يعرض 1 - 20 نتائج من 1,924 نتيجة بحث عن '"локальный"', وقت الاستعلام: 0.63s تنقيح النتائج
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    Relation: The Search for new pathogenesis of Cardiorenal Syndrome: the connection of local Schumann resonance on the occurrence of episodes of kidney disease and Myocardial Infarction / G. Nevoit, I. A. Bumblyte, G. Jaruševičius [et al.] // Journal Kidneys. – 2024. – № 13 (1). – P. 26–38.; UDC 616.127:616.61-092-06-071; http://repository.pdmu.edu.ua/handle/123456789/23330; https://doi.org/10.22141/2307-1257.13.1.2024.438

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    المصدر: Socio-Economic Processes of Modern Society; 141-145 ; Социально-экономические процессы современного общества; 141-145

    وصف الملف: text/html

    Relation: info:eu-repo/semantics/altIdentifier/isbn/978-5-907830-42-4; https://phsreda.com/e-articles/10613/Action10613-112210.pdf; Емельянов С.М. Теория и практика связей с общественностью: учебное пособие для вузов / С.М. Емельянов. – 2-е изд., испр. и доп. – М.: Юрайт, 2019. – 197 с. EDN CHGATT; Кашкин В.Б. Основы теории коммуникации / В.Б. Кашкин. – М.: АСТ, 2018 – 318 с.; Экономическое развитие стран СНГ [Электронный ресурс]. – Режим доступа: https://visasam.ru/emigration/economy/ekonomika-stran-sng.html (дата обращения: 23.04.2024).; Беларусь, Казахстан, Узбекистан: как продвигаться на трех ключевых digital-рынках СНГ [Электронный ресурс]. – Режим доступа: https://rb.ru/opinion/prodvigat-rynok-sng/ (дата обращения: 23.04.2024).; Как продвигаться в СНГ: особенности локального пиара [Электронный ресурс]. – Режим доступа: https://www.seonews.ru/analytics/kak-prodvigatsya-v-sng-osobennosti-lokalnogo-piara/ (дата обращения: 23.04.2024).; Усов Н.В. Исследование потребительских предпочтений на российском рынке товаров для сна / Н. В. Усов, Н.В. Кострома, А.А. Фирюбин [и др.] // Актуальные вопросы права, экономики и управления: VI Всероссийская научно-практическая конференция студентов, аспирантов и молодых ученых с международным участием (Ульяновск, 26 апр. 2024 г.) / редкол.: Т.А. Макарова [и др.] – Чебоксары: Среда, 2024. – С. 72–75. – ISBN 978-5-907830-29-5. – DOI 10.31483/r-111457. EDN QVESLU; https://phsreda.com/files/Books/10613/Cover-10613.jpg?req=112210; https://phsreda.com/article/112210/discussion_platform; https://doi.org/10.31483/r-112210

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    المصدر: Medicine in Kuzbass; Том 23, № 2 (2024): июнь; 51-55 ; Медицина в Кузбассе; Том 23, № 2 (2024): июнь; 51-55 ; 2588-0411 ; 1819-0901

    وصف الملف: text/html; application/pdf

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    المساهمون: 1

    المصدر: Traumatology and Orthopedics of Russia; Vol 30, No 2 (2024); 16-28 ; Травматология и ортопедия России; Vol 30, No 2 (2024); 16-28 ; 2542-0933 ; 2311-2905 ; 10.17816/2311-2905-2024-30-2

    وصف الملف: application/pdf

    Relation: https://journal.rniito.org/jour/article/view/17431/pdf; https://journal.rniito.org/jour/article/view/17431/pdf_1; https://journal.rniito.org/jour/article/view/17431/pdf_2; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150878; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150879; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150880; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150881; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150882; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150883; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150884; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150885; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150886; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150887; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150888; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150889; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150890; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150891; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150892; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150981; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150983; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150985; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150987; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150988; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150990; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150992; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150993; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150994; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150996; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150997; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150998; https://journal.rniito.org/jour/article/downloadSuppFile/17431/150999; https://journal.rniito.org/jour/article/downloadSuppFile/17431/151000; https://journal.rniito.org/jour/article/downloadSuppFile/17431/151001; https://journal.rniito.org/jour/article/view/17431

