Skip to main content
Top
Published in: Graefe's Archive for Clinical and Experimental Ophthalmology 7/2014

01-07-2014 | Retinal Disorders

Spectral-domain optical coherence tomography evaluation of vitreoretinal adhesions in idiopathic epiretinal membranes

Authors: Luisa Pierro, Marco Gagliardi, Silvia Giatsidis, Lorenzo Iuliano, Luigi Berchicci, Maurizio Battaglia Parodi

Published in: Graefe's Archive for Clinical and Experimental Ophthalmology | Issue 7/2014

Login to get access

Abstract

Background

Vitreoretinal adhesions play a key role in the vector forces exerted on the vitreoretinal interface, leading to tractional retina deformation and macular hole formation. The aim of this study was to identify the presence of vitreopapillary and vitreofoveal adhesions in idiopathic epiretinal membranes (ERMs) with spectral-domain optical coherence tomography (SD-OCT) and to evaluate their influence on the vitreoretinal interface.

Methods

Sixty-five eyes (65 patients) with idiopathic ERM and 64 healthy eyes (64 patients) underwent SD-OCT analysis. We studied vitreopapillary and vitreofoveal adhesion prevalence in eyes with idiopathic ERM using different SD-OCT patterns (“adherent” or “tractional”). We analyzed their influence on central foveal thickness (CFT), on retinal nerve fiber layer (RNFL) thickness, and on morphological modifications (foveal depression profile and inner/outer photoreceptor junction).

Results

Vitreopapillary adhesion was present in 51.6 % of normal eyes and in 24.6 % of eyes with idiopathic ERM, while vitreofoveal adhesion was found in 14.1 % of normal eyes and in 15.4 % of eyes with ERM. Vitreopapillary adhesion prevalence was significantly higher in the tractional ERM subgroup (p = 0.01), than in the adherent ERM subgroup. Both adhesions had no influence on CFT, RNFL thickness, or inner segment/outer segment junction status.

