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Original Article

Analysis of Macular Thickness in British Population Using Optical Coherence Tomography (OCT): An Emphasis on Interocular Symmetry

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Pages 693-699 | Received 06 Jun 2007, Accepted 01 Jul 2008, Published online: 02 Jul 2009

REFERENCES

  • Haung D, Swanson E A, Lin C P, et al. Optical coherence tomography. Science. 1991; 254: 1178–1181
  • Swanson E A, Izattt J A, Hee M R, et al. In vivo retinal imaging by optical coherence tomography. Optics Letts. 1993; 18: 1864–1866
  • Fercher A F, Hitzenberger C K, Drexler W, et al. In vivo optical coherence tomography. Am J Ophthalmol. 1993; 116: 113–114
  • Puliafito C A, Hee M R, Lin C P, et al. Imaging of macular diseases with optical coherence tomography (OCT). Ophthalmology 1995; 102: 217–229
  • Hee M R, Puliafito C A, Wong C, et al. Quantitative assessment of macular edema with optical coherence tomography (OCT). Arch Ophthalmol 1995; 113: 1019–1029
  • Hee M R, Puliafito C A, et al. Optical coherence tomography of macular holes. Ophthalmology 1995; 102: 748–756
  • Hee M R, Puliafito C A, Wong C, et al. Optical coherence tomography of central serous chorioretinopathy. Am J Ophthalmol. 1995; 120: 65–74
  • Hee M R, Baumal C R, Puliafito C A, et al. Optical coherence tomography of age-related macular degeneration and choroidal neovascularization. Ophthalmology 1996; 103: 1260–1270
  • Schuman J S, Hee M R, Puliafito C A, et al. Quantification of nerve fiber layer thickness in normal and glaucomatous eyes using optical coherence tomography: A pilot study. Arch Ophthalmol 1995; 113: 586–596
  • Schuman J S, Hee M R, Arya A V, et al. Optical coherence tomography: A new tool for glaucoma diagnosis. Curr Opin Ophthalmol 1995; 6: 89–95
  • Schuman J S, Pedut-Kloizman T, Hertzmark E, et al. Reproducibility of nerve fiber layer thickness measurements using optical coherence tomography. Ophthalmology. 1996; 103: 1889–1898
  • Shahidi M, Wang Z, Zelkha R. Quantitative thickness measurement of retinal layers imaged by optical coherence tomography. Am J Ophthalmol 2005; 139(6)1056–1061
  • Hee M R, Izatt J A, Swanson E A, et al. Optical coherence tomography of the human retina. Arch Ophthalmol 1995; 113: 325–332
  • Jaffe G J, Caprioli J. Optical coherence tomography to detect and manage retinal disease and glaucoma. Am J Ophthalmol 2004; 137: 156–169
  • Browning D J. Interobserver variability in optical coherence tomography for macular edema. Am J Ophthalmol. 2004; 137: 1116–1117
  • Lam D S, Leung K S, Mohamed S, Chan W M, Palanivelu M S, Cheung C Y, Li E Y, Lai R Y, Leung C K. Regional variations in the relationship between macular thickness measurements and myopia. Invest Ophthalmol Vis Sci. 2007; 48(1)376–382
  • Sanchez-Tocino H, Alvarez-Vidal A, Maldonado M J, et al. Retinal thickness study with optical coherence tomography in patients with diabetes. Invest Ophthalmol Vis Sci. 2002; 43: 1588–1594
  • Meredith T A, Kenyon K R, Singeman L J, Fine S L. Perifoveal vascular leakage and macular oedema after intracapsular cataract extraction. Br J Ophthalmol. 1976; 60: 765–769
  • Nussenblatt R B, Kaufman S C, Palestine A G, et al. Macular thickening and visual acuity. Ophthalmology 1987; 94: 1134–1139
  • Wong A CM, Chan C WN, Hui S P. Relationship of gender, body mass index, and axial length with central retinal thickness using optical coherence tomography. Eye. 2005; 19: 292–297
  • Asefzadeh B, Cavallerano A A, Fisch B M. Racial differences in macular thickness in healthy eyes. Optom Vis Sci. 2007; 84(10)941–945
  • Early Treatment Diabetic Retinopathy Study Research Group. Early Treatment Diabetic Retinopathy Study design and baseline patient characteristics. Ophthalmology. 1991; 98: 741–756, ETDRS Report no 7: 16
  • Bland J M, Altman D G. Statistical methods for assessing agreement between two methods of clinical measurement. Lancet 1986; 1: 307–310
  • British Standards Institution. Precision of test methods 1: Guide for the determination and reproducibility for a standard test method (BS 597, Part 1). BSI, London 1975
  • Chan A, Duker J S, Ko T H, et al. Normal macular thickness measurements in healthy eyes using stratus optical coherence tomography. Arch Ophthalmol. 2006; 124: 193–198
  • Hee M R, Puliafito C A, Duker J S, et al. Topography of diabetic macular edema with optical coherence tomography. Ophthalmology 1998; 105: 360–370
