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  1. 1
    Academic Journal

    Source: Ophthalmology in Russia; Том 18, № 4 (2021); 922-925 ; Офтальмология; Том 18, № 4 (2021); 922-925 ; 2500-0845 ; 1816-5095 ; 10.18008/1816-5095-2021-4

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    Relation: https://www.ophthalmojournal.com/opht/article/view/1699/915; Morgan I.G., Ohno-Matsui K., Saw S.M. Myopia. Lancet. 2012;379(9827):1739– 1748. DOI:10.1016/S0140-6736(12)60272-4; Holden B., Mariotti S., Kocur I. The impact of myopia and high myopia: report of the Joint WHO–Brien Holden Vision Institute, Global Scientific Meeting on Myopia. 2015. ISBN 978-92-4-151119-3; He M., Xiang F., Zeng Y. Effect of time spent outdoors at school on the development of myopia among children in China: a randomized clinical trial. JAMA. 2015;314(11):1142–1148. DOI:10.1001/jama.2015.10803; Lingham G., Mackey D.A., Lucas R., Yazar S. How does spending time outdoors protect against myopia? a review. Br J Ophthalmol. 2020;104(5):593–599. DOI:10.1136/bjophthalmol-2019-314675; Wen L., Cao Y., Cheng Q. Objectively measured near work, outdoor exposure and myopia in children. Br J Ophthalmol. 2020;104(11):1542–1547. DOI:10.1136/ bjophthalmol-2019-315258; Pellegrini M., Bernabei F., Scorcia V., Giannaccare G. May home confinement during the COVID-19 outbreak worsen the global burden of myopia? Graefes Arch Clin Exp Ophthalmol. 2020;258(9):2069–2070. DOI:10.1007/s00417-02004728-2; Navel V., Beze S., Dutheil F. COVID-19, sweat, tears… and myopia? Clin Exp Optom. 2020;103(4):555. DOI:10.1111/cxo.13086; Маркова Е.Ю., Пронько Н.А., Аминулла Л.В., Венедиктова Л.В., Безмельницына Л.Ю. К вопросу о школьной близорукости. DOI:10.18008/1816-5095-2018-1-87-91; Воронцова Т.Н. Результаты медикаментозной терапии привычноизбыточного напряжения аккомодации у детей и студентов. Российский офтальмологический журнал. 2016;9(2):18–21. DOI:10.21516/20720076-2016-9-2-18-21; Маркова Е.Ю., Матвеев А.В., Ульшина Л.В., Венедиктова Л.В. Комплексный подход к терапии аккомодационных нарушений у детей. Обзор. Офтальмология. 2012;9(4):27–30. DOI:10.18008/1816-5095-2012-4-27-30; Антипова Ю.Н., Каленич Л.А. Результаты использования 2,5 % раствора ирифрина при лечении близорукости у школьников. Восток-Запад. Точка зрения. 2014;1:206.; Тарутта Е.П., Иомдина Е.Н., Тарасова Н.А., Филиппова О.В. Влияние 2,5 % ирифрина на показатели аккомодации и динамику рефракции у пациентов с прогрессирующей миопией. Российский офтальмологический журнал. 2010;3(2):30–33.; Chen C.-A., Lin P.-Y., Wu P.-C. Treatment effect of posterior scleral reinforcement on controlling myopia progression: A systematic review and meta-analysis. PLoS ONE 2020;15(5):e0233564. DOI:10.1371/journal.pone.0233564; Miao Z. Modified Posterior Scleral Reinforcement as a Treatment for High Myopia in Children and Its Therapeutic Effect. BioMed Research International, 2019. Volume 2019 Article ID 5185780 DOI:10.1155/2019/5185780; Iomdina E.N., Daragan V.A., Ilyina E.E. Certain biomechanical properties and crosslinking of the sclera shell of the eye in progressive myopia. Proceedings of XIVth congress on biomechanics. Paris: International Society of Biomechanics. 1993. P. 616–617.; https://www.ophthalmojournal.com/opht/article/view/1699

  2. 2
    Academic Journal

    Source: Ophthalmology in Russia; Том 17, № 3s (2020); 648-652 ; Офтальмология; Том 17, № 3s (2020); 648-652 ; 2500-0845 ; 1816-5095 ; 10.18008/1816-5095-2020-3s