Conclusions

Our study suggests that vitreoretinal adhesions may influence the pathogenesis and course of idiopathic ERM. The absence of vitreopapillary adhesion in the adherent type, and its presence in the tractional type, seems to play a key role in ERM characterization.
Literature
1.
go back to reference Chang LK, Fine HF, Spaide RF, Koizumi H, Grossniklaus HE (2008) Ultrastructural correlation of spectral-domain optical coherence tomographic findings in vitreomacular traction syndrome. Am J Ophthalmol 146(1):121–127PubMedCentralPubMedCrossRef Chang LK, Fine HF, Spaide RF, Koizumi H, Grossniklaus HE (2008) Ultrastructural correlation of spectral-domain optical coherence tomographic findings in vitreomacular traction syndrome. Am J Ophthalmol 146(1):121–127PubMedCentralPubMedCrossRef
2.
go back to reference Smiddy WE, Kim SS, Lujan BJ, Gregori G (2009) Myopic traction maculopathy: spectral domain optical coherence tomographic imaging and a hypothesized mechanism. Ophthalmic Surg Lasers Imaging 40(2):169–173PubMedCrossRef Smiddy WE, Kim SS, Lujan BJ, Gregori G (2009) Myopic traction maculopathy: spectral domain optical coherence tomographic imaging and a hypothesized mechanism. Ophthalmic Surg Lasers Imaging 40(2):169–173PubMedCrossRef
3.
go back to reference Johnson MW (2010) Posterior vitreous detachment: evolution and complications of its early stages. Am J Ophthalmol 149(3):371–382PubMedCrossRef Johnson MW (2010) Posterior vitreous detachment: evolution and complications of its early stages. Am J Ophthalmol 149(3):371–382PubMedCrossRef
4.
go back to reference Gallemore RP, Jumper JM, McCuen BW 2nd, Jaffe GJ, Postel EA, Toth CA (2000) Diagnosis of vitreoretinal adhesions in macular disease with optical coherence tomography. Retina 20(2):115–120PubMedCrossRef Gallemore RP, Jumper JM, McCuen BW 2nd, Jaffe GJ, Postel EA, Toth CA (2000) Diagnosis of vitreoretinal adhesions in macular disease with optical coherence tomography. Retina 20(2):115–120PubMedCrossRef
5.
go back to reference Mirza RG, Johnson MW, Jampol LM (2007) Optical coherence tomography use in evaluation of the vitreoretinal interface: a review. Surv Ophthalmol 52(4):397–421PubMedCrossRef Mirza RG, Johnson MW, Jampol LM (2007) Optical coherence tomography use in evaluation of the vitreoretinal interface: a review. Surv Ophthalmol 52(4):397–421PubMedCrossRef
6.
go back to reference Wang MY, Nguyen D, Hindoyan N, Sadun AA, Sebag J (2009) Vitreo-papillary adhesion in macular hole and macular pucker. Retina 29(5):644–650PubMedCrossRef Wang MY, Nguyen D, Hindoyan N, Sadun AA, Sebag J (2009) Vitreo-papillary adhesion in macular hole and macular pucker. Retina 29(5):644–650PubMedCrossRef
7.
go back to reference Koizumi H, Spaide RF, Fisher YL, Freund KB, Klancnik JM Jr, Yannuzzi LA (2008) Three-dimensional evaluation of vitreomacular traction and epiretinal membrane using spectral-domain optical coherence tomography. Am J Ophthalmol 145(3):509–517PubMedCrossRef Koizumi H, Spaide RF, Fisher YL, Freund KB, Klancnik JM Jr, Yannuzzi LA (2008) Three-dimensional evaluation of vitreomacular traction and epiretinal membrane using spectral-domain optical coherence tomography. Am J Ophthalmol 145(3):509–517PubMedCrossRef
8.
go back to reference Lee SJ, Koh HJ (2011) Effects of vitreomacular adhesion on anti-vascular endothelial growth factor treatment for exudative age-related macular degeneration. Ophthalmology 118(1):101–110PubMedCrossRef Lee SJ, Koh HJ (2011) Effects of vitreomacular adhesion on anti-vascular endothelial growth factor treatment for exudative age-related macular degeneration. Ophthalmology 118(1):101–110PubMedCrossRef
9.
go back to reference Chauhan DS, Antcliff RJ, Rai PA, Williamson TH, Marshall J (2000) Papillofoveal traction in macular hole formation: the role of optical coherence tomography. Arch Ophthalmol 118(1):32–38PubMedCrossRef Chauhan DS, Antcliff RJ, Rai PA, Williamson TH, Marshall J (2000) Papillofoveal traction in macular hole formation: the role of optical coherence tomography. Arch Ophthalmol 118(1):32–38PubMedCrossRef
10.
