Verkicharla PK. Anterior sclera undergoes thinning with increasing degree of myopia. Invest Ophthalmol Vis Sci. 2020;61(4):6. doi:10.1167/iovs.61.4.6
  • Singh D, Mishra K, Agarwal E, Sharma R, Bhartiya S, Dada T. Assessment of retinal nerve fiber layer changes by cirrus high-definition optical coherence tomography in myopia. J Curr Glaucoma Pract. 2017;11(2):52–57. doi:10.5005/jp-journals-10028-1223
  • Dada T, Aggarwal A, Bali SJ, et al. Evaluation of retinal nerve fiber layer thickness parameters in myopic population using scanning laser polarimetry (GDxVCC). NEPJOPH. 2013;5(1):3–8. doi:10.3126/nepjoph.v5i1.7814
  • Malakar M, Askari SN, Ashraf H, Waris A, Ahuja A, Asghar A. Optical coherence tomography assisted retinal nerve fibre layer thickness profile in high myopia. J Clin Diagn Res. 2015;9(2):NC01–03. doi:10.7860/JCDR/2015/9054.5565
  • Biswas S, Biswas P. Longitudinal evaluation of the structural and functional changes associated with glaucoma in myopia. Optom Vis Sci. 2020;97(6):448–456. doi:10.1097/OPX.0000000000001519
  • Samuel NE, Krishnagopal S. Foveal and macular thickness evaluation by spectral OCT SLO and its relation with axial length in various degree of myopia. J Clin Diagn Res. 2015;9(3):NC01–04. doi:10.7860/JCDR/2015/11780.5676
  • Dhakal R, Goud A, Narayanan R, Verkicharla PK. Patterns of posterior ocular complications in myopic eyes of Indian population. Sci Rep. 2018;8(1):13700. doi:10.1038/s41598-018-29536-x
  • Kumar A, Chawla R, Kumawat D, Pillay G. Insight into high myopia and the macula. Indian J Ophthalmol. 2017;65(2):85–91. doi:10.4103/ijo.IJO_863_16
  • Matalia J, Anegondi NS, Veeboy L, Roy AS. Age and myopia associated optical coherence tomography of retina and choroid in pediatric eyes. Indian J Ophthalmol. 2018;66(1):77–82. doi:10.4103/ijo.IJO_652_17
  • Bhayana AA, Kumar V, Tayade A, Chandra M, Chandra P, Kumar A. Choroidal thickness in normal Indian eyes using swept-source optical coherence tomography. Indian J Ophthalmol. 2019;67(2):252–255. doi:10.4103/ijo.IJO_668_18
  • Venkatesh R, Jain K, Aseem A, Kumar S, Yadav NK. Intrachoroidal cavitation in myopic eyes. Int Ophthalmol. 2020;40(1):31–41. doi:10.1007/s10792-019-01146-0
  • Marmamula S, Khanna RC, Narsaiah S, Shekhar K, Rao GN. Prevalence of spectacles use in Andhra Pradesh, India: rapid assessment of visual impairment project. Clin Experiment Ophthalmol. 2014;42(3):227–234. doi:10.1111/ceo.12160
  • Malhotra S, Kalaivani M, Rath R, et al. Use of spectacles for distance vision: coverage, unmet needs and barriers in a rural area of North India. BMC Ophthalmol. 2019;19(1):252. doi:10.1186/s12886-019-1262-3
  • Gupta V, Saxena R, Vashist P, et al. Spectacle coverage among urban schoolchildren with refractive error provided subsidized spectacles in North India. Optom Vis Sci. 2019;96(4):301–308. doi:10.1097/OPX.0000000000001356
  • Morjaria P, Bastawrous A, Murthy GVS, Evans J, Gilbert C. Effectiveness of a novel mobile health education intervention (Peek) on spectacle wear among children in India: study protocol for a randomized controlled trial. Trials. 2017;18(1):168. doi:10.1186/s13063-017-1888-5
  • Morjaria P, Evans J, Gilbert C. Predictors of spectacle wear and reasons for nonwear in students randomized to ready-made or custom-made spectacles: results of secondary objectives from a randomized noninferiority trial. JAMA Ophthalmol. 2019;137(4):408–414. doi:10.1001/jamaophthalmol.2018.6906
  • Ravilla ST, Ramasamy D. Spectacle dispensing for myopia at primary eye care level. Community Eye Health. 2019;32(105):S3–4.
