Skip to main content
Top
Published in: International Ophthalmology 4/2016

01-08-2016 | Original Paper

Evaluation of the retinal ganglion cell and choroidal thickness in young Turkish adults with hyperopic anisometropic amblyopia

Authors: Erkan Celik, Burçin Çakır, Elif Betul Turkoglu, Emine Doğan, Gursoy Alagoz

Published in: International Ophthalmology | Issue 4/2016

Login to get access

Abstract

The purpose of this study is to compare the choroidal thickness (CT) and ganglion cell complex (GCC) thickness of the normal fellow eyes and the amblyopic eyes using enhanced depth imaging optical coherence tomography (EDI-OCT) in young Turkish adults with hyperopic anisometropic amblyopia. Patients with unilateral hyperopic anisometropic amblyopia were enrolled and underwent a full ophthalmological assessment, including best-corrected visual acuity, cycloplegic refraction, and axial length (AL) measurements. Cirrus EDI-OCT was used to obtain subfoveal CT, GCC thickness, retinal nerve fiber layer (RNFL), and central macular thickness (CMT) measurements. Comparison was performed between the amblyopic eyes and the normal fellow eyes. Forty-three hyperopic anisometropic amblyopic patients were enrolled in this study. Mean age of 23 female and 20 male patients was 24.8 ± 7.4 years. Mean AL was 21.9 ± 1.3 and 22.4 ± 0.9 mm in amblyopic and fellow eyes, respectively (P < 0.05). Mean subfoveal CT measurements were 325.4 ± 44.2 and 317.9 ± 42.7 µ in amblyopic and fellow eyes, respectively. There was no statistically significant difference between the groups (P > 0.05). Mean GCC thickness was 83.8 ± 3.6 µ in amblyopic eyes and 83.5 ± 3.9 µ in the fellow eyes. Statistically significant difference was not seen between the groups (P > 0.05). Mean RNFL and mean CMT measurements were also similar in two groups (P > 0.05). Subfoveal CT, CMT, RNFL, and GCC thickness measurements were not statistically significant between hyperopic anisometropic amblyopic eyes and normal fellow eyes.
Literature
1.
go back to reference Repka MX, Kraker RT, Tamkins SM, Suh DW, Sala NA, Beck RW (2009) Retinal nerve fiber layer thickness in amblyopic eyes. Am J Ophthalmol 148(1):143–147CrossRefPubMedPubMedCentral Repka MX, Kraker RT, Tamkins SM, Suh DW, Sala NA, Beck RW (2009) Retinal nerve fiber layer thickness in amblyopic eyes. Am J Ophthalmol 148(1):143–147CrossRefPubMedPubMedCentral
2.
go back to reference Szigeti A, Tatrai E, Szamosi A, Vargha P, Nagy ZZ, Nemeth J, DeBuc DC, Somfai GM (2014) A morphological study of retinal changes in unilateral amblyopia using optical coherence tomography image segmentation. PLoS One 9(2):e88363CrossRefPubMedPubMedCentral Szigeti A, Tatrai E, Szamosi A, Vargha P, Nagy ZZ, Nemeth J, DeBuc DC, Somfai GM (2014) A morphological study of retinal changes in unilateral amblyopia using optical coherence tomography image segmentation. PLoS One 9(2):e88363CrossRefPubMedPubMedCentral
3.
go back to reference Lempert P (2000) Optic nerve hypoplasia and small eyes in presumed amblyopia. J AAPOS 4(5):258–266CrossRefPubMed Lempert P (2000) Optic nerve hypoplasia and small eyes in presumed amblyopia. J AAPOS 4(5):258–266CrossRefPubMed
4.
go back to reference Fırat PG, Ozsoy E, Demirel S, Cumurcu T, Gündüz A (2013) Evaluation of peripapillary retinal nerve fiber layer, macula and ganglion cell thickness in amblyopia using spectral optical coherence tomography. Int J Ophthalmol 6(1):90–94PubMedPubMedCentral Fırat PG, Ozsoy E, Demirel S, Cumurcu T, Gündüz A (2013) Evaluation of peripapillary retinal nerve fiber layer, macula and ganglion cell thickness in amblyopia using spectral optical coherence tomography. Int J Ophthalmol 6(1):90–94PubMedPubMedCentral
6.
go back to reference Miki A, Shirakashi M, Yaoeda K, Kabasawa Y, Ueki S, Takagi M, Abe H (2010) Retinal nerve fiber layer thickness in recovered and persistent amblyopia. Clin Ophthalmol 4:1060–1064 Miki A, Shirakashi M, Yaoeda K, Kabasawa Y, Ueki S, Takagi M, Abe H (2010) Retinal nerve fiber layer thickness in recovered and persistent amblyopia. Clin Ophthalmol 4:1060–1064
7.