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    المصدر: Russian Psychological Journal; Vol. 21 No. 2 (2024); 169-183 ; Российский психологический журнал; Том 21 № 2 (2024); 169-183 ; 2411-5789 ; 1812-1853 ; 10.21702/262hq774

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    المصدر: Russian Psychological Journal; Vol. 21 No. 2 (2024); 60-80 ; Российский психологический журнал; Том 21 № 2 (2024); 60-80 ; 2411-5789 ; 1812-1853 ; 10.21702/262hq774

    وصف الملف: application/pdf

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    المصدر: Ophthalmology in Russia; Том 21, № 1 (2024); 5-15 ; Офтальмология; Том 21, № 1 (2024); 5-15 ; 2500-0845 ; 1816-5095 ; 10.18008/1816-5095-2024-1

    وصف الملف: application/pdf

    Relation: https://www.ophthalmojournal.com/opht/article/view/2287/1182; Chan C. Corneal Cross-Linking for Keratoconus: Current Knowledge and Practice and Future Trends. Asia Pac J Ophthalmol (Phila). 2020 Dec;9(6):557–564. doi:10.1097/APO.0000000000000335.; Pagano L, Gadhvi KA, Borroni D, Iselin KC, Vinciguerra R, Tzamalis A, Kaye SB, Romano V. Bilateral Keratoconus Progression: Immediate Versus Delayed Sequential Bilateral Corneal Cross-linking. J Refract Surg. 2020 Aug 1;36(8):552–556. doi:10.3928/1081597X-20200629-01.; Wollensak G. Corneal collagen cross-linking: new horizons. Expert Rev Ophthalmol. 2010; 5:201–215. DOI:10.1586/eop.10.7; Spoerl E, Huhle M, Seiler T. Induction of cross-links in corneal tissue. Exp Eye Res. 1998 Jan;66(1):97–103. doi:10.1006/exer.1997.0410.; Santhiago MR, Randleman JB. The biology of corneal cross-linking derived from ultraviolet light and riboflavin. Exp Eye Res. 2021 Jan;202:108355. doi:10.1016/j.exer.2020.108355.; Ziaei M, Barsam A, Shamie N, Vroman D, Kim T, Donnenfeld ED, Holland EJ, Kanellopoulos J, Mah FS, Randleman JB, Daya S, Güell J; ASCRS Cornea Clinical Committee. Reshaping procedures for the surgical management of corneal ectasia. J Cataract Refract Surg. 2015 Apr;41(4):842–872. doi:10.1016/j.jcrs.2015.03.010.; Ziaei M, Yoon JJ, Vellara HR, Gokul A, Meyer JJ, Thakur SS, McGhee CN, Patel DV. Prospective one year study of corneal biomechanical changes following high intensity, accelerated cornea crosslinking in patients with keratoconus using a non-contact tonometer. Eur J Ophthalmol. 2021 Dec 29:11206721211069740. doi:10.1177/11206721211069740.; Jordan C, Patel DV, Abeysekera N, McGhee CN. In vivo confocal microscopy analyses of corneal microstructural changes in a prospective study of collagen crosslinking in keratoconus. Ophthalmology. 2014 Feb;121(2):469–474. doi:10.1016/j.ophtha.2013.09.014.; Wollensak G, Spoerl E, Seiler T. Riboflavin/ultraviolet-a-induced collagen crosslinking for the treatment of keratoconus. Am J Ophthalmol. 2003 May;135(5):620–627. doi:10.1016/s0002-9394(02)02220-1.; Lang SJ, Messmer EM, Geerling G, Mackert MJ, Brunner T, Dollak S, Kutchoukov B, Böhringer D, Reinhard T, Maier P. Prospective, randomized, double-blind trial to investigate the efficacy and safety of corneal cross-linking to halt the progression of keratoconus. BMC Ophthalmol. 