Reproducibility of Retinal Nerve Fiber Layer and Macular Thickness Measurement by Spectral Domain Optical Coherence Tomography

Purpose: To assess the reproducibility of retinal nerve fiber layer (RNFL) and macular thickness by spectral domain optical coherence tomography (SD-OCT) when the same investigator does scan thrice in a span of one hour without reference to the previous scan, is able to get similar results or not, w...

Full description

Bibliographic Details
Published in:Oftalʹmologiâ
Main Authors: A. K. Sood, R. O. Paliwal, R. Y. Mishra
Format: Article
Language:Russian
Published: Ophthalmology Publishing Group 2023-01-01
Subjects:
Online Access:https://www.ophthalmojournal.com/opht/article/view/1973
_version_ 1849370246944653312
author A. K. Sood
R. O. Paliwal
R. Y. Mishra
author_facet A. K. Sood
R. O. Paliwal
R. Y. Mishra
author_sort A. K. Sood
collection DOAJ
container_title Oftalʹmologiâ
description Purpose: To assess the reproducibility of retinal nerve fiber layer (RNFL) and macular thickness by spectral domain optical coherence tomography (SD-OCT) when the same investigator does scan thrice in a span of one hour without reference to the previous scan, is able to get similar results or not, without using the repeat function.Methods. In this prospective observational study 200 subjects who fulfilled the inclusion & exclusion criteria were scanned 3 times as per pre-defined guidelines at 0 minutes, 30 minutes; 60 minutes on the same day, by the same investigator using SD-OCT for measurements of RNFL and macular thickness & observations were statistically analyzed & correlated.Results. In RNFL thickness, temporal sector shows the worst reproducibility as compared to other sectors. The RNFL thickness was greatest in superior quadrant and thinnest in temporal quadrant. Female values were significantly higher than males in RNFL superior and RNFL symmetry. For macular thickness, temporal sector (mid-zone) showed the worst reproducibility and in outer-zone, Inferior sector showed the worst reproducibility. It also shows that macular thickness was thinnest at the central zone (innermost 1 mm ring), thickest within the inner 3 mm ring and diminished peripherally.Conclusion. RNFL and macular thickness measurements by SD-OCT by the same observer at 0 minutes, 30 minutes and 60 minutes were very reproducible except in the sectors specifically mentioned. The greater the thickness of RNFL in any sector, the better will be the reproducibility in that sector. For macular thickness, temporal sector (mid-zone) showed the worst reproducibility & with an increase in age the macular thickness measurements decreases.
format Article
id doaj-art-e9a6e65c3f374fbaa7ca61bbb3245373
institution Directory of Open Access Journals
issn 1816-5095
2500-0845
language Russian
publishDate 2023-01-01
publisher Ophthalmology Publishing Group
record_format Article
spelling doaj-art-e9a6e65c3f374fbaa7ca61bbb32453732025-08-20T04:00:25ZrusOphthalmology Publishing GroupOftalʹmologiâ1816-50952500-08452023-01-0119470571810.18008/1816-5095-2022-4-705-718962Reproducibility of Retinal Nerve Fiber Layer and Macular Thickness Measurement by Spectral Domain Optical Coherence TomographyA. K. Sood0R. O. Paliwal1R. Y. MishraIndian Institute of ScienceAutonomous State Medical College ShahjahanpurPurpose: To assess the reproducibility of retinal nerve fiber layer (RNFL) and macular thickness by spectral domain optical coherence tomography (SD-OCT) when the same investigator does scan thrice in a span of one hour without reference to the previous scan, is able to get similar results or not, without using the repeat function.Methods. In this prospective observational study 200 subjects who fulfilled the inclusion & exclusion criteria were scanned 3 times as per pre-defined guidelines at 0 minutes, 30 minutes; 60 minutes on the same day, by the same investigator using SD-OCT for measurements of RNFL and macular thickness & observations were statistically analyzed & correlated.Results. In RNFL thickness, temporal sector shows the worst reproducibility as compared to other sectors. The RNFL thickness was greatest in superior quadrant and thinnest in temporal quadrant. Female values were significantly higher than males in RNFL superior and RNFL symmetry. For macular thickness, temporal sector (mid-zone) showed the worst reproducibility and in outer-zone, Inferior sector showed the worst reproducibility. It also shows that macular thickness was thinnest at the central zone (innermost 1 mm ring), thickest within the inner 3 mm ring and diminished peripherally.Conclusion. RNFL and macular thickness measurements by SD-OCT by the same observer at 0 minutes, 30 minutes and 60 minutes were very reproducible except in the sectors specifically mentioned. The greater the thickness of RNFL in any sector, the better will be the reproducibility in that sector. For macular thickness, temporal sector (mid-zone) showed the worst reproducibility & with an increase in age the macular thickness measurements decreases.https://www.ophthalmojournal.com/opht/article/view/1973macular thicknessreproducibilityretinal nerve fibre layerspectral domain optical coherence tomography
spellingShingle A. K. Sood
R. O. Paliwal
R. Y. Mishra
Reproducibility of Retinal Nerve Fiber Layer and Macular Thickness Measurement by Spectral Domain Optical Coherence Tomography
macular thickness
reproducibility
retinal nerve fibre layer
spectral domain optical coherence tomography
title Reproducibility of Retinal Nerve Fiber Layer and Macular Thickness Measurement by Spectral Domain Optical Coherence Tomography
title_full Reproducibility of Retinal Nerve Fiber Layer and Macular Thickness Measurement by Spectral Domain Optical Coherence Tomography
title_fullStr Reproducibility of Retinal Nerve Fiber Layer and Macular Thickness Measurement by Spectral Domain Optical Coherence Tomography
title_full_unstemmed Reproducibility of Retinal Nerve Fiber Layer and Macular Thickness Measurement by Spectral Domain Optical Coherence Tomography
title_short Reproducibility of Retinal Nerve Fiber Layer and Macular Thickness Measurement by Spectral Domain Optical Coherence Tomography
title_sort reproducibility of retinal nerve fiber layer and macular thickness measurement by spectral domain optical coherence tomography
topic macular thickness
reproducibility
retinal nerve fibre layer
spectral domain optical coherence tomography
url https://www.ophthalmojournal.com/opht/article/view/1973
work_keys_str_mv AT aksood reproducibilityofretinalnervefiberlayerandmacularthicknessmeasurementbyspectraldomainopticalcoherencetomography
AT ropaliwal reproducibilityofretinalnervefiberlayerandmacularthicknessmeasurementbyspectraldomainopticalcoherencetomography
AT rymishra reproducibilityofretinalnervefiberlayerandmacularthicknessmeasurementbyspectraldomainopticalcoherencetomography