go back to reference Odrobina D, Michalewska Z, Michalewski J, Dziegielewski K, Nawrocki J (2011) Long-Term Evaluation of Vitreomacular Traction Disorder in Spectral-Domain Optical Coherence Tomography. Retina 31(2):324–331PubMedCrossRef Odrobina D, Michalewska Z, Michalewski J, Dziegielewski K, Nawrocki J (2011) Long-Term Evaluation of Vitreomacular Traction Disorder in Spectral-Domain Optical Coherence Tomography. Retina 31(2):324–331PubMedCrossRef
12.
go back to reference Sebag J, Gupta P, Rosen RR, Garcia P, Sadun AA (2007) Macular holes and macular pucker: the role of vitreoschisis as imaged by optical coherence tomography/scanning laser ophthalmoscopy. Trans Am Ophthalmol Soc 105:121–129PubMedCentralPubMed Sebag J, Gupta P, Rosen RR, Garcia P, Sadun AA (2007) Macular holes and macular pucker: the role of vitreoschisis as imaged by optical coherence tomography/scanning laser ophthalmoscopy. Trans Am Ophthalmol Soc 105:121–129PubMedCentralPubMed
13.
go back to reference Sebag J (2004) Anomalous posterior vitreous detachment: a unifying concept in vitreo-retinal disease. Graefes Arch Clin Exp Ophthalmol 242(8):690–698PubMedCrossRef Sebag J (2004) Anomalous posterior vitreous detachment: a unifying concept in vitreo-retinal disease. Graefes Arch Clin Exp Ophthalmol 242(8):690–698PubMedCrossRef
14.
go back to reference Mori K, Gehlbach PL, Sano A, Deguchi T, Yoneya S (2004) Comparison of epiretinal membranes of differing pathogenesis using optical coherence tomography. Retina 24(1):57–62PubMedCrossRef Mori K, Gehlbach PL, Sano A, Deguchi T, Yoneya S (2004) Comparison of epiretinal membranes of differing pathogenesis using optical coherence tomography. Retina 24(1):57–62PubMedCrossRef
15.
go back to reference Wilkins JR, Puliafito CA, Hee MR, Duker JS, Reichel E, Coker JG, Schuman JS, Swanson EA, Fujimoto JG (1996) Characterization of epiretinal membranes using optical coherence tomography. Ophthalmology 103(12):2142–2151PubMedCrossRef Wilkins JR, Puliafito CA, Hee MR, Duker JS, Reichel E, Coker JG, Schuman JS, Swanson EA, Fujimoto JG (1996) Characterization of epiretinal membranes using optical coherence tomography. Ophthalmology 103(12):2142–2151PubMedCrossRef
16.
go back to reference Panozzo G, Mercanti A (2004) Optical coherence tomography findings in myopic traction maculopathy. Arch Ophthalmol 122(10):1455–1460PubMedCrossRef Panozzo G, Mercanti A (2004) Optical coherence tomography findings in myopic traction maculopathy. Arch Ophthalmol 122(10):1455–1460PubMedCrossRef
17.
go back to reference Kim JS, Chhablani J, Chan CK, Cheng L, Kozak I, Hartmann K, Freeman WR (2012) Retinal Adherence and Fibrillary Surface Changes Correlate With Surgical Difficulty of Epiretinal Membrane Removal. Am J Ophthalmol 153(4):692–697PubMedCentralPubMedCrossRef Kim JS, Chhablani J, Chan CK, Cheng L, Kozak I, Hartmann K, Freeman WR (2012) Retinal Adherence and Fibrillary Surface Changes Correlate With Surgical Difficulty of Epiretinal Membrane Removal. Am J Ophthalmol 153(4):692–697PubMedCentralPubMedCrossRef
18.
go back to reference AzzoliniC PF, Codenotti M, Pierro L, Brancato R (1999) Optical coherence tomography in idiopathic epiretinal macular membrane surgery. Eur J Ophthalmol 9(3):206–211 AzzoliniC PF, Codenotti M, Pierro L, Brancato R (1999) Optical coherence tomography in idiopathic epiretinal macular membrane surgery. Eur J Ophthalmol 9(3):206–211
19.
go back to reference Massin P, Allouch C, Haouchine B, Metge F, Paques M, Tangui L, Erginay A, Gaudric A (2000) Optical coherence tomography of idiopathic macular epiretinal membranes before and after surgery. Am J Ophthalmol 130(6):732–739PubMedCrossRef Massin P, Allouch C, Haouchine B, Metge F, Paques M, Tangui L, Erginay A, Gaudric A (2000) Optical coherence tomography of idiopathic macular epiretinal membranes before and after surgery. Am J Ophthalmol 130(6):732–739PubMedCrossRef
20.
go back to reference Falkner-Radler CI, Glittenberg C, Binder S (2009) Spectral domain high-definition optical coherence tomography in patients undergoing epiretinal membrane surgery. Ophthalmic Surg Lasers Imaging 40(3):270–276PubMedCrossRef Falkner-Radler CI, Glittenberg C, Binder S (2009) Spectral domain high-definition optical coherence tomography in patients undergoing epiretinal membrane surgery. Ophthalmic Surg Lasers Imaging 40(3):270–276PubMedCrossRef
