Helvacioglu reproducibility index:a new algorithm to evaluate the effects of misalignments on the measurements of retinal nerve fiber layer by spectral-domain OCT

<b>AIM:</b>To evaluate the effect of misalignment on the measurements of retinal nerve fiber layer (RNFL) by spectral-domain optical coherence tomography (OCT).<b>METHODS:</b>A total of 42 eyes from 21 healthy young subjects underwent RNFL measurements with RTVue spectral-dom...

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Main Authors: Firat Helvacioglu, Osman Murat Uyar, Sadik Sencan, Zeki Tunc, Ziya Kapran
Format: Article
Language:English
Published: Press of International Journal of Ophthalmology (IJO PRESS) 2015-10-01
Series:International Journal of Ophthalmology
Subjects:
Online Access:http://www.ijo.cn/en_publish/2015/5/20150528.pdf
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spelling doaj-161fecc2d88d42f1a1b5d24c9831e66d2020-11-24T23:07:19ZengPress of International Journal of Ophthalmology (IJO PRESS)International Journal of Ophthalmology2222-39592227-48982015-10-01851008101210.3980/j.issn.2222-3959.2015.05.28Helvacioglu reproducibility index:a new algorithm to evaluate the effects of misalignments on the measurements of retinal nerve fiber layer by spectral-domain OCTFirat Helvacioglu0Osman Murat Uyar1Sadik Sencan2Zeki Tunc3Ziya Kapran4Department of Ophthalmology, Maltepe University School of Medicine, Istanbul 38845, TurkeyDepartment of Ophthalmology, Maltepe University School of Medicine, Istanbul 38845, TurkeyDepartment of Ophthalmology, Maltepe University School of Medicine, Istanbul 38845, TurkeyDepartment of Ophthalmology, Maltepe University School of Medicine, Istanbul 38845, TurkeyDepartment of Ophthalmology, Maltepe University School of Medicine, Istanbul 38845, Turkey<b>AIM:</b>To evaluate the effect of misalignment on the measurements of retinal nerve fiber layer (RNFL) by spectral-domain optical coherence tomography (OCT).<b>METHODS:</b>A total of 42 eyes from 21 healthy young subjects underwent RNFL measurements with RTVue spectral-domain OCT (Optovue Inc., Fremont, California, USA). Two baseline measurements with perfectly aligned central circle to the borders of the optic nerve and four misaligned measurements which were misaligned towards to four quadrants were taken. The differences in RNFL between the baseline and misaligned measurements were analyzed with a new algorithm called Helvacioglu reproducibility index (HRI) which is designed to measure the reproducibility of the scans by evaluating the RNFL changes in the four main quadrants.<b>RESULTS:</b>The average RNFL scores of the first two baseline measurements have good correlation (c=0.930) and good reproducibility scores (0.15±0.07). Superior misaligned measurements had significantly lower superior quadrant score and higher inferior quadrant score, similar nasal and little higher temporal scores (<i>P</i>1, <i>P</i>2&lt;0.001, <i>P</i>3=0.553, <i>P</i>4=0.001). Inferior misaligned measurements had significantly higher superior quadrant score and lower inferior quadrant score with similar temporal and little lower nasal scores (<i>P</i>1, <i>P</i>2&lt;0.001, <i>P</i>3=0.315, <i>P</i>4=0.016). Nasal misaligned measurements had significantly higher temporal quadrant score and lower nasal quadrant score with little lower superior and inferior scores (<i>P</i>1, <i>P</i>2, <i>P</i>4&lt;0.001, <i>P</i>3=0.005). Temporal misaligned measurements had significantly higher nasal quadrant score and lower temporal quadrant score with similar superior and little higher inferior scores (<i>P</i>1,<i> P</i>2&lt;0.001, <i>P</i>3=0.943, <i>P</i>4=0.001).<b>CONCLUSION:</b>Good alignment of the central circle to the borders of optic nerve is crucial to have correct and repeatable RNFL measurements. Misalignment to a quadrant resulted in falsely low readings at that quadrant and falsely high readings at the opposite quadrant.http://www.ijo.cn/en_publish/2015/5/20150528.pdfoptical coherence tomographyretinal nerve fiber layerrepeatabilityreproducibilitymisalignment
collection DOAJ
language English
format Article
sources DOAJ
