J. Hou, H. Shi, W. Gao, P. Lin, B. Li, Y. Shi, I. A. Matveeva, V. P. Zakharov, I. A. Bratchenko
|
|
|
Список литературы
|
|
|
1. |
International Diabetes Federation. IDF diabetes atlas, 10th ed; Brussels, Belgium, 2021 https://www.diabetesatlas.org |
2. |
Selph S, Dana T, Bougatsos C, Blazina I, Patel H, Chou R, Screening for abnormal glucose and Type 2 diabetes mellitus: A systematic review to update the 2008 U.S. Preventive Services Task Force recommendation [Internet], Report No 13-05190-EF-1, Agency for Healthcare Research and Quality (US), Rockville (MD), 2015, PMID 25973510 |
3. |
Cheung N, Mitchell P, Wong TY, “Diabetic retinopathy”, Lancet, 376:9735 (2010), 124–136 |
4. |
Wong TY, Sabanayagam C, “Strategies to tackle the global burden of diabetic retinopathy: From epidemiology to artificial intelligence”, Ophthalmologica, 243:1 (2020), 9–20 |
5. |
Lee VS, Kingsley RM, Lee ET, Lu M, Russell D, Asal NR, Bradford RH Jr, Wilkinson CP, “The diagnosis of diabetic retinopathy. Ophthalmoscopy versus fundus photography”, Ophthalmology, 100:10 (1993), 1504–1512 |
6. |
Enders C, Baeuerle F, Lang GE, Dreyhaupt J, Lang GK, Loidl M, Werner JU, “Comparison between findings in optical coherence tomography angiography and in fluorescein angiography in patients with diabetic retinopathy”, Ophthalmologica, 243:1 (2020), 21–26 |
7. |
de Barros Garcia JMB, Isaac DLC, Avila M, “Diabetic retinopathy and OCT angiography: clinical findings and future perspectives”, Int J Retina Vitreous, 3 (2017), 14 |
8. |
Corcóstegui B, Durán S, González-Albarrán MO, et al., “Update on diagnosis and treatment of diabetic retinopathy: A consensus guideline of the working group of ocular health (Spanish Society of Diabetes and Spanish Vitreous and Retina Society)”, J Ophthalmol, 2017 (2017), 8234186 |
9. |
Ishibazawa A, Nagaoka T, Takahashi A, Omae T, Tani T, Sogawa K, Yokota H, Yoshida A, “Optical coherence tomography angiography in diabetic retinopathy: A prospective pilot study”, Am J Ophthalmol, 160:1 (2015), 35-44.e1 |
10. |
Fukuda Y, Nakao S, Kaizu Y, Arima M, Shimokawa S, Wada I, Yamaguchi M, Takeda A, Sonoda KH, “Morphology and fluorescein leakage in diabetic retinal microaneurysms: a study using multiple en face OCT angiography image averaging”, Graefes Arch Clin Exp Ophthalmol, 260:11 (2022), 3517–3523 |
11. |
Thompson IA, Durrani AK, Patel S, “Optical coherence tomography angiography characteristics in diabetic patients without clinical diabetic retinopathy”, Eye (Lond), 33:4 (2019), 648–652 |
12. |
Gildea D, “The diagnostic value of optical coherence tomography angiography in diabetic retinopathy: a systematic review”, Int Ophthalmol, 39:10 (2019), 2413–2433 |
13. |
Takase N, Nozaki M, Kato A, Ozeki H, Yoshida M, Ogura Y, “Enlargement of foveal avascular zone in diabetic eyes evaluated by en face optical coherence tomography angiography”, Retina, 35:11 (2015), 2377–2383 |
14. |
Al-Sheikh M, Akil H, Pfau M, Sadda SR, “Swept-source OCT angiography imaging of the foveal avascular zone and macular capillary network density in diabetic retinopathy”, Invest Ophthalmol Vis Sci, 57:8 (2016), 3907–3913 |
15. |
Ragkousis A, Kozobolis V, Kabanarou S, Bontzos G, Mangouritsas G, Heliopoulos I, Chatziralli I, “Vessel density around foveal avascular zone as a potential imaging biomarker for detecting preclinical diabetic retinopathy: An optical coherence tomography angiography study”, Semin Ophthalmol, 35:5–6 (2020), 316–323 |
16. |
Xie N, Tan Y, Liu S, Xie Y, Shuai S, Wang W, Huang W, “Macular vessel density in diabetes and diabetic retinopathy with swept-source optical coherence tomography angiography”, Graefes Arch Clin Exp Ophthalmol, 258:12 (2020), 2671–2679 |
17. |
