Can optical coherence tomography replace fluorescein angiography in detection of ischemic diabetic maculopathy?
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  • 作者:Diana Anna Dmuchowska (1)
    Pawel Krasnicki (1)
    Zofia Mariak (1)
  • 关键词:Ischemic diabetic maculopathy ; Retinal thickness ; Foveal avascular zone outline ; OCT ; Fluorescein angiography
  • 刊名:Graefe's Archive for Clinical and Experimental Ophthalmology
  • 出版年:2014
  • 出版时间:May 2014
  • 年:2014
  • 卷:252
  • 期:5
  • 页码:731-738
  • 全文大小:
  • 参考文献:1. Byeon SH, Kim M, Kwon OW (2012) Ischemia. In: Bernardes R, Cunha-Vaz J (eds) Optical coherence tomography. A clinical and technical update. Springer, Berlin, pp 24-6
    2. Querques G, Lattanzio R, Querques L, Del Turco C, Forte R, Pierro L, Souied EH, Bandello F (2012) Enhanced depth imaging optical coherence tomography in type 2 diabetes. Invest Ophthalmol Vis Sci 53(10):6017-024 CrossRef
    3. Regatieri CV, Branchini L, Carmody J, Fujimoto JG, Duker JS (2012) Choroidal thickness in patients with diabetic retinopathy analyzed by spectral-domain optical coherence tomography. Retina 32(3):563-68
    4. Vujosevic S, Martini F, Cavarzeran F, Pilotto E, Midena E (2012) Macular and peripapillary choroidal thickness in diabetic patients. Retina 32(9):1781-790
    5. Bresnick GH, Condit R, Syrjala S, Palta M, Groo A, Korth K (1984) Abnormalities of the foveal avascular zone in diabetic retinopathy. Arch Ophthalmol 102(9):1286-293 CrossRef
    6. Arend O, Wolf S, Jung F, Bertram B, P?stgens H, Toonen H, Reim M (1991) Retinal microcirculation in patients with diabetes mellitus: dynamic and morphological analysis of perifoveal capillary network. Br J Ophthalmol 75(9):514-18 CrossRef
    7. Mansour AM, Schachat A, Bodiford G, Haymond R (1993) Foveal avascular zone in diabetes mellitus. Retina 13(2):125-28 CrossRef
    8. Conrath J, Giorgi R, Raccah D, Ridings B (2005) Foveal avascular zone in diabetic retinopathy: quantitative vs qualitative assessment. Eye (Lond) 19(3):322-26 CrossRef
    9. Hee MR, Puliafito CA, Duker JS, Reichel E, Coker JG, Wilkins JR, Schuman JS, Swanson EA, Fujimoto JG (1998) Topography of diabetic macular edema with optical coherence tomography. Ophthalmology 105(2):360-70 CrossRef
    10. Schaudig UH, Glaefke C, Scholz F, Richard G (2000) Optical coherence tomography for retinal thickness measurement in diabetic patients without clinically significant macular edema. Ophthalmic Surg Lasers 31(3):182-86
    11. Lattanzio R, Brancato R, Pierro L, Bandello F, Iaccher B, Fiore T, Maestranzi G (2002) Macular thickness measured by optical coherence tomography (OCT) in diabetic patients. Eur J Ophthalmol 12(6):482-87
    12. Sánchez-Tocino H, Alvarez-Vidal A, Maldonado MJ, Moreno-Monta?és J, García-Layana A (2002) Retinal thickness study with optical coherence tomography in patients with diabetes. Invest Ophthalmol Vis Sci 43(5):1588-594
    13. Sakata K, Funatsu H, Harino S, Noma H, Hori S (2007) Relationship of macular microcirculation and retinal thickness with visual acuity in diabetic macular edema. Ophthalmology 114(11):2061-069 CrossRef
    14. Soliman W, Sander B, J?rgensen TM (2007) Enhanced optical coherence patterns of diabetic macular oedema and their correlation with the pathophysiology. Acta Ophthalmol Scand 85(6):613-17 CrossRef
    15. Soliman W, Sander B, Hasler PW, Larsen M (2008) Correlation between intraretinal changes in diabetic macular oedema seen in fluorescein angiography and optical coherence tomography. Acta Ophthalmol 86(1):34-9 CrossRef
    16. Goebel W, Kretzchmar-Gross T (2002) Retinal thickness in diabetic retinopathy: a study using optical coherence tomography (OCT). Retina 22(6):759-67 CrossRef
    17. Ozdek SC, Erdin? MA, Gürelik G, Aydin B, Bah?eci U, Hasanreiso?lu B (2005) Optical coherence tomographic assessment of diabetic macular edema: comparison with fluorescein angiographic and clinical findings. Ophthalmologica 219(2):86-2 CrossRef
    18. Yeung L, Lima VC, Garcia P, Landa G, Rosen RB (2009) Correlation between spectral domain optical coherence tomography findings and fluorescein angiography patterns in diabetic macular edema. Ophthalmology 116(6):1158-167
    19. Byeon SH, Chu YK, Lee H, Lee SY, Kwon OW (2009) Foveal ganglion cell layer damage in ischemic diabetic maculopathy: correlation of optical coherence tomographic and anatomic changes. Ophthalmology 116(10):1949.e1948-959.e1948 CrossRef
    20. van Dijk HW, Verbraak FD, Kok PH, Garvin MK, Sonka M, Lee K, Devries JH, Michels RP, van Velthoven ME, Schlingemann RO, Abràmoff MD (2010) Decreased retinal ganglion cell layer thickness in patients with type 1 diabetes. Invest Ophthalmol Vis Sci 51(7):3660-665 CrossRef