  • Brown J C, Solomon S D, Bressler S B, et al. Detection of diabetic foveal edema: Contact lens biomicroscopy compared with optical coherence tomography. Arch Ophthalmol. 2004; 122(3)330–335
  • Polito A, Del Borello M, Isola M, Zemella N, Bandello F. Repeatability and reproducibility of fast macular thickness mapping with stratus optical coherence tomography. Arch Ophthalmol 2005; 123(10)1330–1337
  • Danis R P, Fisher M R, Lambert E, Goulding A, Wu D, Lee L Y. Results and repeatability of retinal thickness measurements from certification submissions. Arch Ophthalmol. 2008; 126(1)45–50
  • Bauman M, Gentile R C, Liebmann J M, Rich R. Reproducibility of retinal thickness measurement in normal eyes using optical coherence tomography. Ophthalmic Surg Laser. 1998; 29: 280–285
  • Otani T, Kishi S, Maruyama Y. Patterns of diabetic macular edema with optical coherence tomography. Am J Ophthalmol 1999; 127(6)688–693
  • Neubauer A S, Priglinger S, Ullrich S, et al. Comparison of foveal thickness measured with the retinal thickness analyzer and optical coherence tomography. Retina. 2001; 21(6)596–601
  • Massin P, Erginay A, Haouchine B, et al. Retinal thickness in healthy and diabetic subjects measured using optical coherence tomography mapping software. Eur J Ophthalmol. 2002; 12(2)102–108
  • Kanai K, Abe T, Murayama K, Yoneya S. Retinal thickness and changes with age. Nippon Ganka Gakkai Zasshi 2002; 106(3)162–165
  • Goebel W, Kretzchmar-Gross T. Retinal thickness in diabetic retinopathy: A study using optical coherence tomography (OCT). Retina 2002; 22(6)759–767
  • Lattanzio R, Brancato R, Pierro L, et al. Macular thickness measured by optical coherence tomography (OCT) in diabetic patients. Eur J Ophthalmol 2002; 12(6)482–487
  • Paunescu L A, Schuman J S, Price L L, et al. Reproducibility of nerve fiber thickness, macular thickness, and optic nerve head measurements using Stratus OCT. Invest Ophthalmol Vis Sci 2004; 45(6)1716–1724
  • Laursen M L, Moeller F, Sander B, Sjoelie A K. Subthreshold micropulse diode laser treatment in diabetic macular oedema. Br J Ophthalmol 2004; 88(9)1173–1179
  • Tewari H K, Wagh V B, Sony P, et al. Macular thickness evaluation using the optical coherence tomography in normal Indian eyes. Ind J Ophthalmol 2004; 52(3)199–204
  • Konno S, Akiba J, Yoshida A. Retinal thickness measurements with optical coherence tomography and the scanning retinal thickness analyzer. Retina. 2001; 21: 57–61
  • Chan A, Duker J S, Ishikawa H, et al. Quantification of photoreceptor layer thickness in normal eyes using optical coherence tomography. Retina. 2006; 26(6)655–660
  • Schaudig U H, Glaefke C, Scholz F, Richard G. Optical coherence tomography for retinal thickness measurement in diabetic patients without clinically significant macular edema. Ophthalmic Surg Lasers 2003; 3: 182–186
  • Guedes V, Schuman J S, Hertzmark E, et al. Optical coherence tomography measurement of macular and nerve fiber layer thickness in normal and glaucomatous human eyes. Ophthalmology. 2003; 110: 117–189
  • Massin P, Vicaut E, Haouchine B, et al. Reproducibility of retinal mapping using optical coherence tomography. Arch Ophthalmol 2001; 119: 1135–1142
  • Muscat S, Parks S, Kemp E, Keating D. Repeatability and reproducibility of macular thickness measurements with Humphrey OCT system. Invest Ophthalmol Vis Sci. 2002; 43: 490–495
  • Wakitani Y, Sasoh M, Sugimoto M, et al. Macular thickness measurements in healthy subjects with different axial lengths using optical coherence tomography. Retina. 2003; 23(2)177–182
  • Costa R A, Calucci D, Skaf M, et al. Optical coherence tomography 3: Automatic delineation of the outer neural retinal boundary and its influence on retinal thickness measurements. Invest Ophthalmol Vis Sci 2004; 45: 2399–2406
  • Koozekanani D, Roberts C, Katz S, Herderick E. Intersession repeatability of macular thickness measurements with the Humphrey 200 OCT. Invest Ophthalmol Vis Sci. 2000; 41(6)1486–1491
  • Smith M, Frost A, Graham C M, Shaw S. Effect of pupillary dilatation on glaucoma assessments using optical coherence tomography. Br J Ophthalmol. 2007; 91(12)1686–1690
  • Zafar S, Gurses-Ozden R, Vasseni R, et al. Effect of pupillary dilatation on retinal nerve fiber layer thickness measurements using optical coherence tomography. J Glaucoma. 2004; 13: 34–37
  • Gobel W, Hartmann F, Haigis W. Determination of retinal thickness in relation to the age and axial length using optical coherence tomography. Ophthalmologe 2001; 98(2)157–162

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