2015 Jul 21;15:78. doi:10.1186/s12886-015-0070-7.; Hersh PS, Stulting RD, Muller D, Durrie DS, Rajpal RK; United States Crosslinking Study Group. United States Multicenter Clinical Trial of Corneal Collagen Crosslinking for Keratoconus Treatment. Ophthalmology. 2017 Sep;124(9):1259– 1270. doi:10.1016/j.ophtha.2017.03.052.; Meyer JJ, Jordan CA, Patel DV, Gokul A, Dean SJ, Ahmed S, Subbiah S, McGhee CNJ. Five-year results of a prospective, randomised, contralateral eye trial of corneal crosslinking for keratoconus. Clin Exp Ophthalmol. 2021 Aug;49(6):542–549. doi:10.1111/ceo.13959.; Wittig-Silva C, Chan E, Islam FM, Wu T, Whiting M, Snibson GR. A randomized, controlled trial of corneal collagen cross-linking in progressive keratoconus: three-year results. Ophthalmology. 2014 Apr;121(4):812–821. doi:10.1016/j.ophtha.2013.10.028.; O’Brart DP, Chan E, Samaras K, Patel P, Shah SP. A randomised, prospective study to investigate the efficacy of riboflavin/ultraviolet A (370 nm) corneal collagen cross-linkage to halt the progression of keratoconus. Br J Ophthalmol. 2011 Nov;95(11):1519–1524. doi:10.1136/bjo.2010.196493.; Seyedian MA, Aliakbari S, Miraftab M, Hashemi H, Asgari S, Khabazkhoob M. Corneal Collagen Cross-Linking in the Treatment of Progressive Keratoconus: A Randomized Controlled Contralateral Eye Study. Middle East Afr J Ophthalmol. 2015 Jul-Sep;22(3):340–345. doi:10.4103/0974-9233.159755.; Kobashi H, Rong SS. Corneal Collagen Cross-Linking for Keratoconus: Systematic Review. Biomed Res Int. 2017;2017:8145651. doi:10.1155/2017/8145651.; Li J, Ji P, Lin X. Efficacy of corneal collagen cross-linking for treatment of keratoconus: a meta-analysis of randomized controlled trials. PLoS One. 2015 May 18;10(5):e0127079. doi:10.1371/journal.pone.0127079.; Kobashi H, Tsubota K. Accelerated Versus Standard Corneal Cross-Linking for Progressive Keratoconus: A Meta-Analysis of Randomized Controlled Trials. Cornea. 2020 Feb;39(2):172–180. doi:10.1097/ICO.0000000000002092.; Iqbal M, Elmassry A, Saad H, Am Gad A, Ibrahim O, Hamed N, Saeed A, S Khalil A, Tawfik M, Said A, Amer I, Nooreldin A, Said O, Reffat M, Anwar S, Badawi A. Standard cross-linking protocol versus accelerated and transepithelial cross-linking protocols for treatment of paediatric keratoconus: a 2-year comparative study. Acta Ophthalmol. 2020 May;98(3):e352–e362. doi:10.1111/aos.14275.; Seiler TG, Komninou MA, Nambiar MH, Schuerch K, Frueh BE, Büchler P. Oxygen Kinetics During Corneal Cross-linking With and Without Supplementary Oxygen. Am J Ophthalmol. 2021 Mar;223:368–376. doi:10.1016/j.ajo.2020.11.001.; Ziaei M, Gokul A, Vellara H, Meyer J, Patel D, McGhee CNJ. Prospective twoyear study of clinical outcomes following epithelium-off pulsed versus continuous accelerated corneal crosslinking for keratoconus. Clin Exp Ophthalmol. 2019 Nov;47(8):980–986. doi:10.1111/ceo.13567.; Kang MJ, Hwang J, Chung SH. Comparison of pulsed and continuous accelerated corneal crosslinking for keratoconus: 1-year results at a single center. J Cataract Refract Surg. 2021 May 1;47(5):641–648. doi:10.1097/j.jcrs.0000000000000488.; Khoo P, Cabrera-Aguas M, Watson SL. Microbial Keratitis After Corneal Collagen Cross-Linking for Corneal Ectasia. Asia Pac J Ophthalmol (Phila). 