Title: Spectral domain macular optical coherence tomography: a new diagnostic tool for glaucoma?
Abstract: Clinical & Experimental OphthalmologyVolume 41, Issue 9 p. 823-824 Editorial Spectral domain macular optical coherence tomography: a new diagnostic tool for glaucoma? Andrew White PhD FRANZCO, Andrew White PhD FRANZCO Save Sight Institute and Westmead Millennium Institute, Westmead Hospital, University of Sydney, Westmead, New South Wales, AustraliaSearch for more papers by this author Andrew White PhD FRANZCO, Andrew White PhD FRANZCO Save Sight Institute and Westmead Millennium Institute, Westmead Hospital, University of Sydney, Westmead, New South Wales, AustraliaSearch for more papers by this author First published: 02 December 2013 https://doi.org/10.1111/ceo.12248 Competing/conflicts of interest: No stated conflict of interest. Funding sources: No stated funding sources. Read the full textAboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat No abstract is available for this article. References 1 Garas A, Vargha P, Hollo G. Diagnostic accuracy of nerve fibre layer, macular thickness and optic disc measurements made with the RTVue-100 optical coherence tomography to detect glaucoma. Eye (Lond) 2011; 25: 57–65. 2 Kim NR, Lee ES, Seong GJ Kang SY, Kim JH, Hong S, Kim CY. Comparing the ganglion cell complex and retinal nerve fibre layer measurements by Fourier domain OCT to detect glaucoma in high myopia. Br J Ophthalmol 2011; 95: 1115–1121. 3 Rao HL, Zangwill LM, Weinreb RN, Sample PA, Alencar LM, Medeiros FA. Comparison of different spectral domain optical coherence tomography scanning areas for glaucoma diagnosis. Ophthalmology 2010; 117: 1692–1699. 4 Tan O, Chopra V, Lu AT et al. Detection of macular ganglion cell loss in glaucoma by Fourier-domain optical coherence tomography. Ophthalmology 2009; 116: 2305–2314. 5 Tan O, Li G, Lu AT, Varma R, Huang D. Mapping of macular substructures with optical coherence tomography for glaucoma diagnosis. Ophthalmology 2008; 115: 949–956. 6 Hood DC, Raza AS, de Moraes CGV, Liebmann JM, Ritch R. Glaucomatous damage of the macula. Prog Retin Eye Res 2013; 32C: 1–21. 7 van Velthoven ME, van der Linden MH, de Smet MD, Faber DJ, Verbraak FD. Influence of cataract on optical coherence tomography image quality and retinal thickness. Br J Ophthalmol 2006; 90: 1259–1262. 8 Savini G, Zanini M, Barboni P. Influence of pupil size and cataract on retinal nerve fiber layer thickness measurements by Stratus OCT. J Glaucoma 2006; 15: 336–340. 9 Cheng CS, Natividad MG, Earnest A et al. Comparison of the influence of cataract and pupil size on retinal nerve fibre layer thickness measurements with time domain and spectral domain optical coherence tomography. Clin Experiment Ophthalmol 2011; 39: 215–221. 10 Mwanza JC, Bhorade AM, Sekhon N et al. Effect of cataract and its removal on signal strength and peripapillary retinal nerve fiber layer optical coherence tomography measurements. J Glaucoma 2011; 20: 37–43. 11 Wang M, Hood DC, Cho JS et al. Measurement of local retinal ganglion cell layer thickness in patients with glaucoma using frequency-domain optical coherence tomography. Arch Ophthalmol 2009; 127: 875–881. 12 Shoji T, Sato H, Ishida M, Takeuchi M, Chihara E. Assessment of glaucomatous changes in subjects with high myopia using spectral domain optical coherence tomography. Invest Ophthalmol Vis Sci 2011; 52: 1098–1102. Volume41, Issue9December 2013Pages 823-824 ReferencesRelatedInformation
Publication Year: 2013
Publication Date: 2013-12-01
Language: en
Type: letter
Indexed In: ['crossref', 'pubmed']
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