Optical coherence tomography angiography and Humphrey field analyser for macular capillary non-perfusion evaluation in branch retinal vein occlusion

Abstract We non-invasively evaluated macular non-perfused areas (m-NPAs) of branch retinal vein occlusion (BRVO) using optical coherence tomography (OCT) angiography and the Humphrey visual field analyser 10-2 programme (HFA 10-2). We enrolled 30 patients (30 eyes) with macular oedema secondary to B...

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Autores principales: Hiroko Terashima, Fumiki Okamoto, Hiruma Hasebe, Eriko Ueda, Hiromitsu Yoshida, Takeo Fukuchi
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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spelling oai:doaj.org-article:7341d615553548a6bac866e23f59fcd52021-12-02T11:37:26ZOptical coherence tomography angiography and Humphrey field analyser for macular capillary non-perfusion evaluation in branch retinal vein occlusion10.1038/s41598-021-84240-72045-2322https://doaj.org/article/7341d615553548a6bac866e23f59fcd52021-02-01T00:00:00Zhttps://doi.org/10.1038/s41598-021-84240-7https://doaj.org/toc/2045-2322Abstract We non-invasively evaluated macular non-perfused areas (m-NPAs) of branch retinal vein occlusion (BRVO) using optical coherence tomography (OCT) angiography and the Humphrey visual field analyser 10-2 programme (HFA 10-2). We enrolled 30 patients (30 eyes) with macular oedema secondary to BRVO. OCT angiography was used to photograph the macula at 6 × 6-mm; sizes of m-NPAs in the superficial capillary plexus (SCP) and deep capillary plexus (DCP) were measured in four areas. For HFA 10-2, we divided the actual measurement threshold of 68 points into four areas and calculated the mean central visual field sensitivity (CVFS). The correlation between the mean m-NPA and mean CVFS (dB) in each area was examined. There was a strong correlation between the m-NPA of each region detected in SCP and DCP, and the mean CVFS of each corresponding area (SCP: r = − 0.83, r = − 0.64, r = − 0.73, and r = − 0.79; DCP: r = − 0.82, r = − 0.71, r = − 0.71, and r = − 0.70), p values were < 0.001 for all. m-NPAs were associated with decreased visual field sensitivity in BRVO. Non-invasive m-NPA evaluation was possible using OCT angiography and HFA 10-2.Hiroko TerashimaFumiki OkamotoHiruma HasebeEriko UedaHiromitsu YoshidaTakeo FukuchiNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 11, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Hiroko Terashima
Fumiki Okamoto
Hiruma Hasebe
Eriko Ueda
Hiromitsu Yoshida
Takeo Fukuchi
Optical coherence tomography angiography and Humphrey field analyser for macular capillary non-perfusion evaluation in branch retinal vein occlusion
description Abstract We non-invasively evaluated macular non-perfused areas (m-NPAs) of branch retinal vein occlusion (BRVO) using optical coherence tomography (OCT) angiography and the Humphrey visual field analyser 10-2 programme (HFA 10-2). We enrolled 30 patients (30 eyes) with macular oedema secondary to BRVO. OCT angiography was used to photograph the macula at 6 × 6-mm; sizes of m-NPAs in the superficial capillary plexus (SCP) and deep capillary plexus (DCP) were measured in four areas. For HFA 10-2, we divided the actual measurement threshold of 68 points into four areas and calculated the mean central visual field sensitivity (CVFS). The correlation between the mean m-NPA and mean CVFS (dB) in each area was examined. There was a strong correlation between the m-NPA of each region detected in SCP and DCP, and the mean CVFS of each corresponding area (SCP: r = − 0.83, r = − 0.64, r = − 0.73, and r = − 0.79; DCP: r = − 0.82, r = − 0.71, r = − 0.71, and r = − 0.70), p values were < 0.001 for all. m-NPAs were associated with decreased visual field sensitivity in BRVO. Non-invasive m-NPA evaluation was possible using OCT angiography and HFA 10-2.
format article
author Hiroko Terashima
Fumiki Okamoto
Hiruma Hasebe
Eriko Ueda
Hiromitsu Yoshida
Takeo Fukuchi
author_facet Hiroko Terashima
Fumiki Okamoto
Hiruma Hasebe
Eriko Ueda
Hiromitsu Yoshida
Takeo Fukuchi
author_sort Hiroko Terashima
title Optical coherence tomography angiography and Humphrey field analyser for macular capillary non-perfusion evaluation in branch retinal vein occlusion
title_short Optical coherence tomography angiography and Humphrey field analyser for macular capillary non-perfusion evaluation in branch retinal vein occlusion
title_full Optical coherence tomography angiography and Humphrey field analyser for macular capillary non-perfusion evaluation in branch retinal vein occlusion
title_fullStr Optical coherence tomography angiography and Humphrey field analyser for macular capillary non-perfusion evaluation in branch retinal vein occlusion
title_full_unstemmed Optical coherence tomography angiography and Humphrey field analyser for macular capillary non-perfusion evaluation in branch retinal vein occlusion
title_sort optical coherence tomography angiography and humphrey field analyser for macular capillary non-perfusion evaluation in branch retinal vein occlusion
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/7341d615553548a6bac866e23f59fcd5
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AT fumikiokamoto opticalcoherencetomographyangiographyandhumphreyfieldanalyserformacularcapillarynonperfusionevaluationinbranchretinalveinocclusion
AT hirumahasebe opticalcoherencetomographyangiographyandhumphreyfieldanalyserformacularcapillarynonperfusionevaluationinbranchretinalveinocclusion
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AT takeofukuchi opticalcoherencetomographyangiographyandhumphreyfieldanalyserformacularcapillarynonperfusionevaluationinbranchretinalveinocclusion
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