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    Relation: https://www.ophthalmojournal.com/opht/article/view/1333/756; Lundgren P., Hellgren G., Pivodic A., Savman K., Smith L.E.H., Hellstrom A. Erythropoietin serum levels, versus anaemia as risk factors for severe retinopathy of prematurity. Pediatr Res. 2019;86(2):276–282. DOI:10.1038/s41390‑018‑0186‑6; Lundgren P., Athikarisamy S.E., Patole S., Lam G.C., Smith L.E.H, Simmer K. Duration of anaemia during the first week of life is an independent risk factor for retinopathy of prematurity. Acta Paediatr. 2018;107(5):759–766. DOI:10.1111/apa.14187; Сахарова Е.С., Кешищян Е.С., Аламовская Г.А. Анемия недоношенных детей. Патогенез, диагностика, лечение и профилактика. Медицинский совет. 2015;6:11–17.; Watanabe D., Suzuma K., Matsui S. Erythropoietin as retinal angiogenic factor in proliferative diabetic retinopathy. N. Engl. J. Med. 2005;353:782–792. DOI:10.1056/NEJMoa041773; Chen Y., Connor K.M., Aderman C.M., Smith L.E. Erythropoietin deficiency decreases vascular stability in mice. J. Clin. Invest. 2008;118(2):526–533. DOI:10.1172/JCI33813; Aher S., Ohlsson A. Early versus late erythropoietin for preventing red blood cell transfusion in preterm infants. Cochrane Database Syst. Rev. 2006;19(3):CD004865. DOI:10.1002/14651858.CD004865.pub2; Figueras‑Alloy J., Alvarez‑Dominques E., Morales‑Ballus M., Salvia‑Roiges M.D., Moretones‑Sunol G. Early administration of Erythropoietin in the extreme premature, a risk factor for retinopathy of prematurity? Ann. Hediatr (Barc). 2010;73(6):327–333. DOI:10.1016/j.anpedi.2010.09.001; Chou H.H., Chung M.Y., Zhou X.G., Lin H.C. Early Erythropoietin Administration does not Increase the Risk of Retinopathy in Preterm Infants. Pediatr Neonatol. 2017;58(1):48–56. DOI:10.1016/j.pedneo.2016.03.006; Kandasamy Y., Kumar P., Hartley L. The effect of erythropoietin on the severity of retinopathy of prematurity. Eye (Lond). 2014;28(7):814–818. DOI:10.1038/eye.2014.95; The International classification of ROP — revised. Arch. Ophthalmol. 2005;123(7):991–999. DOI:10.1001/archopht.123.7.991; Федеральные клинические рекомендации по диагностике и лечению ранней анемии недоношенных детей. 2014 (дата обращения: 23.10.2019). URL: https://docplayer.ru/39020004‑Federalnye‑klinicheskie‑rekomendacii‑po‑diagnostike‑i‑lecheniyu‑ranney‑anemii‑nedonoshennyh‑detey.html; https://www.ophthalmojournal.com/opht/article/view/1333

  3. 3
    Academic Journal

    Source: Ophthalmology in Russia; Том 15, № 1 (2018); 5-11 ; Офтальмология; Том 15, № 1 (2018); 5-11 ; 2500-0845 ; 1816-5095 ; 10.18008/1816-5095-2018-1