2021 Jan 29;10(4):355–359. doi:10.1097/APO.0000000000000379.; Borroni D, Bonzano C, Hristova R, Sánchez González JM, Pennisi F, Rocha-Bogas A, Rocha de Lossada C. A New Surgical Technique to Deliver Riboflavin Beneath Corneal Epithelium: The Corneal Cross-Linking Epi-Pocket. Asia Pac J Ophthalmol (Phila). 2021 Sep 14;10(5):495–498. doi:10.1097/APO.0000000000000420.; Ng SM, Hawkins BS, Kuo IC. Transepithelial Versus Epithelium-Off Corneal Crosslinking for Progressive Keratoconus: Findings From a Cochrane Systematic Review. Am J Ophthalmol. 2021 Sep;229:274–287. doi:10.1016/j.ajo.2021.05.009.; Nath S, Shen C, Koziarz A, Banfield L, Nowrouzi-Kia B, Fava MA, Hodge WG. Transepithelial versus Epithelium-off Corneal Collagen Cross-linking for Corneal Ectasia: A Systematic Review and Meta-analysis. Ophthalmology. 2021 Aug;128(8):1150–1160. doi:10.1016/j.ophtha.2020.12.023.; Vinciguerra P, Montericcio A, Catania F, Fossati G, Raimondi R, Legrottaglie EF, Vinciguerra R. New perspectives in keratoconus treatment: an update on iontophoresis-assisted corneal collagen crosslinking. Int Ophthalmol. 2021 May;41(5):1909– 1916. doi:10.1007/s10792-021-01713-4.; Althomali TA, Al-Qurashi IM, Al-Thagafi SM, Mohammed A, Almalki M. Prevalence of keratoconus among patients seeking laser vision correction in Taif area of Saudi Arabia. Saudi J Ophthalmol. 2018 Apr-Jun;32(2):114–118. doi:10.1016/j.sjopt.2017.11.003.; Mazzotta C, Bagaglia SA, Sgheri A, Di Maggio A, Fruschelli M, Romani A, Vinciguerra R, Vinciguerra P, Tosi GM. Iontophoresis Corneal Cross-linking With Enhanced Fluence and Pulsed UV-A Light: 3-Year Clinical Results. J Refract Surg. 2020 May 1;36(5):286–292. doi:10.3928/1081597X-20200406-02.; Srivatsa S, Jacob S, Agarwal A. Contact lens assisted corneal cross linking in thin ectatic corneas — A review. Indian J Ophthalmol. 2020 Dec;68(12):2773–2778. doi:10.4103/ijo.IJO_2138_20.; Malhotra C, Gupta B, Jain AK, Dhar S, Gupta A, Balyan M. Comparison of contact lens-assisted and transepithelial corneal crosslinking with standard epithelium-off crosslinking for progressive keratoconus: 24-month clinical results. J Cataract Refract Surg. 2022 Feb 1;48(2):199–207. doi:10.1097/j.jcrs.0000000000000732.; Cagini C, Riccitelli F, Messina M, Piccinelli F, Torroni G, Said D, Al Maazmi A, Dua HS. Epi-off-lenticule-on corneal collagen cross-linking in thin keratoconic corneas. Int Ophthalmol. 2020 Dec;40(12):3403–3412. doi:10.1007/s10792-020-01526-x.; Hafezi F, Richoz O, Torres-Netto EA, Hillen M, Hafezi NL. Corneal Cross-linking at the Slit Lamp. J Refract Surg. 2021 Feb 1;37(2):78–82. doi:10.3928/1081597X20201123-02.; Salmon B, Richoz O, Tabibian D, Kling S, Wuarin R, Hafezi F. CXL at the Slit Lamp: No Clinically Relevant Changes in Corneal Riboflavin Distribution During Upright UV Irradiation. J Refract Surg. 2017 Apr 1;33(4):281. doi:10.3928/1081597X20161219-03.; Davis