|
|
|
|
References
|
|
| |
| 1. |
Polyakov MV, Hoperskov AV, “Mathematical modeling of the spatial distribution of the radiation field in biological tissue: determination of brightness temperature for diagnosis”, Bulletin of Volgograd State University, 36:5 (2016), 73–84 (in Russian) |
| 2. |
Zamytskiy E, et al, “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) |
| 3. |
Ilyasova N, “Evaluation of geometric features of the spatial structure of blood vessels”, Computer Optics, 38:3 (2014), 529–538 (in Russian) |
| 4. |
Khorin P, Ilyasova N, Paringer R, “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) |
| 5. |
Astakhov YS, Shadrichev FE, Krasavina MI, Grigoryeva NN, “Modern approaches to the treatment of a diabetic macular edema”, Ophthalmologic Sheet, 4 (2009), 59–69 (in Russian) |
| 6. |
I. Kozak, J. Luttrull, “Modern retinal laser therapy”, Saudi Journal of Ophthalmology, 29:2 (2014), 137–146 |
| 7. |
Polyakov MV, “Numerical modeling of the dynamics of temperature distribution in biological tissue”, All-Russian School-Conference of Young Scientists, 2015, 971–978 |
| 8. |
Ilyasova NYu, “Diagnostic computer complex for vascular fundus image analysis”, Biotehnosfera, 3:33 (2014), 20–24 (in Russian) |
| 9. |
Ilyasova NYu, “Methods for digital analysis of human vascular system. Literature review”, Computer Optics, 37:4 (2013), 511-535 (in Russian) |
| 10. |
Ilyasova NYu, Kupriyanov AV, Gavrilova NA, Shilkin GA, Lanevskaya NI, “Biomechanical characteristics of blood vessels for digital image analysis fundus”, Biomehanika Glaza, 2002, 18–30 (in Russian) |
| 11. |
Soifer VA, Ilyasova NYu, Kupriyanov AV, Khramov AG, Ananin MA, “Methods for computer diagnostics using eye’s fundus images”, Technologies of the Living Systems, 5:5–6 (2008), 61–71 (in Russian) |
| 12. |
Simchera VM, Methods of multivariate statistical analysis, “Financy I Statistika” Publisher, Moscow, 2008 (in Russian) |
| 13. |
K. Fukunaga, Introduction to statistical pattern recognition, Academic Press, New York, London, 1972, 369 pp. |
| 14. |
Pushkaryova AE, Mathematical modeling methods in optics of biological tissue, “SPbGU ITMO” Publisher, Saint-Petersburg, 2008 (in Russian) |
| 15. |
G. Liu, Z. Zhi, R.K. Wang, “Digital focusing of OCT images based on scalar diffraction theory and information entropy”, Biomedical Optics Express, 3:11 (2012), 2774–2783 |
| 16. |
H. Jiang, Y. Quanyong, J. Xiaoyan, X. Guoxu, “Morphologic features of retina pigment epithelial around fluorescein leakage sites in acute central serous chorioretinopathy before and after laser coagulation”, Chinese Journal of Ocular Fundus Diseases, 32:3 (2016), 266–269 |
| 17. |
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 |
| 18. |
N. Moës, E. Béchet, M. Tourbier, “Imposing Dirichlet boundary conditions in the extended finite element method”, International Journal for Numerical Methods in Engineering, 67:12 (2006), 1641–1669 |
| 19. |
S. Wolfram, “The Mathematica book”, Assembly Automation, 19:1 (1999), 77–77 |
| 20. |
Samarskiy AA, “High accuracy schemes for the multidimensional heat equation”, Journal of Computational Mathematics and Mathematical Physics, 3:5 (1963), 812–840 (in Russian) |
| 21. |
Rudoi EM, Mathematical analysis. Numerical and functional series, “Novosibirsk State Pedagogical University” Publisher, Novosibirsk, 2010 (in Russian) |
| 22. |
Khvatsev AA, Partial differential equations, “Pskov State University” Publisher, Pskov, 2016 (in Russian) |