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Items: 1 to 20 of 143

1.

Width of abnormal ganglion cell complex area determined using optical coherence tomography to predict glaucoma.

Rimayanti U, Latief MA, Arintawati P, Akita T, Tanaka J, Kiuchi Y.

Jpn J Ophthalmol. 2014 Jan;58(1):47-55. doi: 10.1007/s10384-013-0281-5. Epub 2013 Oct 23.

PMID:
24150101
2.

Evaluation of retinal nerve fiber layer thickness measurements for glaucoma detection: GDx ECC versus spectral-domain OCT.

Bertuzzi F, Benatti E, Esempio G, Rulli E, Miglior S.

J Glaucoma. 2014 Apr-May;23(4):232-9. doi: 10.1097/IJG.0b013e3182741afc.

PMID:
23970337
3.

Comparison of macular ganglion cell complex thickness by Fourier-domain OCT in normal tension glaucoma and primary open-angle glaucoma.

Kim NR, Hong S, Kim JH, Rho SS, Seong GJ, Kim CY.

J Glaucoma. 2013 Feb;22(2):133-9. doi: 10.1097/IJG.0b013e3182254cde.

PMID:
21701394
4.

Inner retinal layer comparisons of eyes with exudative age-related macular degeneration and eyes with age-related macular degeneration and glaucoma.

Rimayanti U, Kiuchi Y, Yamane K, Latief MA, Mochizuki H, Hirata J, Akita T, Tanaka J.

Graefes Arch Clin Exp Ophthalmol. 2014 Apr;252(4):563-70. doi: 10.1007/s00417-013-2496-z. Epub 2013 Oct 22.

PMID:
24146272
5.

The applicability of ganglion cell complex parameters determined from SD-OCT images to detect glaucomatous eyes.

Arintawati P, Sone T, Akita T, Tanaka J, Kiuchi Y.

J Glaucoma. 2013 Dec;22(9):713-8. doi: 10.1097/IJG.0b013e318259b2e1.

PMID:
22668975
6.

Comparison of ganglion cell and retinal nerve fiber layer thickness in primary open-angle glaucoma and normal tension glaucoma with spectral-domain OCT.

Firat PG, Doganay S, Demirel EE, Colak C.

Graefes Arch Clin Exp Ophthalmol. 2013 Mar;251(3):831-8. doi: 10.1007/s00417-012-2114-5. Epub 2012 Aug 18.

PMID:
22903819
7.

Relationship between visual acuity and retinal structures measured by spectral domain optical coherence tomography in patients with open-angle glaucoma.

Kim JH, Lee HS, Kim NR, Seong GJ, Kim CY.

Invest Ophthalmol Vis Sci. 2014 Jul 17;55(8):4801-11. doi: 10.1167/iovs.13-13052.

PMID:
25034596
8.

Evaluation of optic nerve head and retinal nerve fiber layer in early and advance glaucoma using frequency-domain optical coherence tomography.

Li S, Wang X, Li S, Wu G, Wang N.

Graefes Arch Clin Exp Ophthalmol. 2010 Mar;248(3):429-34. doi: 10.1007/s00417-009-1241-0. Epub 2009 Nov 25.

PMID:
19937335
9.

Comparative study of macular ganglion cell complex thickness measured by spectral-domain optical coherence tomography in healthy eyes, eyes with preperimetric glaucoma, and eyes with early glaucoma.

Kim YJ, Kang MH, Cho HY, Lim HW, Seong M.

Jpn J Ophthalmol. 2014 May;58(3):244-51. doi: 10.1007/s10384-014-0315-7. Epub 2014 Mar 11.

PMID:
24610541
10.

Comparison of different spectral domain OCT scanning protocols for diagnosing preperimetric glaucoma.

Lisboa R, Paranhos A Jr, Weinreb RN, Zangwill LM, Leite MT, Medeiros FA.

Invest Ophthalmol Vis Sci. 2013 May 13;54(5):3417-25. doi: 10.1167/iovs.13-11676.

