|
|
|
|
References
|
|
| |
| 1. |
Gafurov SD, Katakhonov ShM, Holmonov MM, “Features of the use of lasers in medicine”, European Science Journal, 3:45 (2019), 92–95 (in Russian) |
| 2. |
Kotsur TV, Izmailov AS, “Comparative estimation of laser coagulation efficiency in macular and microphotocoagulation of high density in diabetic maculopathy treatment”, Ophthalmology Journal, 9:4 (2016), 43–45 (in Russian) |
| 3. |
Zamytsky EA, “Laser treatment of diabetic macular edema”, Postgraduate Bulletin of the Volga Region, 1–2 (2015), 74–80 (in Russian) |
| 4. |
I. Kozak, J. Luttrull, “Modern retinal laser therapy”, Saudi Journal of Ophthalmology, 29:2 (2014), 137–146 |
| 5. |
A.V. Doga, G.F. Kachalina, E.K. Pedanova, D.A. Buryakov, “Modern diagnostic and treatment aspects of diabetic macular edema”, Ophthalmology, Diabetes, 4 (2014), 51–59 |
| 6. |
D.R. Whiting, “IDF diadetes atlas: global estimates of the prevalence of diabetes for 2011 and 2030”, Diabetes Res. Clin. Pract, 94:3 (2011), 311-–321 |
| 7. |
Bratko GV, Chernykh VV, Sazonova OV, Kovaleva MV, Sidorova EG, Shishko AP, Mirochnik Lyu, “On the early diagnosis and frequency of occurrence of diabetic macular edema and group formation at risk of its development”, Siberian Scientific Medical Journal, 35:1 (2015), 33-–36 (in Russian) |
| 8. |
Vorobieva IV, Merkushenkova DA, “Diabetic retinopathy in type two diabetic patients: Epidemiology and modern view on the pathogenesis. Review”, Ophthalmology in Russia, 9:4 (2012), 18–21 (in Russian) |
| 9. |
Amirov AN, Abdulaeva EA, Minkhuzina EL. diabetic macular edema, “Epidemiology, pathogenesis, diagnosis, clinical features, treatment”, Kazan Medical Journal, 96:1 (2015), 70–74 (in Russian) |
| 10. |
Astakhov YuS, Shadrichev FE, Krasavina MI, Grigorieva NN, “Modern approaches to diabetic macular edema treatment”, Ophthalmology Journal, 2:4 (2009), 59–69 (in Russian) |
| 11. |
Iskhakova AG, “The results of the clinical economic analysis of the treatment of patients with diabetic retinopathy with macular edema”, Postgraduate Bulletin of the Volga Region, 1 (2014), 96–-98 (in Russian) |
| 12. |
Umanets NN, Rozanova ZA, Alzein M, “Intravitreal ranibizumab injection in the treatment of cystoid diabetic macular edema”, Oftalmol Zh, 2 (2013), 56–60 (in Russian) |
| 13. |
S.M. Cohen, J.H. Shen, W.E. Smiddy, “Laser energy and dye fluorescence transmission through slood in vitro”, American Journal of Ophthalmology, 119:4 (1995), 452–457 |
| 14. |
Zamytsky EA, Zolotarev AV, Karlova EV, Zamytsky PA, “Analysis of the coagulates intensity in laser treatment of diabetic macular edema in a Navilas robotic laser system”, Saratov Journal of Medical Scientific Research, 13:2 (2017), 375–378 (in Russian) |
| 15. |
Ilyasova NYu, “Estimating the geometric features of a 3D vascular structure”, Computer Optics, 38:3 (2014), 529–538 (in Russian) |
| 16. |
Khorin PA, Ilyasova NYu, Paringer RA, “Informative feature selection based on the Zernike polynomial coefficients for various pathologies of the human eye cornea”, Computer Optics, 42:1 (2018), 159–166 (in Russian) |
| 17. |
Shirokanev AS, Kirsh DV, Ilyasova NYu, Kupriyanov AV, “Investigation of algorithms for coagulate arrangement in fundus images”, J Computer Optics, 42:4 (2018), 712–721 (in Russian) |
| 18. |
Ilyasova NYu, “Diagnostic complex for the analysis of fundus vessels”, Biotechnosphere, 3:33 (2014), 20–24 (in Russian) |
| 19. |
Ilyasova NYu, “Methods for digital analysis of the human vascular system. Literature review”, Computer Optics, 37:4 (2013), 511–535 (in Russian) |
| 20. |
