The evaluation and correlation of subfoveal choroidal thickness and macular hole apical and basal diameters with enhanced depth imaging optical coherence tomography in patients with idiopathic macular hole

Authors

  • Ali Keles
  • Mehmet Citirik
  • Cagri Ilhan
  • Mehmet Yasin Teke

DOI:

https://doi.org/10.16964/er.v6i1.89

Keywords:

optical coherence tomography, OCT, enhanced depth imaging, EDI, macular hole, idiopathic macular hole, subfoveal choroidal thickness, choroid, apex, apical, base, basal, diameter, angle, vitrectomy, ILM, pars-plana, correlation, correlate, quantitative

Abstract

Purpose:  To investigate the evaluation and correlation between apical and basal hole diameters and subfoveal choroidal thickness (SCT) in patients with idiopathic macular hole (IMH), using enhanced depth imaging optical coherence tomography (OCT).

Methods:  This cross-sectional study included 30 eyes of 30 patients with IMH and 30 healthy controls eyes.  The SCT of subjects were measured using enhanced depth imaging OCT and the results were compared.  In the IMH group, the mean horizontal apical and basal diameters of IMH were calculated and the correlation between mean apical and basal diameters and SCT were investigated.  All patients with IMH underwent vitreoretinal surgery and the SCT at third postoperative month was compared with the preoperative values.

Results:  The mean age and gender distributions of the groups were similar (p =0.082 and p =0.605).  The mean SCT was 241.73 ± 57.20 μm in the IMH group and 280.30 ± 72.22 μm in the control group.  The SCT of the IMH group was thinner than that of the control group (p =0.025).  The mean apical and basal diameters of the IMH were 395.30 ± 190.71 μm and 920.70 ± 428.19 μm, respectively.  There was a significant negative correlation between mean apical diameter and SCT of IMH (r =- 0.373, p = 0.042) and there was no significant correlation between mean basal diameter and SCT of IMH (r =-0.282, p = 0.131).  The mean SCT was 237.19 ± 43.61 at the third postoperative month and there was no significant difference between the postoperative and preoperative values of the IMH group (p =0.555).

Conclusion:  The SCT is thinner in IMH patients than that of healthy subjects, and there is a statistically-significant negative correlation between the apical hole diameter and SCT.  In the early stage (three-month postoperative) after anatomical closure of IMH with vitreoretinal surgery, the SCT does not change significantly.

References

Nickla DL, Wallman J. The multifunctional choroid. Progress in Retinal and Eye Research 2010; 29(2): 144-68.

Spaide RF, Koizumi H, Pozonni MC. Enhanced depth imaging spectral-domain optical coherence Tomography. American Journal of Ophthalmology 2008; 146(4): 496-500.

Ikuno Y, Kawaguchi K, Nouchi T, et al. Choroidal thickness in healthy Japanese subjects. Investigative Opthalmology and Visual Science 2010; 51(4): 2173-6.

Manjunath V, TahaM , Fujimoto JG, et al. Choroidal thickness in normal eyes measured using Cirrus-HD optical coherence tomography. American Journal of Ophthalmology 2010; 150(3): 325-9.

Margolis R, Spaide RF. A pilot study of enhanced depth imaging optical coherence tomography of the choroid in normal eyes. American Journal of Ophthalmology 2008; 147(5): 811-815.

Shin JW, Shin YU, Cho HY, et al. Measurement of choroidal thickness in normal eyes using 3D OCT-1000 spectral domain optical coherence tomography. Korean Journal of Ophthalmology 2012; 26(4): 255-9.

Imamura Y, Fujiwara T, Margolis R, et al. Enhanced depth imaging optical coherence tomography of the choroid in central serous chorioretinopathy. Retina 2009; 29(10): 1469-73.

Maruko I, Iida T, Sugano Y, et al. Subfoveal choroidal thickness after treatment of Vogt-Koyanagi-Harada disease. Retina 2011; 31(3): 510-7.

Manjunath V, Goren J, Fujimoto JG, et al. Analysis of choroidal thickness in age-related macular degeneration using spectral-domain optical coherence tomography. American Journal of Ophthalmology 2011; 152(4): 663-8.

Vance SK, Imamura Y, Freund KB. The effects of sildenafil citrate on choroidal thickness as determined by enhanced depth imaging optical coherence tomography. Retina 2011; 31(2): 332-5.

Duker JS, Kaiser PK, Binder S, et al. The international vitreomacular traction study group classification of vitreomacular adhesion, traction, and macular hole. Ophthalmology 2013; 120(12): 2611-9.

Meuer SM, Myers CE, Klein BE, et al. The epidemiology of vitreoretinal interface abnormalities as detected by spectral-domain optical coherence tomography: the beaver dam eye study. Ophthalmology 2015; 122(4): 787–95.

Parravano M, Giansanti F, Eandi CM, et al. Vitrectomy for idiopathic macular hole. Cochrane Database of Systematic Reviews 2015; 12(5):CD009080.

Chylack LT, Wolfe JK, Singer DM, et al. The lens opacities classification system III. Archives of Ophthalmology 1993; 111(6): 831-6.

Zeng J, Li J, Liu R, et al. Choroidal thickness in both eyes of patients with unilateral idiopathic macular hole. Ophthalmology. 119(11): 2328–33.

Reibaldi M, Boscia F, Avitabile T, et al. Enhanced depth imaging optical coherence tomography of the choroid in idiopathic macular hole: a cross-sectional prospective study. American Journal of Ophthalmology 2011; 151(1): 112-7.

Zhang P, Zhou M, Wu Y, et al. Choroidal thickness in unilateral idiopathic macular hole: a cross-sectional study and meta-analysis. Retina 2017; 37(1): 60-9.

Karkhaneh R, Nikbakht M, Bazvand F, et al. Choroidal thickness in idiopathic macular hole. Journal of Current Ophthalmology 2017; 29(1): 45-9.

Sogawa K, Nagaoka T, Takahashi A, et al. Relationship between choroidal thickness and choroidal circulation in healthy young subjects. American Journal of Ophthalmology 2012; 153(6): 1129-32.

Kim SH, Kim HK, Yang JY, et al. Visual recovery after macular hole surgery and related prognostic factors. Korean Journal of Ophthalmology 2018; 32(2): 140-6.

Chhablani J, Khodani M, Hussein A. Role of macular hole angle in macular hole closure. British Journal of Ophthalmology 2015; 99: 1634-8.

Ahn SJ, Woo SJ, Park KH. Choroidal thickness change following vitrectomy in idiopathic epiretinal membrane and macular hole. Graefe’s Archive for Clinical and Experimental Ophthalmology 2016; 254(6): 1056-67.

Fujiwara A, Shiragami C, Fukuda K, et al. Changes in subfoveal choroidal thickness of epiretinal membrane and macular hole before and after microincision vitrectomy surgery. Nippon Ganka Gakkai Zasshi 2012; 116(11): 1080-5.

Schaal KB, Pollithy S, Dithmar S. Is choroidal thickness of importance in idiopathic macular hole? Ophthalmologe 2012; 109(4): 364-8.

Bardak H, Gunay M, Bardak Y, et al. Retinal and choroidal thicknesses measured with swept-source optical coherence tomography after surgery for idiopathic macular hole. European Journal of Ophthalmology 2017; 27(3): 312-8.

Published

2020-03-26

Issue

Section

Original Articles