Effect of refractive errors/axial length on peripapillary retinal nerve fibre layer thickness (RNFL) measured by Topcon SD-OCT

被引:0
|
作者
Kausar, Ayisha [1 ]
Akhtar, Nadia [3 ]
Afzal, Farooq [2 ]
Ali, Khalid [1 ]
机构
[1] Shifa Coll Med, Islamabad, Pakistan
[2] Shifa Int Hosp, Islamabad, Pakistan
[3] Fed Gen Hosp, Fed Med & Dent Coll, Islamabad, Pakistan
关键词
Optical coherence tomography; Refractive errors; Axial length; Glaucoma; Retinal ganglion cells; OPTICAL COHERENCE TOMOGRAPHY; CIRRUS-HD-OCT; AXIAL LENGTH; STRATUS OCT; GLAUCOMA; RTVUE; SIZE; CHILDREN; FUNDUS; MYOPIA;
D O I
暂无
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Objectives: To evaluate the effect of refractive error and axial length on peripapillary retinal nerve fibre layer thickness in myopic, hypermetropic and emmetropic eyes by Topcon spectral domain optical coherence tomography. Methods: This cross-sectional study was conducted at the ophthalmology clinic of Shifa Foundation Falahee Clinic, Islamabad, Pakistan, from January to December 2016, and comprised eye patients including emmetropes, hypermetropes and myopes. All participants underwent detailed ophthalmic examination including axial lengths measurements, auto refraction andretinal nerve fibre layer thickness analysis. Retinal nerve fibre layer thickness was obtained from the peripapillary quadrants: temporal, superior, nasal and inferior and 12 sub-quadrants using Topcon spectral domain optical coherence tomography. Pearson correlation coefficients (r) were calculated to evaluate relationships between the retinal nerve fibre layer thickness and axial length before and after adjustment for ocular magnification by using Littmann's formula. Results: Of the total 93 eyes of as many patients, 46(49.5%) were right eyes and 47(51.5%) left eyes. There were 35(37.6%) myopes, 29(31.2%) hypermetropes and 29(31.2%) emmetropes. Mean age was 30.45 +/- 7.86years. Mean axial length was 23.40 +/- 1.25mm. Mean retinal nerve fibre layer thickness after correction of magnification effect was 100.59 +/- 9.25 mu m. Correlation analyses showed that the average retinal nerve fibre layer thickness and mean thickness of major superior and nasal quadrants and also in nasal, upper nasal, superonasal, inferior and inferonasal sub-quadrants had negative correlation with axial length. However, correction of the magnification effect by applying Littmann's formula eliminated the relationship between the two. Conclusions: Retinal nerve fibre layer thickness measurements were found to vary with refractive status and axial length of the eye. Ocular magnification significantly affected the retinal nerve fibre layer thickness, and it should be considered in diagnosing glaucoma.
引用
收藏
页码:1054 / 1059
页数:6
相关论文
共 50 条
  • [21] To Evaluate the Effect of Developing a Partial Vitreous Separation, at the Optic Nerve, on Retinal Nerve Fiber Layer Thickness (RNFL) as Measured by OCT
    Mian, U.
    Shrivastava, A.
    Novoa, K.
    Schultz, J. S.
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2010, 51 (13)
  • [22] The Optimal Diameter for Circumpapillary Retinal Nerve Fiber Layer Thickness Measurement by SD-OCT in Glaucoma
    Heindl, Ludwig M.
    Adler, Werner
    El-Malahi, Ouahiba
    Schaub, Friederike
    Hermann, Manuel M.
    Dietlein, Thomas S.
    Cursiefen, Claus
    Enders, Philip
    JOURNAL OF GLAUCOMA, 2018, 27 (12) : 1086 - 1093
  • [23] Effect of axial length on false positive rate of sectoral peripapillary retinal nerve fiber layer thickness
    Yoshinaga, Wakako
    Yamashita, Takehiro
    Kii, Yuya
    Tanaka, Minoru
    Nakao, Kumiko
    Sakamoto, Taiji
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2013, 54 (15)
  • [24] Epiretinal membrane as a source of errors during the measurement of peripapillary nerve fibre thickness using spectral-domain optical coherence tomography (SD-OCT)
    Ruefer, Florian
    Bartsch, Julia Jasmin
    Erb, Carl
    Riehl, Anneliese
    Zeitz, Philipp Franko
    GRAEFES ARCHIVE FOR CLINICAL AND EXPERIMENTAL OPHTHALMOLOGY, 2016, 254 (10) : 2017 - 2023
  • [25] Epiretinal membrane as a source of errors during the measurement of peripapillary nerve fibre thickness using spectral-domain optical coherence tomography (SD-OCT)
    Florian Rüfer
    Julia Jasmin Bartsch
    Carl Erb
    Anneliese Riehl
    Philipp Franko Zeitz
    Graefe's Archive for Clinical and Experimental Ophthalmology, 2016, 254 : 2017 - 2023
  • [26] Detection of the Onset of Multiple Sclerosis from SD-OCT Thickness Measurements of the Retinal Nerve Fiber Layer
    Ledolter, Johannes
    Kardon, Randy
    QUALITY ENGINEERING, 2013, 25 (01) : 3 - 10
  • [27] Relationship between changes in retinal nerve fiber layer thickness measured by SD-OCT and changes in visual field parameters in birdshot chorioretinopathy
    Aurélia Gave
    Lucile Cotella
    José Labarere
    Florent Aptel
    Christophe Chiquet
    Graefe's Archive for Clinical and Experimental Ophthalmology, 2021, 259 : 979 - 985
  • [28] Relationship between changes in retinal nerve fiber layer thickness measured by SD-OCT and changes in visual field parameters in birdshot chorioretinopathy
    Aurelia, Gave
    Lucile, Cotella
    Jose, Labarere
    Florent, Aptel
    Christophe, Chiquet
    GRAEFES ARCHIVE FOR CLINICAL AND EXPERIMENTAL OPHTHALMOLOGY, 2021, 259 (04) : 979 - 985
  • [29] Comparative data on SD-OCT for the retinal nerve fiber layer and retinal macular thickness in a large cohort with Marfan syndrome
    Xu, WanWan
    Kurup, Sudhi P.
    Fawzi, Amani A.
    Durbin, Mary K.
    Maumenee, Irene H.
    Mets, Marilyn B.
    OPHTHALMIC GENETICS, 2017, 38 (01) : 34 - 38
  • [30] Area and volume analysis of the superior and inferior retinal nerve fiber layer (rNFL) bundles from SD-OCT thickness maps: correlation with thickness of the corresponding rNFL and ganglion cell-inner plexiform layer (GCIPL) sectors
    Chu, Fred
    Feuer, William J.
    Mwanza, Jean-Claude
    Budenz, Donald L.
    Triolo, Giacinto
    Monsalve, Pedro
    Parrish, Richard K.
    Gedde, Steven
    Vazquez, Luis E.
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2015, 56 (07)