Ilyasova NYu, Ustinov AV, Kupriyanov AV, Ananin MA, Gavrilova NA, “Measurement of biomechanical characteristics of vessels for early diagnosis of vascular pathology of the fundus”, Computer Optics, 27 (2005), 165–169 (in Russian) |
| 21. |
Soifer VA, Ilyasova NA, Kupriyanov AV, Khramov AG, Ananyin MA, “Methods for computer diagnostics using eye's fundus images”, Technologies of Living Systems, 5:5–6 (2008), 61–71 (in Russian) |
| 22. |
Simchera VM, Methods of multivariate analysis of statistical data, “Financy i Statistika” Publisher, Moscow, 2008 (in Russian) |
| 23. |
V.E. Dementyiev, N.A. Andriyanov, K.K. Vasilyiev, “Use of images augmentation and implementation of doubly stochastic models for improving accuracy of recognition algorithms based on convolutional neural networks”, SYNCHROINFO (Systems of Signal Synchronization, Generating and Processing in Telecommunications), 2020, 1–4 |
| 24. |
K.K. Vasiliev, V.E. Dementyiev, N.A. Andriyanov, “Using probabilistic statistics to determine the parameters of doubly stochastic models based on autoregression with multiple roots”, Journal of Physics: Conference Series, 1368 (2019), 032019 |
| 25. |
Jung J.J., Gallego-Pinazo R., Lleo-Perez A., Huz J.I., Barbazetto I.A., “NAVILAS Laser System Focal Laser Treatment for Diabetic Macular Edema - One Year Results of a Case Series”, Open Ophthalmology Journal, 7 (2013), 48–53 |
| 26. |
Kovenya VM, Splitting algorithms for solving multidimensional problems of aerohydrodynamics, Publishing house of the SB RAS, Novosibirsk, 2014 (in Russian) |
| 27. |
Chernov VM, “Parallel machine arithmetic for recurrent number systems in non-quadratic fields”, Computer Optics, 44:2 (2020), 274–281 (in Russian) |
| 28. |
Yakobovsky MV, Introduction to parallel methods for solving problems: Textbook, Publishing house of Moscow University, Moscow, 2012 (in Russian) |
| 29. |
D.A. Fadeev, “High performance 2D simulations for the problem of optical breakdown”, Computer Optics, 40:5 (2016), 654–658 |
| 30. |
Polyakov MV, Khoperskov AV, “Mathematical modeling of the spatial distribution of the radiation field in biological tissue: determination of the brightness temperature for diagnostics”, Bulletin of the Volgograd State University, 36:5 (2016), 73–84 (in Russian) |
| 31. |
Polyakov MV, “Numerical modeling of the dynamics of temperature distribution in biological tissue”, Proceedings of the All-Russian School-Conference of Young Scientists, v. 1, 2015, 971–978 (in Russian) |
| 32. |
Pushkareva AE, Methods of mathematical modeling in biotissue optics. Textbook, “SPbGU ITMO” Publisher, Saint-Petersburg, 2008 (in Russian) |
| 33. |
Y. Kistenev, A. Buligin, E. Sandykova, E. Sim, D. Vrazhnov, “Modeling of IR laser radiation propagation in bio-tissues”, Proceedings of SPIE, 11208 (2019), 112081Q |
| 34. |
Samarsky AA, “Schemes of the increased order of accuracy for the multidimensional heat conduction equation”, J Comput Math Math Phys, 3:5 (1963), 1107–1146 |
| 35. |
Anufriev IE, Osipov PA, Mathematical methods for modeling physical processes. Finite Difference Method. With solutions of typical problems: a textbook, Saint-Petersburg State Polytechnic University Publisher, Saint-Peterburg, 2014 (in Russian) |
| 36. |
Fedorov AA, Bykov AN, “Comparison of two methods for parallelizing a run on hybrid computers with graphics accelerators”, Problems of Atomic Science and Technology. Series: Mathematical Modeling of Physical Processes, 4 (2016), 40–50 (in Russian) |
| 37. |
Shirokanev AS, Kirsh DV, Kupriyanov AV, “Development of a vector algorithm for parametric identification of three-dimensional crystal lattices based on estimating the distances between two-dimensional layers”, ITNT-2017 (Proc Conference), 2017, 1615–1619 (in Russian) |