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    Relation: https://www.ophthalmojournal.com/opht/article/view/536/440; Жангереев А.Т. Роль санитарно-просветительной работы в профилактике кариеса зубов и гигиены полости рта у беременных. Клиническая медицина Казахстана. 2012;2(25):96–100. [Zhangereev A.T. The role of health education in the prevention of denta caries and oral hygiene in pregnant women. Clinical Medicine of Kazakhstan=Klinicheskaya meditsina Kazakhstana. 2012;2(25):96–100. (in Russ.)]; Orban N., Maughan E., Bleach N. Pregnancy-induced rhinitis. Rhinology. 2013;51(2):111–9. DOI:10.4193/Rhino12.045; Caparroz F.A., Gregorio L.L., Bongiovanni G., Izu S.C., Kosugi E.M. Braz. J. Rhinitis and Pregnancy: literature review. Otorhinolaryngol. 2016;(1):105–11. DOI:10.1016/j.bjorl.2015.04.011; Gotovac M., Kastelan S., Lukenda A. Eye and pregnancy. Coll. Antropol. 2013;37(1): 189–93.; Omoti A.E., Waziri-Erameh J.M., Okeigbemen V.W. A review of the changes in the ophthalmic and visual system in pregnancy. Afr. J. Reprod. Health. 2008;12(3):185–96.; Weinreb R.N., Lu A., Key T. Maternal ocular adaptations during pregnancy. Obstetrical and Gynecological Survey. 1987;42:471–483.; Mackensen F., Paulus W.E., Max R., Ness T. Ocular Changes During Pregnancy. Dtsch. Arztebl. Int. 2014;111(33–34):567–76. DOI:10.3238/arztebl.2014.0567; Sharma S.R.W., Sharma T., Downey G. Refractive issues in pregnancy. Aust. N. Z. J. Obstet. Gynaecol. 2006;46:186–188.; Sharma S., Wuntakal R., Anand A., Sharma T.K., Downey G. Pregnancy and the eye. The Obstetrician & Gynaecologist. 2006;8:141–146.; Sunness J.S. The pregnant woman’s eye. Surv. Ophthalmol. 1988;32:219–38.; Ekpenyong B.N., Aruotu N.A., Uzodike E.B., Njoku C.G. Clinical Investigations and Management of Refractive Changes in Pregnancy: A Case Report. Afr. J. Reprod Health. 2015;19(4):107–17.; Chakraborti C., Samanta S.K., Faiduddin K., Choudhury K.P., Kumar S., Mondal R. Bilateral central serous chorio-retinopathy in pregnancy presenting with severe visual loss. Nepal J. Ophthalmol. 2014;6(2):220–3.; Maggio E., Polito A., Freno M.C., Pertile G. Multimodal imaging findings in a case of severe Central Serous Chorioretinopathy in an uncomplicated pregnancy. BMC Ophthalmol. 2015;15:183. DOI:10.1186%2Fs12886-015-0169-x; Краснощекова Е.Е., Бойко Э.В., Шадричев Ф.Е. Эволюция взглядов на выбор метода родоразрешения в зависимости от состояния глазного дна у беременных с периферической витреохориоретинальной дистрофией и регматогенной отслойкой сетчатки. Офтальмологические ведомости. 2011;4(2):62–67. [Krasnoshchekova E.E., Boyko E.V., Shadrichev F.E. Evolution of views on the choice of the method of delivery depending on the state of the fundus in pregnant women with peripheral vitreochorioretinal dystrophy and rheumatogenic retinal detachment. Ophthalmology journal=Oftal’mologicheskie vedomosti. 2011;4(2):62–67. (in Russ.)]; Коленко О.В., Сорокин Е.Л. Родоразрешение при миопии у беременных женщин, выбор тактики. 2016; (3): 64–68. [Kolenko O.V., Sorokin E.L. Delivery in pregnant women with myopia, the choice of tactics. Ophthalmosurgery=Oftal’m okhirurgiya. 2016;(3):64–68. (in Russ.)] DOI:10.25276/0235-4160-2016-3-64-68; Петраевскии? А.В., Гндоян А.В. Оценка реальных факторов риска отслои?ки сетчатки и определение показании? к профилактическои? лазер-коагуляции сетчатки у беременных. Офтальмология. 2006;3(3):48–54. [Petraevskii? A.V., Gndoyan A.V. Evaluation of real risk factors for retina detachment and determination of indications for prophylactic laser coagulation of the retina in pregnant women. Оphthalmology in Russia=Oftal’mologiya. 2006;3(3):48–4. (in Russ.)]; Neri A., Grausbord R., Krermer I., et al. The management of labor in high myopic patients. Eur. J. Obstet. Gynecol. Reprod. Biol. 1985;19(5):277–279.; Erdei A., Steiber Z., Molnar C., Berenyi E., Nagy E.V. Exophthalmos in a young woman with no graves’ disease — a case report of IgG4-related orbitopathy. BMC Ophthalmol. 2018;18(1):5. DOI:10.1186/s12886-018-0672-y; Garg P., Aggarwal P. Ocular changes in pregnancy. Nepal J. Ophthalmol. 2012;4(1):150–61.; Watson D.L., Sibai B.M., Shaver D.C., Dacus J.V., Anderson G.D. Late postpartum eclampsia: an update. South Med. J. 1983;76:1487–9.; Folk J.C., Weingeist T.A. Fundus changes in toxaemia. Ophthalmology. 1981;88:1173–4.; Синчихин С.П., Рамазанова Л.Ш., Мамиев О.Б. и др. Беременность и заболевания глаз (обзор литературы). Гинекология. 2016;1 (6):43–50. (in Russ.); Vila-Arteaga J, Suriano M.M., Martinez-Lajara A. Cilioretinal obstruction during pregnancy. Arch. Soc. Esp. Oftalmol. 2016;S0365–6691(16):30224-6. DOI:10.1016/j. oftal.2016.10.020; Jafarzadehpur E., Kermani R. M., Mohhamadi A.R., Nateghi M.R., Fazeli A.S., Kashi K.M. Ocular Manifestations in Infants Resulted from Assisted Reproductive Technology (ART). Journal of Family and Reproductive Health. 2013;7(4):181–6.; Parihar J.K., Kaushik J., Jain V.K., Naredi N., Raina S. The effect of assisted reproductive technology on ocular assessments. Clin. Exp. Optom. 2016;99(6):575–579. DOI:10.1111/cxo.12389; Adcock E.W., III Cyclopentolate (Cyclogyl) toxicity in pediatric patients. J. Pediatr. 1971; 79 (1):127–129. DOI:10.1016/S0022-3476(71)80074-4; Borromeo-McGrail V., Bordiuk J.M., Keitel H. Systemic hypertension following ocular administration of 10 percent phenylephrine in the neonate. Pediatrics. 1973;51:1032–1036.; Editorial: Babies’ blood pressure raised by eye drops. BMJ. 1974;1(5896):2–3. DOI:10.1136/bmj.1.5896.2-a; Vaajanen A., Vapaatalo H. A Single Drop in the Eye — Effects on the Whole Body? Open Ophthalmol J. 2017;11:305–314. DOI:10.2174/1874364101711010305; Salim S. Glaucoma in pregnancy. Curr. Opin. Ophthalmol. 2014;25(2):93–97. DOI:10.1097/ICU.0000000000000029; Coppens G., Stalmans I., Zeyen T. Glaucoma medication during pregnancy and nursing. Bull. Soc. 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