SA, Bovelle R, Han G, Kwagyan J. Corneal collagen cross-linking for bacterial infectious keratitis. Cochrane Database Syst Rev. 2020 Jun 17;6(6):CD013001. doi:10.1002/14651858.CD013001.pub2.; Kanellopoulos AJ. Comparison of sequential vs same-day simultaneous collagen cross-linking and topography-guided PRK for treatment of keratoconus. J Refract Surg. 2009 Sep;25(9):S812–818. doi:10.3928/1081597X-20090813-10.; Kymionis GD, Grentzelos MA, Kounis GA, Diakonis VF, Limnopoulou AN, Panagopoulou SI. Combined transepithelial phototherapeutic keratectomy and corneal collagen cross-linking for progressive keratoconus. Ophthalmology. 2012 Sep;119(9):1777–1784. doi:10.1016/j.ophtha.2012.03.038.; Grentzelos MA, Liakopoulos DA, Siganos CS, Tsilimbaris MK, Pallikaris IG, Kymionis GD. Long-term Comparison of Combined t-PTK and CXL (Cretan Protocol) Versus CXL With Mechanical Epithelial Debridement for Keratoconus. J Refract Surg. 2019 Oct 1;35(10):650–655. doi:10.3928/1081597X-20190917-01.; Grentzelos MA, Kounis GA, Diakonis VF, Siganos CS, Tsilimbaris MK, Pallikaris IG, Kymionis GD. Combined transepithelial phototherapeutic keratectomy and conventional photorefractive keratectomy followed simultaneously by corneal crosslinking for keratoconus: Cretan protocol plus. J Cataract Refract Surg. 2017 Oct;43(10):1257–1262. doi:10.1016/j.jcrs.2017.06.047.; Kaiserman I, Mimouni M, Rabina G. Epithelial Photorefractive Keratectomy and Corneal Cross-linking for Keratoconus: The Tel-Aviv Protocol. J Refract Surg. 2019 Jun 1;35(6):377–382. doi:10.3928/1081597X-20190514-01.; Raiskup F, Theuring A, Pillunat LE, Spoerl E. Corneal collagen crosslinking with riboflavin and ultraviolet-A light in progressive keratoconus: ten-year results. J Cataract Refract Surg. 2015 Jan;41(1):41–46. doi:10.1016/j.jcrs.2014.09.033.; Rechichi M, Mazzotta C, Oliverio GW, Romano V, Borroni D, Ferrise M, Bagaglia S, Jacob S, Meduri A. Selective transepithelial ablation with simultaneous accelerated corneal crosslinking for corneal regularization of keratoconus: STARE-X protocol. J Cataract Refract Surg. 2021 Nov 1;47(11):1403–1410. doi:10.1097/j.jcrs.0000000000000640.; Пенкина АВ, Нероев ВВ, Ханджян АТ и др. Фемтолазерная имплантация интрастромальных роговичных сегментов в сочетании с кросслинкингом роговичного коллагена в лечении кератоконуса. Практическая медицина. 2012;4(59):111–114.; Сорокин ЕЛ, Дутчин ИВ, Шишкин СА. Анализ безопасности и клинической эффективности методики ФРК при коррекции миопии у пациентов с субклиническим кератоконусом. Соврем. технологии. в офтальмологии. 2015;2. https://eyepress.ru/literatura.aspx?18025; Паштаев НП, Зотов ВВ. Сравнительный анализ отдаленных результатов стандартного и локального фемпокросслинкинга у больных с прогрессирующим кератоконусом. Вестник ОГУ. 2014;12(173):248–251 (In Russ.).; Kankariya VP, Dube AB, Grentzelos MA, Kontadakis GA, Diakonis VF, Petrelli M, Kymionis GD. Corneal cross-linking (CXL) combined with refractive surgery for the comprehensive management of keratoconus: CXL plus. Indian J Ophthalmol. 