Literature DB >> 21989721

Effects of age, sex, and axial length on the three-dimensional profile of normal macular layer structures.

Sotaro Ooto1, Masanori Hangai, Atsuo Tomidokoro, Hitomi Saito, Makoto Araie, Tomohiro Otani, Shoji Kishi, Kenji Matsushita, Naoyuki Maeda, Motohiro Shirakashi, Haruki Abe, Shinji Ohkubo, Kazuhisa Sugiyama, Aiko Iwase, Nagahisa Yoshimura.   

Abstract

PURPOSE: To identify sex-related differences and age-related changes in individual retinal layer thicknesses in a population of healthy eyes across the lifespan, using spectral domain optical coherence tomography (SD-OCT).
METHODS: In seven institutes in Japan, mean thicknesses of the retinal nerve fiber layer (RNFL), ganglion cell layer (GCL), inner plexiform layer (IPL), inner nuclear layer (INL), outer plexiform layer (OPL), outer nuclear layer (ONL), photoreceptor inner segment (IS), and photoreceptor outer segment (OS) were measured using SD-OCT with a new automated segmentation protocol in 256 healthy subjects.
RESULTS: Interoperator coefficients of variability for measurements of each layer ranged from 0.012 to 0.038. The RNFL, GCL, IPL, and INL were thinnest in the foveal area, whereas the OPL+ONL and OS were thickest in this area. Mean thicknesses of the INL and the OPL+ONL were significantly greater in men (P = 0.002 and 0.001, respectively). However, mean RNFL thickness was greater in women (P = 0.006). Thicknesses of the RNFL, GCL, IPL, INL, and IS correlated negatively with age. Thickness of the OPL+ONL was not correlated with age, and thickness of the OS correlated positively with age. Inner retinal (RNFL+GCL+IPL) thickness over the whole macula correlated negatively with age (P < 0.001), but outer retinal (OPL+ONL+IS+OS) thickness did not. Thicknesses of layers did not correlate with axial length.
CONCLUSIONS: Macular layer thicknesses measured on SD-OCT images in healthy eyes showed significant variations by sex and age. These findings should inform macular layer thickness analyses in SD-OCT studies of retinal diseases and glaucoma.

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Year:  2011        PMID: 21989721     DOI: 10.1167/iovs.11-8388

Source DB:  PubMed          Journal:  Invest Ophthalmol Vis Sci        ISSN: 0146-0404            Impact factor:   4.799


  107 in total

1.  Effect of age on individual retinal layer thickness in normal eyes as measured with spectral-domain optical coherence tomography.

Authors:  Nazli Demirkaya; Hille W van Dijk; Sanne M van Schuppen; Michael D Abràmoff; Mona K Garvin; Milan Sonka; Reinier O Schlingemann; Frank D Verbraak
Journal:  Invest Ophthalmol Vis Sci       Date:  2013-07-22       Impact factor: 4.799

2.  Effects of age and gender on macular thickness in healthy subjects using spectral optical coherence tomography/scanning laser ophthalmoscopy.

Authors:  Mehmet Çubuk; Burcu Kasım; Yusuf Koçluk; Emine Alyamaç Sukgen
Journal:  Int Ophthalmol       Date:  2017-01-02       Impact factor: 2.031

3.  Correlation of outer nuclear layer thickness with cone density values in patients with retinitis pigmentosa and healthy subjects.

Authors:  Moreno Menghini; Brandon J Lujan; Shiri Zayit-Soudry; Reema Syed; Travis C Porco; Kristine Bayabo; Joseph Carroll; Austin Roorda; Jacque L Duncan
Journal:  Invest Ophthalmol Vis Sci       Date:  2014-12-16       Impact factor: 4.799

4.  The effects of ocular magnification on Spectralis spectral domain optical coherence tomography scan length.

Authors:  Irene Ctori; Stephen Gruppetta; Byki Huntjens
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2015-01-10       Impact factor: 3.117

5.  Effect of vitreomacular separation on macular thickness determined by spectral-domain optical coherence tomography.

Authors:  Kazuyuki Kumagai; Akinori Uemura; Masanori Hangai; Tetsuyuki Suetsugu; Nobuchika Ogino
Journal:  Jpn J Ophthalmol       Date:  2016-10-07       Impact factor: 2.447

6.  The distribution of retinal nerve fiber layer thickness and associations with age, refraction, and axial length: the Gutenberg health study.

Authors:  Esther M Hoffmann; Irene Schmidtmann; Angeliki Siouli; Alexander K Schuster; Manfred E Beutel; Norbert Pfeiffer; Julia Lamparter
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2018-05-18       Impact factor: 3.117

7.  Schizophrenia and the retina: Towards a 2020 perspective.

Authors:  Steven M Silverstein; Samantha I Fradkin; Docia L Demmin
Journal:  Schizophr Res       Date:  2019-11-07       Impact factor: 4.939

8.  The shape of the ganglion cell plus inner plexiform layers of the normal human macula.

Authors:  Robert W Knighton; Giovanni Gregori
Journal:  Invest Ophthalmol Vis Sci       Date:  2012-10-30       Impact factor: 4.799

9.  Focal alteration of the intraretinal layers in neurodegenerative disorders.

Authors:  Shriya Airen; Ce Shi; Zhiping Liu; Bonnie E Levin; Joseph F Signorile; Jianhua Wang; Hong Jiang
Journal:  Ann Eye Sci       Date:  2020-03

10.  Intraocular retinal thickness asymmetry in early stage of primary open angle glaucoma and normal tension glaucoma.

Authors:  Pei-Wen Lin; Hsueh-Wen Chang; Ing-Chou Lai; Jen-Chia Tsai; Yi-Chieh Poon
Journal:  Int J Ophthalmol       Date:  2018-08-18       Impact factor: 1.779

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