    21. Early Treatment Diabetic Retinopathy Study research group (1985) Photocoagulation for diabetic macular edema. ETDRS report number 1. Arch Ophthalmol 103(12):1796-806 CrossRef
    22. Early Treatment Diabetic Retinopathy Study research group (1991) Fundus photographic risk factors for progression of diabetic retinopathy. ETDRS report number 12. Ophthalmology 98(5 Suppl):823-33
    23. Early Treatment Diabetic Retinopathy Study research group (1991) Grading diabetic retinopathy from stereoscopic color fundus photographs—an extension of the modified Airlie House classification. ETDRS report number 10. Ophthalmology 98(5 Suppl):786-06
    24. Early Treatment Diabetic Retinopathy Study research group (1991) Classification of diabetic retinopathy from fluorescein angiograms. ETDRS report number 11. Ophthalmology 98(5 Suppl):807-22
    25. Fine BS, Brucker AJ (1981) Macular edema and cystoid macular edema. Am J Ophthalmol 92(4):466-81
    26. Yanoff M, Fine BS, Brucker AJ, Eagle RC (1984) Pathology of human cystoid macular edema. Surv Ophthalmol 28(Suppl):505-11 CrossRef
    27. Dimitrova G, Kato S, Tamaki Y, Yamashita H, Nagahara M, Sakurai M, Kitano S, Fukushima H (2001) Choroidal circulation in diabetic patients. Eye (Lond) 15(Pt 5):602-07 CrossRef
    28. Nagaoka T, Kitaya N, Sugawara R, Yokota H, Mori F, Hikichi T, Fujio N, Yoshida A (2004) Alteration of choroidal circulation in the foveal region in patients with type 2 diabetes. Br J Ophthalmol 88(8):1060-063 CrossRef
    29. Guyer DR, Schachat AP, Green WR (2009) The choroid: Structural considerations. In: Hinton DR, Schachat AP (eds) Retina. Basic science, inherited retinal disease, and tumors, vol 1. Elsevier, India, pp 33-6
    30. Harris A, Bingaman D, Ciulla TA, Martin B (2009) Retinal and choroidal blood flow in health and disease. In: Hinton DR, Schachat AP (eds) Retina. Basic science, inherited retinal disease, and tumors, vol 1. Elsevier, India, p 89
  • 作者单位:Diana Anna Dmuchowska (1)
    Pawel Krasnicki (1)
    Zofia Mariak (1)

    1. Department of Ophthalmology, University Teaching Hospital of Bialystok, 24a M. Sklodowskiej-Curie St., 15-276, Bialystok, Poland
  • ISSN:1435-702X
文摘
Background We studied the association between (1) the retinal thickness, volume and structure assessed by optical coherence tomography (OCT), and (2) vascular changes around the fovea in FA to define the role of these methods in the detection of ischemic diabetic maculopathy. Methods This retrospective observational study included 51 eyes of 51 patients with severe non-proliferative and proliferative diabetic retinopathy, considering that they present advanced ischemic retinal changes. Based on the clinical examination and presence of leakage on FA, patients with clinically significant macular edema were excluded. On FA, foveal avascular zone (FAZ) corresponds to capillary loss and reflects ischemic processes. Its outline and size were assessed according to the ETDRS standards. Patients were divided in two groups according to the severity of damage of the FAZ outline: ?grade 2 (n--8) and ?grade 3 (n--3). As we expected ischemia-related damage, SD-OCT images were evaluated for retinal structure, volume, total thickness with division into the outer and inner retina (to assess the influence of two, non-overlapping blood sources) and ganglion cell layer thickness. Results The comparisons revealed that at least currently with described methods: 1. There is no significant association between FAZ outline and retinal volume, total thickness, and thickness of the outer and inner retina and ganglion cell layer. 2. There is no significant association between FAZ outline and following retinal structure characteristics: continuity of the external limiting membrane and inner segment/outer segment junction, and identification of the inner/outer retina boundary. 3. The identification of ganglion cell layer boundaries was significantly more difficult in more advanced FAZ outline grades. 4. FAZ size is not correlated with the retinal thickness and volume. Conclusions In patients with severe non-proliferative and proliferative diabetic retinopathy, it is not possible to predict FAZ outline/size based solely on the measurements assessing volume and thickness or retinal structure evaluation on OCT. Consequently, at present OCT cannot replace FA in the detection of ischemic diabetic maculopathy.

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