21.
go back to reference Yamashita T, Uemura A, Sakamoto T (2008) Intraoperative characteristics of the posterior vitreous cortex in patients with epiretinal membrane. Graefes Arch Clin Exp Ophthalmol 246(3):333–337PubMedCrossRef Yamashita T, Uemura A, Sakamoto T (2008) Intraoperative characteristics of the posterior vitreous cortex in patients with epiretinal membrane. Graefes Arch Clin Exp Ophthalmol 246(3):333–337PubMedCrossRef
23.
go back to reference Kishi S, Shimizu K (1994) Oval defect in detached posterior hyaloid membrane in idiopathic preretinal macular fibrosis. Am J Ophthalmol 118(4):451–456PubMed Kishi S, Shimizu K (1994) Oval defect in detached posterior hyaloid membrane in idiopathic preretinal macular fibrosis. Am J Ophthalmol 118(4):451–456PubMed
24.
go back to reference Sakamoto T, Ishibashi T (2011) Hyalocytes: Essential Cells of the Vitreous Cavity in Vitreoretinal Pathophysiology? Retina 31(2):222–228PubMedCrossRef Sakamoto T, Ishibashi T (2011) Hyalocytes: Essential Cells of the Vitreous Cavity in Vitreoretinal Pathophysiology? Retina 31(2):222–228PubMedCrossRef
25.
go back to reference Foos RY (1977) Vitreoretinal juncture, epiretinal membranes and vitreous. Invest Ophthalmol Vis Sci 16(5):416–422PubMed Foos RY (1977) Vitreoretinal juncture, epiretinal membranes and vitreous. Invest Ophthalmol Vis Sci 16(5):416–422PubMed
26.
go back to reference Uchino E, Uemura A, Ohba N (2001) Initial stages of posterior vitreous detachment in healthy eyes of older persons evaluated by optical coherence tomography. Arch Ophthalmol 119(10):1475–1479PubMedCrossRef Uchino E, Uemura A, Ohba N (2001) Initial stages of posterior vitreous detachment in healthy eyes of older persons evaluated by optical coherence tomography. Arch Ophthalmol 119(10):1475–1479PubMedCrossRef
27.
go back to reference Shimozono M, Oishi A, Hata M, Matsuki T, Ito S, Ishida K, Kurimoto Y (2012) The significance of cone outer segment tips as a prognostic factor in epiretinal membrane surgery. Am J Ophthalmol 153(4):698–704PubMedCrossRef Shimozono M, Oishi A, Hata M, Matsuki T, Ito S, Ishida K, Kurimoto Y (2012) The significance of cone outer segment tips as a prognostic factor in epiretinal membrane surgery. Am J Ophthalmol 153(4):698–704PubMedCrossRef
28.
go back to reference Mitamura Y, Hirano K, Baba T, Yamamoto S (2009) Correlation of visual recovery with presence of photoreceptor inner/outer segment junction in optical coherence images after epiretinal membrane surgery. Br J Ophthalmol 93(2):171–175PubMedCrossRef Mitamura Y, Hirano K, Baba T, Yamamoto S (2009) Correlation of visual recovery with presence of photoreceptor inner/outer segment junction in optical coherence images after epiretinal membrane surgery. Br J Ophthalmol 93(2):171–175PubMedCrossRef
29.
go back to reference Inoue M, Morita S, Watanabe Y, Kaneko T, Yamane S, Kobayashi S, Arakawa A, Kadonosono K (2010) Inner Segment/Outer Segment Junction Assessed by Spectral-Domain Optical Coherence Tomography in Patients with Idiopathic Epiretinal Membrane. Am J Ophthalmol 150(6):834–839PubMedCrossRef Inoue M, Morita S, Watanabe Y, Kaneko T, Yamane S, Kobayashi S, Arakawa A, Kadonosono K (2010) Inner Segment/Outer Segment Junction Assessed by Spectral-Domain Optical Coherence Tomography in Patients with Idiopathic Epiretinal Membrane. Am J Ophthalmol 150(6):834–839PubMedCrossRef
Metadata
Title
Spectral-domain optical coherence tomography evaluation of vitreoretinal adhesions in idiopathic epiretinal membranes
Authors
Luisa Pierro
Marco Gagliardi
Silvia Giatsidis
Lorenzo Iuliano
Luigi Berchicci
Maurizio Battaglia Parodi
Publication date
01-07-2014
Publisher
Springer Berlin Heidelberg
Published in
Graefe's Archive for Clinical and Experimental Ophthalmology / Issue 7/2014
Print ISSN: 0721-832X
Electronic ISSN: 1435-702X
DOI
https://doi.org/10.1007/s00417-013-2546-6

Other articles of this Issue 7/2014

Graefe's Archive for Clinical and Experimental Ophthalmology 7/2014 Go to the issue