author Firat Helvacioglu
Osman Murat Uyar
Sadik Sencan
Zeki Tunc
Ziya Kapran
spellingShingle Firat Helvacioglu
Osman Murat Uyar
Sadik Sencan
Zeki Tunc
Ziya Kapran
Helvacioglu reproducibility index:a new algorithm to evaluate the effects of misalignments on the measurements of retinal nerve fiber layer by spectral-domain OCT
International Journal of Ophthalmology
optical coherence tomography
retinal nerve fiber layer
repeatability
reproducibility
misalignment
author_facet Firat Helvacioglu
Osman Murat Uyar
Sadik Sencan
Zeki Tunc
Ziya Kapran
author_sort Firat Helvacioglu
title Helvacioglu reproducibility index:a new algorithm to evaluate the effects of misalignments on the measurements of retinal nerve fiber layer by spectral-domain OCT
title_short Helvacioglu reproducibility index:a new algorithm to evaluate the effects of misalignments on the measurements of retinal nerve fiber layer by spectral-domain OCT
title_full Helvacioglu reproducibility index:a new algorithm to evaluate the effects of misalignments on the measurements of retinal nerve fiber layer by spectral-domain OCT
title_fullStr Helvacioglu reproducibility index:a new algorithm to evaluate the effects of misalignments on the measurements of retinal nerve fiber layer by spectral-domain OCT
title_full_unstemmed Helvacioglu reproducibility index:a new algorithm to evaluate the effects of misalignments on the measurements of retinal nerve fiber layer by spectral-domain OCT
title_sort helvacioglu reproducibility index:a new algorithm to evaluate the effects of misalignments on the measurements of retinal nerve fiber layer by spectral-domain oct
publisher Press of International Journal of Ophthalmology (IJO PRESS)
series International Journal of Ophthalmology
issn 2222-3959
2227-4898
publishDate 2015-10-01
description <b>AIM:</b>To evaluate the effect of misalignment on the measurements of retinal nerve fiber layer (RNFL) by spectral-domain optical coherence tomography (OCT).<b>METHODS:</b>A total of 42 eyes from 21 healthy young subjects underwent RNFL measurements with RTVue spectral-domain OCT (Optovue Inc., Fremont, California, USA). Two baseline measurements with perfectly aligned central circle to the borders of the optic nerve and four misaligned measurements which were misaligned towards to four quadrants were taken. The differences in RNFL between the baseline and misaligned measurements were analyzed with a new algorithm called Helvacioglu reproducibility index (HRI) which is designed to measure the reproducibility of the scans by evaluating the RNFL changes in the four main quadrants.<b>RESULTS:</b>The average RNFL scores of the first two baseline measurements have good correlation (c=0.930) and good reproducibility scores (0.15±0.07). Superior misaligned measurements had significantly lower superior quadrant score and higher inferior quadrant score, similar nasal and little higher temporal scores (<i>P</i>1, <i>P</i>2&lt;0.001, <i>P</i>3=0.553, <i>P</i>4=0.001). Inferior misaligned measurements had significantly higher superior quadrant score and lower inferior quadrant score with similar temporal and little lower nasal scores (<i>P</i>1, <i>P</i>2&lt;0.001, <i>P</i>3=0.315, <i>P</i>4=0.016). Nasal misaligned measurements had significantly higher temporal quadrant score and lower nasal quadrant score with little lower superior and inferior scores (<i>P</i>1, <i>P</i>2, <i>P</i>4&lt;0.001, <i>P</i>3=0.005). Temporal misaligned measurements had significantly higher nasal quadrant score and lower temporal quadrant score with similar superior and little higher inferior scores (<i>P</i>1,<i> P</i>2&lt;0.001, <i>P</i>3=0.943, <i>P</i>4=0.001).<b>CONCLUSION:</b>Good alignment of the central circle to the borders of optic nerve is crucial to have correct and repeatable RNFL measurements. Misalignment to a quadrant resulted in falsely low readings at that quadrant and falsely high readings at the opposite quadrant.
topic optical coherence tomography
retinal nerve fiber layer
repeatability
reproducibility
misalignment
url http://www.ijo.cn/en_publish/2015/5/20150528.pdf
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