11.

The ability of macular parameters and circumpapillary retinal nerve fiber layer by three SD-OCT instruments to diagnose highly myopic glaucoma.

Akashi A, Kanamori A, Nakamura M, Fujihara M, Yamada Y, Negi A.

Invest Ophthalmol Vis Sci. 2013 Sep 5;54(9):6025-32. doi: 10.1167/iovs.13-12630.

PMID:
23908182
12.

Assessment of glaucomatous changes in subjects with high myopia using spectral domain optical coherence tomography.

Shoji T, Sato H, Ishida M, Takeuchi M, Chihara E.

Invest Ophthalmol Vis Sci. 2011 Feb 25;52(2):1098-102. doi: 10.1167/iovs.10-5922.

PMID:
21051712
13.

Influences of the inner retinal sublayers and analytical areas in macular scans by spectral-domain OCT on the diagnostic ability of early glaucoma.

Nakatani Y, Higashide T, Ohkubo S, Sugiyama K.

Invest Ophthalmol Vis Sci. 2014 Oct 23;55(11):7479-85. doi: 10.1167/iovs.14-15530.

PMID:
25342613
14.

Impact of high myopia on the performance of SD-OCT parameters to detect glaucoma.

Shoji T, Nagaoka Y, Sato H, Chihara E.

Graefes Arch Clin Exp Ophthalmol. 2012 Dec;250(12):1843-9. doi: 10.1007/s00417-012-1994-8. Epub 2012 May 4.

PMID:
22555896
15.

Effect of scan quality on diagnostic accuracy of spectral-domain optical coherence tomography in glaucoma.

Rao HL, Addepalli UK, Yadav RK, Senthil S, Choudhari NS, Garudadri CS.

Am J Ophthalmol. 2014 Mar;157(3):719-27.e1. doi: 10.1016/j.ajo.2013.12.012. Epub 2013 Dec 15.

PMID:
24345321
16.

Detection of macular ganglion cell loss in glaucoma by Fourier-domain optical coherence tomography.

Tan O, Chopra V, Lu AT, Schuman JS, Ishikawa H, Wollstein G, Varma R, Huang D.

Ophthalmology. 2009 Dec;116(12):2305-14.e1-2. doi: 10.1016/j.ophtha.2009.05.025. Epub 2009 Sep 10.

17.

Ability of cirrus high-definition spectral-domain optical coherence tomography clock-hour, deviation, and thickness maps in detecting photographic retinal nerve fiber layer abnormalities.

Hwang YH, Kim YY, Kim HK, Sohn YH.

Ophthalmology. 2013 Jul;120(7):1380-7. doi: 10.1016/j.ophtha.2012.12.048. Epub 2013 Mar 28.

PMID:
23541761
18.

Structure-function relationship and diagnostic value of macular ganglion cell complex measurement using Fourier-domain OCT in glaucoma.

Kim NR, Lee ES, Seong GJ, Kim JH, An HG, Kim CY.

Invest Ophthalmol Vis Sci. 2010 Sep;51(9):4646-51. doi: 10.1167/iovs.09-5053. Epub 2010 Apr 30.

PMID:
20435603
19.

Retinal nerve fiber layer and macular inner retina measurements by spectral domain optical coherence tomograph in Indian eyes with early glaucoma.

Rao HL, Babu JG, Addepalli UK, Senthil S, Garudadri CS.

Eye (Lond). 2012 Jan;26(1):133-9. doi: 10.1038/eye.2011.277. Epub 2011 Nov 11.

20.

Ability of cirrus HD-OCT optic nerve head parameters to discriminate normal from glaucomatous eyes.

Mwanza JC, Oakley JD, Budenz DL, Anderson DR; Cirrus Optical Coherence Tomography Normative Database Study Group.

Ophthalmology. 2011 Feb;118(2):241-8.e1. doi: 10.1016/j.ophtha.2010.06.036. Epub 2010 Oct 28.

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