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183. M.X. Repka, R.T. Kraker, S.M. Tamkins, D.W. Suh, N.A. Sala et al., Retinal nerve fiber layer
thickness in amblyopic eyes. Am. J. Ophthalmol. 148, 143–147 (2009)
184. R.A. Walker, S. Rubab, A.R. Voll, V. Erraguntla, P.H. Murphy, Macular and peripapillary
retinal nerve fibre layer thickness in adults with amblyopia. Can. J. Ophthalmol. 46, 425–427
(2011)
185. K.L. Chow, A.H. Riesen, F.W. Newell, Degeneration of retinal ganglion cells in infant chimpanzees reared in darkness. J. Comp. Neurol. 107, 27–42 (1957)
186. E. Fifkova, Effect of visual deprivation and light on synapses of the inner plexiform layer.
Exp. Neurol. 35, 458–469 (1972)
187. L. Sosula, P.H. Glow, Increase in number of synapses in the inner plexiform layer of light
deprived rat retinae: quantitative electron microscopy. J. Comp. Neurol. 141, 427–451 (1971)
188. L. Weiskrantz, Sensory deprivation and the cat’s optic nervous system. Nature 181, 1047–1050
(1958)
189. J.M. Enoch, Receptor amblyopia. Am. J. Ophthalmol. 48(3), 262–274 (1959)
190. T.P. Colen, J.T. de Faber, H.G. Lemij, Retinal nerve fiber layer thickness in human strabismic
amblyopia. Binocular Vis. Strabismus Q. 15, 141–146 (2000)
191. C.E. Al-Haddad, G.M. El Mollayess, Z.R. Mahfoud, D.F. Jaafar, Z.F. Bashshur, Macular
ultrastructural features in amblyopia using high-definition optical coherence tomography. Br.
J. Ophthalmol. 97, 318–322 (2013)
192. A. Szigeti, E. Tátrai, A. Szamosi, P. Vargha, Z.Z. Nagy, J. Németh, D. Cabrera DeBuc,
G.M. Somfai, A morphological study of retinal changes in unilateral amblyopia using optical
coherence tomography image segmentation. PLoS One 6;9(2), e88363 (2014)
193. B. Alamouti, J. Funk, Retinal thickness decreases with age: an OCT study. Br. J. Ophthalmol.
87, 899–901 (2003)
194. A.H. Kashani, I.E. Zimmer-Galler, S.M. Shah, L. Dustin, D.V. Do et al., Retinal thickness
analysis by race, gender, and age using Stratus OCT. Am. J. Ophthalmol. 149(496–502), e491
(2010)
195. H.E. Bedell, Central and peripheral retinal photoreceptor orientation in amblyopic eyes as
assessed by the psychophysical Stiles-Crawford function. Invest. Ophthalmol. Vis. Sci. 19,
49–59 (1980)
196. P.J. Delint, C. Weissenbruch, T.T. Berendschot, D.V. Norren, Photoreceptor function in unilateral amblyopia. Vis. Res. 38, 613–617 (1998)
197. C. Williams, D. Papakostopoulos, Electro-oculographic abnormalities in amblyopia. Br. J.
Ophthalmol. 79, 218–224 (1995)
198. J. Leone, K. Koklanis, Z. Georgievski, R. Wilkinson, Macular and retinal nerve fibre layer
thickness in strabismus and anisometropic amblyopia. Binocular Vis. Strabismus Q. 23,
227–234 (2008)
199. E. Hatef, A. Khwaja, Z. Rentiya, M. Ibrahim, M. Shulman et al., Comparison of time domain
and spectral domain optical coherence tomography in measurement of macular thickness in
macular edema secondary to diabetic retinopathy and retinal vein occlusion. J. Ophthalmol.
2012, 354783 (2012)
200. Z. Hu, M. Nittala, S. Sadda, Comparison and normalization of retinal reflectivity profiles
between spectral-domain optical coherence tomography devices. Invest. Ophthalmol. Vis.
Sci. 54(15), 5492 (2013)
201. H. Chen, X. Chen, Z. Qiu, D. Xiang, W. Chen, F. Shi, J. Zheng, W. Zhu, M. Sonka, Quantitative
analysis of retinal layers’ optical intensities on 3D optical coherence tomography for central
retinal artery occlusion. Sci. Rep. 5, 9269 (2015)
202. K.A. Vermeer, J. van der Schoot, H.G. Lemij, J.F. de Boer, RPE-normalized RNFL attenuation
coefficient maps derived from volumetric OCT imaging for glaucoma assessment. Invest.