2020 Dec;68(12):2757–2772. doi:10.4103/ijo.IJO_1841_20.; Sánchez-González JM, Rocha-de-Lossada C, Borroni D, De-Hita-Cantalejo C, Alonso-Aliste F. Prophylactic corneal crosslinking in myopic small-incision lenticule extraction — Long-term visual and refractive outcomes. Indian J Ophthalmol. 2022 Jan;70(1):73–78. doi:10.4103/ijo.IJO_810_21.; Mukherjee A, Hayes S, Aslanides I, Lanchares E, Meek KM. Donor cross-linking for keratoplasty: a laboratory evaluation. Graefes Arch Clin Exp Ophthalmol. 2015 Dec;253(12):2223–2228. doi:10.1007/s00417-015-3160-6.; Huang T, Ye R, Ouyang C, Hou C, Hu Y, Wu Q. Use of Donors Predisposed by Corneal Collagen Cross-linking in Penetrating Keratoplasty for Treating Patients With Keratoconus. Am J Ophthalmol. 2017 Dec;184:115–120. doi:10.1016/j.ajo.2017.10.003.; Оганесян ОГ, Гетадарян ВР, Макаров ПВ, Грдиканян АА. Трансплантация боуменового слоя при прогрессирующем кератоконусе. Российский офтальмологический журнал. 2019;12(4):43–50.; Анисимов СИ, Анисимова СЮ, Мистрюков АС. Персонализированный (локальный) УФ-кросслинкинг в лечении кератоконуса и эктазий роговицы. Офтальмология. 2017;14(3):195–199. doi:10.18008/1816-5095-2017-3-195-199.; Храйстин Х, Осипян ГА, Анисимов СИ, Дзамихова АК, Журиех М. Результаты ускоренного локального кросслинкинга при кератоконусе. Офтальмология. 2023;20(3):437–443. doi:10.18008/1816-5095-2023-3437-443.; Hafezi F, Kling S, Gilardoni F, Hafezi N, Hillen M, Abrishamchi R, Gomes JAP, Mazzotta C, Randleman JB, Torres-Netto EA. Individualized Corneal Cross-linking With Riboflavin and UV-A in Ultrathin Corneas: The Sub400 Protocol. Am J Ophthalmol. 2021 Apr;224:133–142. doi:10.1016/j.ajo.2020.12.011.; Aydın E, Aslan MG. The efficiency and safety of oxygen-supplemented accelerated transepithelial corneal cross-linking. Int Ophthalmol. 2021 Sep;41(9):2993–3005. doi:10.1007/s10792-021-01859-1.; Kobashi H, Torii H, Toda I, Kondo S, Itoi M, Tsubota K. Clinical outcomes of KeraVio using violet light: emitting glasses and riboflavin drops for corneal ectasia: a pilot study. Br J Ophthalmol. 2021 Oct;105(10):1376–1382. doi:10.1136/bjophthalmol-2020-316974.; Dackowski EK, Logroño JB, Rivera C, Taylor N, Lopath PD, Chuck RS. Transepithelial Corneal Crosslinking Using a Novel Ultraviolet Light-Emitting Contact Lens Device: A Pilot Study. Transl Vis Sci Technol. 2021 Apr 29;10(5):5. doi:10.1167/tvst.10.5.5.; Chen X, Zhao J, Iselin KC, Borroni D, Romano D, Gokul A, McGhee CNJ, Zhao Y, Sedaghat MR, Momeni-Moghaddam H, Ziaei M, Kaye S, Romano V, Zheng Y. Keratoconus detection of changes using deep learning of colour-coded maps. BMJ Open Ophthalmol. 2021 Jul 13;6(1):e000824. doi:10.1136/bmjophth-2021-000824; Shetty R, Kundu G, Narasimhan R, Khamar P, Gupta K, Singh N, Nuijts RMMA, Sinha Roy A. Artificial Intelligence Efficiently Identifies Regional Differences in the Progression of Tomographic Parameters of Keratoconic Corneas. J Refract Surg. 2021 Apr;37(4):240–248. doi:10.3928/1081597X-20210120-01.; https://www.ophthalmojournal.com/opht/article/view/2287

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