go back to reference Savastano MC, Rispoli M, Savastano A, Lumbroso B (2015) En face optical coherence tomography for visualization of the choroid. Ophthalmic Surg Lasers Imaging Retin 46(5):561–565CrossRef Savastano MC, Rispoli M, Savastano A, Lumbroso B (2015) En face optical coherence tomography for visualization of the choroid. Ophthalmic Surg Lasers Imaging Retin 46(5):561–565CrossRef
8.
go back to reference Cao J, McLeod S, Merges CA, Lutty GA (1998) Choriocapillaris degeneration and related pathologic changes in human diabetic eyes. Arch Ophthalmol 116:589–597CrossRefPubMed Cao J, McLeod S, Merges CA, Lutty GA (1998) Choriocapillaris degeneration and related pathologic changes in human diabetic eyes. Arch Ophthalmol 116:589–597CrossRefPubMed
10.
go back to reference Wallman J, Winawer J (2004) Homeostasis of eye growth and the question of myopia. Neuron 43:447–468CrossRefPubMed Wallman J, Winawer J (2004) Homeostasis of eye growth and the question of myopia. Neuron 43:447–468CrossRefPubMed
11.
go back to reference Wildsoet CF (1997) Active emmetropization—evidence for its existence and ramifications for clinical practice. Ophthalmic Physiol Opt 17:279–290CrossRefPubMed Wildsoet CF (1997) Active emmetropization—evidence for its existence and ramifications for clinical practice. Ophthalmic Physiol Opt 17:279–290CrossRefPubMed
12.
go back to reference Chiang ST, Philips JR, Backhouse S (2015) Effect of retinal image defocus on the thickness of the human choroid. Ophthalmic Physiol Opt 35(4):405–413CrossRefPubMed Chiang ST, Philips JR, Backhouse S (2015) Effect of retinal image defocus on the thickness of the human choroid. Ophthalmic Physiol Opt 35(4):405–413CrossRefPubMed
13.
go back to reference Woodman EC, Read SA, Collins MJ (2012) Axial length and choroidal thickness changes accompanying prolonged accomodation in myopes and emmetropes. Vis Res 72:34–41CrossRefPubMed Woodman EC, Read SA, Collins MJ (2012) Axial length and choroidal thickness changes accompanying prolonged accomodation in myopes and emmetropes. Vis Res 72:34–41CrossRefPubMed
14.
go back to reference Spaide RF, Koizumi H, Pozzoni MC (2008) Enhanced depth imaging spectral domain optical coherence tomography. Am J Ophthalmol 146:496–500CrossRefPubMed Spaide RF, Koizumi H, Pozzoni MC (2008) Enhanced depth imaging spectral domain optical coherence tomography. Am J Ophthalmol 146:496–500CrossRefPubMed
15.
go back to reference Yeoh J, Rahman W, Chen F, Hooper C, Patel P, Tufail A, Webster AR, Moore AT, Dacruz L (2010) Choroidal imaging in inherited retinal disease using the technique of enhanced depth imaging optical coherence tomography. Graefes Arch Clin Exp Ophthalmol 248(12):1719–1728CrossRefPubMed Yeoh J, Rahman W, Chen F, Hooper C, Patel P, Tufail A, Webster AR, Moore AT, Dacruz L (2010) Choroidal imaging in inherited retinal disease using the technique of enhanced depth imaging optical coherence tomography. Graefes Arch Clin Exp Ophthalmol 248(12):1719–1728CrossRefPubMed
16.
go back to reference Mwanza JC, Oakley JD, Budenz DL, Chang RT, Knight OJ, Feuer WJ (2011) Macular ganglion cell-inner plexiform layer: automated detection and thickness reproducibility with spectral domain-optical coherence tomography in glaucoma. Investig Ophthalmol Vis Sci 52(11):8323–8329CrossRef Mwanza JC, Oakley JD, Budenz DL, Chang RT, Knight OJ, Feuer WJ (2011) Macular ganglion cell-inner plexiform layer: automated detection and thickness reproducibility with spectral domain-optical coherence tomography in glaucoma. Investig Ophthalmol Vis Sci 52(11):8323–8329CrossRef
17.
go back to reference González-López JJ, Rebolleda G, Leal M, Oblanca N, Muñoz-Negrete FJ, Costa-Frossard L, Alvarez-Cermeño JC (2014) Comparative diagnostic accuracy of ganglion cell-inner plexiform and retinal nerve fiber layer thickness measures by Cirrus and Spectralis optical coherence tomography in relapsing-remitting multiple sclerosis. Biomed Res Int 2014:128517CrossRefPubMedPubMedCentral González-López JJ, Rebolleda G, Leal M, Oblanca N, Muñoz-Negrete FJ, Costa-Frossard L, Alvarez-Cermeño JC (2014) Comparative diagnostic accuracy of ganglion cell-inner plexiform and retinal nerve fiber layer thickness measures by Cirrus and Spectralis optical coherence tomography in relapsing-remitting multiple sclerosis. Biomed Res Int 2014:128517CrossRefPubMedPubMedCentral