Lavia C, Couturier A, Erginay A, Dupas B, Tadayoni R, Gaudric A, “Reduced vessel density in the superficial and deep plexuses in diabetic retinopathy is associated with structural changes in corresponding retinal layers”, PLoS One, 14:7 (2019), e0219164 |
18. |
Zahid S, Dolz-Marco R, Freund KB, Balaratnasingam C, Dansingani K, Gilani F, Mehta N, Young E, Klifto MR, Chae B, Yannuzzi LA, Young JA, “Fractal dimensional analysis of optical coherence tomography angiography in eyes with diabetic retinopathy”, Invest Ophthalmol Vis Sci, 57:11 (2016), 4940–4947 |
19. |
Chen Q, Ma Q, Wu C, Tan F, Chen F, Wu Q, Zhou R, Zhuang X, Lu F, Qu J, Shen M, “Macular vascular fractal dimension in the deep capillary layer as an early indicator of microvascular loss for retinopathy in type 2 diabetic patients”, Invest Ophthalmol Vis Sci, 58:9 (2017), 3785–3794 |
20. |
Sun Z, Tang F, Wong R, Lok J, Szeto SKH, Chan JCK, Chan CKM, Tham CC, Ng DS, Cheung CY, “OCT angiography metrics predict progression of diabetic retinopathy and development of diabetic macular edema: a prospective study”, Ophthalmology, 126:12 (2019), 1675–1684 |
21. |
Gao W, Tátrai E, Ölvedy V, Varga B, Laurik L, Somogyi A, Somfai G, DeBuc D, “Investigation of changes in thickness and reflectivity from layered retinal structures of healthy and diabetic eyes with optical coherence tomography”, J Biomed Sci Eng, 4:10 (2011), 657–665 |
22. |
Wilkinson CP, Ferris FL 3rd, Klein RE, et al., “Proposed international clinical diabetic retinopathy and diabetic macular edema disease severity scales”, Ophthalmology, 110:9 (2003), 1677–1682 |
23. |
Rocholz R, Teussink MM, Dolz-Marco R, et al., SPECTRALIS optical coherence tomography angiography (OCTA): principles and clinical applications, Heidelberg Engineering Academy, Heidelberg, Germany, 2018 \href{https://www.heidelbergengineering.com/media/e-learning/Totara/Dateien/pdf-tutorials/210111-001_SPECTRALIS |
24. |
Gao W, DeBuc DC, Zakharov VP, et al., “Two-dimensional fractal analysis of retinal tissue of healthy and diabetic eyes with optical coherence tomography”, J Biomed Photonics Eng, 2:4 (2016), 040302 |
25. |
Mastropasqua R, Toto L, Mastropasqua A, Aloia R, De Nicola C, Mattei PA, Di Marzio G, Di Nicola M, Di Antonio L, “Foveal avascular zone area and parafoveal vessel density measurements in different stages of diabetic retinopathy by optical coherence tomography angiography”, Int J Ophthalmol, 10:10 (2017), 1545–1551 |
26. |
Hajian-Tilaki K, “Receiver operating characteristic (ROC) curve analysis for medical diagnostic test evaluation”, Caspian J Intern Med, 4:2 (2013), 627–635 |
27. |
Unal I, “Defining an optimal cut-point value in ROC analysis: An alternative approach”, Comput Math Methods Med, 2017 (2017), 3762651 |
28. |
Coscas G, Lupidi M, Coscas F, “Heidelberg spectralis optical coherence tomography angiography: Technical aspects”, Dev Ophthalmol, 56 (2016), 1–5 |
29. |
Agemy SA, Scripsema NK, Shah CM, Chui T, Garcia PM, Lee JG, Gentile RC, Hsiao YS, Zhou Q, Ko T, Rosen RB, “Retinal vascular perfusion density mapping using optical coherence tomography angiography in normals and diabetic retinopathy patients”, Retina, 35:11 (2015), 2353–2363 |
30. |
Park JJ, Soetikno BT, Fawzi AA, “Characterization of the middle capillary plexus using optical coherence tomography angiography in healthy and diabetic eyes”, Retina, 36:11 (2016), 2039–2050 |
31. |
Tan PE, Yu PK, Balaratnasingam C, Cringle SJ, Morgan WH, McAllister IL, Yu DY, “Quantitative confocal imaging of the retinal microvasculature in the human retina”, Invest Ophthalmol Vis Sci, 53:9 (2012), 5728–5736 |
32. |
Provis JM, “Development of the primate retinal vasculature”, Prog Retin Eye Res, 20:6 (2001), 799–821 |