  • Singh K, Bhattacharyya M, Goel A, Arora R, Gotmare N, Aggarwal H. Orthokeratology in moderate myopia: a study of predictability and safety. J Ophthalmic Vis Res. 2020;15(2):210–217. doi:10.18502/jovr.v15i2.6739
  • Khan MA, Gupta A, Ahluwalia TS, Moulick PS, Gurunadh VS, Gupta S. A prospective interventional study of effect of accelerated orthokeratology on the corneal curvature and refraction among young adults with myopia. Med J Armed Forces India. 2016;72(2):125–130. doi:10.1016/j.mjafi.2016.02.016
  • Rajan R, Mahadevan R, Thomas AM, Bhattacharjee P. Contact lens trends over three decades in a hospital-based practice in India. Clin Exp Optom. 2018;101(2):182–187. doi:10.1111/cxo.12589
  • Chua W-H, Balakrishnan V, Chan Y-H, et al. Atropine for the treatment of childhood myopia. Ophthalmology. 2006;113(12):2285–2291. doi:10.1016/j.ophtha.2006.05.062
  • Chia A, Chua W-H, Cheung Y-B, et al. Atropine for the treatment of childhood myopia: safety and efficacy of 0.5%, 0.1%, and 0.01% doses (Atropine for the Treatment of Myopia 2). Ophthalmology. 2012;119(2):347–354. doi:10.1016/j.ophtha.2011.07.031
  • Kothari M, Rathod V. Efficacy of 1% atropine eye drops in retarding progressive axial myopia in Indian eyes. Indian J Ophthalmol. 2017;65(11):1178–1181. doi:10.4103/ijo.IJO_418_17
  • Saxena R, Dhiman R, Gupta V, et al. Atropine for the treatment of childhood myopia in India: multicentric randomized trial. Ophthalmology. 2021;128:1367–1369. doi:10.1016/j.ophtha.2021.01.026
  • Kothari M, Modak M, Khan H, Jahan S, Solanki M, Rathod V. Convergence excess consecutive esotropia associated with 0.01% atropine eye drops usage in patients operated for intermittent exotropia. Indian J Ophthalmol. 2020;68(4):653–656. doi:10.4103/ijo.IJO_1243_19
  • Kothari M, Jain R, Khadse N, Rathod V, Mutha S. Allergic reactions to atropine eye drops for retardation of progressive myopia in children. Indian J Ophthalmol. 2018;66(10):1446–1450. doi:10.4103/ijo.IJO_165_18
  • Tiwari NN, Sachdev GS, Ramamurthy S, Dandapani R. Comparative analysis of visual outcomes and ocular aberrations following wavefront optimized and topography-guided customized femtosecond laser in situ keratomileusis for myopia and myopic astigmatism: a contralateral eye study. Indian J Ophthalmol. 2018;66(11):1558–1561. doi:10.4103/ijo.IJO_507_18
  • Ganesh S, Brar S, Patel U. Comparison of ReLEx SMILE and PRK in terms of visual and refractive outcomes for the correction of low myopia. Int Ophthalmol. 2018;38(3):1147–1154. doi:10.1007/s10792-017-0575-6
  • Sanders DR, Doney K, Poco M; ICL in Treatment of Myopia Study Group. United States Food and Drug Administration clinical trial of the Implantable Collamer Lens (ICL) for moderate to high myopia: three-year follow-up. Ophthalmology. 2004;111(9):1683–1692.
  • Igarashi A, Shimizu K, Kamiya K. Eight-year follow-up of posterior chamber phakic intraocular lens implantation for moderate to high myopia. Am J Ophthalmol. 2014;157(3):532–539.e1. doi:10.1016/j.ajo.2013.11.006
  • Titiyal JS, Sharma N, Mannan R, Pruthi A, Vajpayee RB. Iris-fixated intraocular lens implantation to correct moderate to high myopia in Asian-Indian eyes: five-year results. J Cataract Refract Surg. 2012;38(8):1446–1452. doi:10.1016/j.jcrs.2012.03.029
  • Sachdev GS, Singh S, Ramamurthy S, Rajpal N, Dandapani R. Comparative analysis of clinical outcomes between two types of posterior chamber phakic intraocular lenses for correction of myopia and myopic astigmatism. Indian J Ophthalmol. 2019;67(7):1061–1065. doi:10.4103/ijo.IJO_1501_18
  • Sachdev G, Ramamurthy D. Long-term safety of posterior chamber implantable phakic contact lens for the correction of myopia. Clin Ophthalmol Auckl NZ. 2019;13:137–142. doi:10.2147/OPTH.S185304
  • Vasavada V, Srivastava S, Vasavada SA, Sudhalkar A, Vasavada AR, Vasavada VA. Safety and efficacy of a new phakic posterior chamber IOL for correction of myopia: 3 years of follow-up. J Refract Surg Thorofare NJ. 2018;34(12):817–823. doi:10.3928/1081597X-20181105-01
  • Bansal C. Comparative study on the effect of Saptamrita Lauha and Yoga therapy in myopia. Ayu. 2014;35(1):22–27. doi:10.4103/0974-8520.141904
  • Tiwari KK, Shaik R, Aparna B, Brundavanam R. A comparative study on the effects of vintage nonpharmacological techniques in reducing myopia (Bates eye exercise therapy vs. Trataka Yoga Kriya). Int J Yoga. 2018;11(1):72–76. doi:10.4103/ijoy.IJOY_59_16
  • Gopinathan G, Dhiman KS, Manjusha R. A clinical study to evaluate the efficacy of Trataka Yoga Kriya and eye exercises (non-pharmocological methods) in the management of Timira (Ammetropia and Presbyopia). Ayu. 2012;33(4):543–546. doi:10.4103/0974-8520.110534
  • Poonam RM, Manjusha R, Vaghela DB, Shukla VJ. A clinical study on the role of Akshi Tarpana with Jeevantyadi Ghrita in Timira (Myopia). Ayu. 2011;32(4):540–545. doi:10.4103/0974-8520.96130