18.
go back to reference Kantarci FA, Tatar MG, Uslu H, Colak HN, Yildirim A, Goker H, Karaca EE, Gurler B (2015) Choroidal and peripapillary retinal nerve fiber layer thickness in adults with anisometropic amblyopia. Eur J Ophthalmol, 21:0. doi: 10.5301/ejo.5000594 (Epub ahead of print) Kantarci FA, Tatar MG, Uslu H, Colak HN, Yildirim A, Goker H, Karaca EE, Gurler B (2015) Choroidal and peripapillary retinal nerve fiber layer thickness in adults with anisometropic amblyopia. Eur J Ophthalmol, 21:0. doi: 10.​5301/​ejo.​5000594 (Epub ahead of print)
19.
go back to reference Tenlik A, Güler E, Kulak AE, Totan Y, Dervişoğulları MS, Gürağaç FB (2014) Evaluation of choroidal thickness in amblyopia using enhanced depth imaging optical coherence tomography. Curr Eye Res 7:1–5 Tenlik A, Güler E, Kulak AE, Totan Y, Dervişoğulları MS, Gürağaç FB (2014) Evaluation of choroidal thickness in amblyopia using enhanced depth imaging optical coherence tomography. Curr Eye Res 7:1–5
20.
go back to reference Mori T, Sugano Y, Maruko I, Sekiryu T (2014) Subfoveal choroidal thickness and axial length in preschool children with hyperopic anisometropicamblyopia. Curr Eye Res 20:1–8 Mori T, Sugano Y, Maruko I, Sekiryu T (2014) Subfoveal choroidal thickness and axial length in preschool children with hyperopic anisometropicamblyopia. Curr Eye Res 20:1–8
21.
go back to reference Xu J, Zheng J, Yu S, Sun Z, Zheng W, Qu P, Chen Y, Chen W, Yu X (2014) Macular choroidal thickness in unilateral amblyopic children. Investig Ophthalmol Vis Sci 55(11):7361–7368CrossRef Xu J, Zheng J, Yu S, Sun Z, Zheng W, Qu P, Chen Y, Chen W, Yu X (2014) Macular choroidal thickness in unilateral amblyopic children. Investig Ophthalmol Vis Sci 55(11):7361–7368CrossRef
22.
go back to reference Nishi T, Ueda T, Hasegawa T, Miyata K, Ogata N (2014) Choroidal thickness in children with hyperopic anisometropic amblyopia. Br J Ophthalmol 98(2):228–232CrossRefPubMed Nishi T, Ueda T, Hasegawa T, Miyata K, Ogata N (2014) Choroidal thickness in children with hyperopic anisometropic amblyopia. Br J Ophthalmol 98(2):228–232CrossRefPubMed
23.
go back to reference Tugcu B, Araz-Ersan B, Kilic M, Erdogan ET, Yigit U, Karamursel S (2013) The morpho-functional evaluation of retina in amblyopia. Curr Eye Res 38(7):802–809CrossRefPubMed Tugcu B, Araz-Ersan B, Kilic M, Erdogan ET, Yigit U, Karamursel S (2013) The morpho-functional evaluation of retina in amblyopia. Curr Eye Res 38(7):802–809CrossRefPubMed
24.
go back to reference Park KA, Park DY, Oh SY (2011) Analysis of spectral-domain optical coherence tomography measurements in amblyopia: a pilot study. Br J Ophthalmol 95(12):1700–1706CrossRefPubMed Park KA, Park DY, Oh SY (2011) Analysis of spectral-domain optical coherence tomography measurements in amblyopia: a pilot study. Br J Ophthalmol 95(12):1700–1706CrossRefPubMed
26.
go back to reference Yoon SW, Park WH, Baek SH, Mook S (2005) Thicknesses of macular retinal layer and peripapillary retinal nerve fiber layer in patients with hyperopic anisometropic amblyopia. Korean J Ophthalmol 19:62–67CrossRefPubMed Yoon SW, Park WH, Baek SH, Mook S (2005) Thicknesses of macular retinal layer and peripapillary retinal nerve fiber layer in patients with hyperopic anisometropic amblyopia. Korean J Ophthalmol 19:62–67CrossRefPubMed
27.
go back to reference Yalcin E, Balci O (2014) Peripapillary retinal nerve fiber layer and foveal thickness in hypermetropic anisometropic amblyopia. Clin Ophthalmol 8:749–753PubMedPubMedCentral Yalcin E, Balci O (2014) Peripapillary retinal nerve fiber layer and foveal thickness in hypermetropic anisometropic amblyopia. Clin Ophthalmol 8:749–753PubMedPubMedCentral
Metadata
Title
Evaluation of the retinal ganglion cell and choroidal thickness in young Turkish adults with hyperopic anisometropic amblyopia
Authors
Erkan Celik
Burçin Çakır
Elif Betul Turkoglu
Emine Doğan
Gursoy Alagoz
Publication date
01-08-2016
Publisher
Springer Netherlands
Published in
International Ophthalmology / Issue 4/2016
Print ISSN: 0165-5701
Electronic ISSN: 1573-2630
DOI
https://doi.org/10.1007/s10792-015-0157-4

Other articles of this Issue 4/2016

International Ophthalmology 4/2016 Go to the issue