Ophthalmol. Vis. Sci. 53(10), 6102–6108 (2012)
D. Cabrera DeBuc et al.
183. M.X. Repka, R.T. Kraker, S.M. Tamkins, D.W. Suh, N.A. Sala et al., Retinal nerve fiber layer
thickness in amblyopic eyes. Am. J. Ophthalmol. 148, 143–147 (2009)
184. R.A. Walker, S. Rubab, A.R. Voll, V. Erraguntla, P.H. Murphy, Macular and peripapillary
retinal nerve fibre layer thickness in adults with amblyopia. Can. J. Ophthalmol. 46, 425–427
(2011)
185. K.L. Chow, A.H. Riesen, F.W. Newell, Degeneration of retinal ganglion cells in infant chimpanzees reared in darkness. J. Comp. Neurol. 107, 27–42 (1957)
186. E. Fifkova, Effect of visual deprivation and light on synapses of the inner plexiform layer.
Exp. Neurol. 35, 458–469 (1972)
187. L. Sosula, P.H. Glow, Increase in number of synapses in the inner plexiform layer of light
deprived rat retinae: quantitative electron microscopy. J. Comp. Neurol. 141, 427–451 (1971)
188. L. Weiskrantz, Sensory deprivation and the cat’s optic nervous system. Nature 181, 1047–1050
(1958)
189. J.M. Enoch, Receptor amblyopia. Am. J. Ophthalmol. 48(3), 262–274 (1959)
190. T.P. Colen, J.T. de Faber, H.G. Lemij, Retinal nerve fiber layer thickness in human strabismic
amblyopia. Binocular Vis. Strabismus Q. 15, 141–146 (2000)
191. C.E. Al-Haddad, G.M. El Mollayess, Z.R. Mahfoud, D.F. Jaafar, Z.F. Bashshur, Macular
ultrastructural features in amblyopia using high-definition optical coherence tomography. Br.
J. Ophthalmol. 97, 318–322 (2013)
192. A. Szigeti, E. Tátrai, A. Szamosi, P. Vargha, Z.Z. Nagy, J. Németh, D. Cabrera DeBuc,
G.M. Somfai, A morphological study of retinal changes in unilateral amblyopia using optical
coherence tomography image segmentation. PLoS One 6;9(2), e88363 (2014)
193. B. Alamouti, J. Funk, Retinal thickness decreases with age: an OCT study. Br. J. Ophthalmol.
87, 899–901 (2003)
194. A.H. Kashani, I.E. Zimmer-Galler, S.M. Shah, L. Dustin, D.V. Do et al., Retinal thickness
analysis by race, gender, and age using Stratus OCT. Am. J. Ophthalmol. 149(496–502), e491
(2010)
195. H.E. Bedell, Central and peripheral retinal photoreceptor orientation in amblyopic eyes as
assessed by the psychophysical Stiles-Crawford function. Invest. Ophthalmol. Vis. Sci. 19,
49–59 (1980)
196. P.J. Delint, C. Weissenbruch, T.T. Berendschot, D.V. Norren, Photoreceptor function in unilateral amblyopia. Vis. Res. 38, 613–617 (1998)
197. C. Williams, D. Papakostopoulos, Electro-oculographic abnormalities in amblyopia. Br. J.
Ophthalmol. 79, 218–224 (1995)
198. J. Leone, K. Koklanis, Z. Georgievski, R. Wilkinson, Macular and retinal nerve fibre layer
thickness in strabismus and anisometropic amblyopia. Binocular Vis. Strabismus Q. 23,
227–234 (2008)
199. E. Hatef, A. Khwaja, Z. Rentiya, M. Ibrahim, M. Shulman et al., Comparison of time domain
and spectral domain optical coherence tomography in measurement of macular thickness in
macular edema secondary to diabetic retinopathy and retinal vein occlusion. J. Ophthalmol.
2012, 354783 (2012)
200. Z. Hu, M. Nittala, S. Sadda, Comparison and normalization of retinal reflectivity profiles
between spectral-domain optical coherence tomography devices. Invest. Ophthalmol. Vis.
Sci. 54(15), 5492 (2013)
201. H. Chen, X. Chen, Z. Qiu, D. Xiang, W. Chen, F. Shi, J. Zheng, W. Zhu, M. Sonka, Quantitative
analysis of retinal layers’ optical intensities on 3D optical coherence tomography for central
retinal artery occlusion. Sci. Rep. 5, 9269 (2015)
202. K.A. Vermeer, J. van der Schoot, H.G. Lemij, J.F. de Boer, RPE-normalized RNFL attenuation
coefficient maps derived from volumetric OCT imaging for glaucoma assessment. Invest.
Ophthalmol. Vis. Sci. 53(10), 6102–6108 (2012)
