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Effect of Pupil Size on Fixed-Luminance Flicker Full-Field Electroretinogram Magnitude

PURPOSE: Diopsys(®) NOVA fixed-luminance flicker full-field electroretinogram (ffERG) device is a potential adjunct to conventional flicker ffERG testing for assessing cone cell function. Magnitude of measured electrical response is known to vary with pupil size in conventional ffERG testing. The in...

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Autores principales: Mobasserian, Azadeh, Zaidi, Moosa, Halim, Sohail, Hwang, Jaclyn Joyce, Regenold, Jonathan, Akhavanrezayat, Amir, Karaca, Irmak, Khojasteh Jafari, Hassan, Yavari, Negin, Matsumiya, Wataru, Yasar, Cigdem, Than, Ngoc Tuong Trong, Uludag, Gunay, Do, Diana, Ghoraba, Hashem, Nguyen, Quan Dong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9664919/
https://www.ncbi.nlm.nih.gov/pubmed/36389637
http://dx.doi.org/10.2147/OPTH.S382207
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author Mobasserian, Azadeh
Zaidi, Moosa
Halim, Sohail
Hwang, Jaclyn Joyce
Regenold, Jonathan
Akhavanrezayat, Amir
Karaca, Irmak
Khojasteh Jafari, Hassan
Yavari, Negin
Matsumiya, Wataru
Yasar, Cigdem
Than, Ngoc Tuong Trong
Uludag, Gunay
Do, Diana
Ghoraba, Hashem
Nguyen, Quan Dong
author_facet Mobasserian, Azadeh
Zaidi, Moosa
Halim, Sohail
Hwang, Jaclyn Joyce
Regenold, Jonathan
Akhavanrezayat, Amir
Karaca, Irmak
Khojasteh Jafari, Hassan
Yavari, Negin
Matsumiya, Wataru
Yasar, Cigdem
Than, Ngoc Tuong Trong
Uludag, Gunay
Do, Diana
Ghoraba, Hashem
Nguyen, Quan Dong
author_sort Mobasserian, Azadeh
collection PubMed
description PURPOSE: Diopsys(®) NOVA fixed-luminance flicker full-field electroretinogram (ffERG) device is a potential adjunct to conventional flicker ffERG testing for assessing cone cell function. Magnitude of measured electrical response is known to vary with pupil size in conventional ffERG testing. The index study characterizes the relationship between magnitude of measured electrical activity and pupil size, both pupil diameter and pupil area, for this device. METHODS: Seventeen patients (34 eyes) with no known ocular diseases were enrolled in the study. Electrophysiologic function of cone cells was evaluated using fixed-luminance flicker ffERG before and after dilation. Linear regression models, with inter-eye correlations controlled as fixed-effects, were used to characterize the effect of pupil dilation on the magnitude of the measured responses. RESULTS: Mean age of study patients was 33.5 (standard deviation 7.4 years), and 35.3% of the subjects were female. Mean value of electrical response magnitude was 10.07±2.79µV before dilation and 15.30±4.08µV after dilation. The correlations of ERG magnitude with pupil diameter and with pupil area were not significant for either dilated or undilated eyes considered separately but were highly significant (p<0.001) for dilated and undilated eyes considered in aggregate. ERG magnitude tended to increase by 1.08 µV for every 1 mm increase in pupillary diameter. CONCLUSION: An increase in pupil size, both pupil diameter and pupil area, is significantly associated with an increase in flicker ffERG magnitude recorded by the Diopsys device, suggesting that pupil size should be measured and considered when making clinical judgments based on the flicker ffERGs recorded by the device, and that pupil size-specific reference ranges could improve the clinical utility of the device.
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spelling pubmed-96649192022-11-15 Effect of Pupil Size on Fixed-Luminance Flicker Full-Field Electroretinogram Magnitude Mobasserian, Azadeh Zaidi, Moosa Halim, Sohail Hwang, Jaclyn Joyce Regenold, Jonathan Akhavanrezayat, Amir Karaca, Irmak Khojasteh Jafari, Hassan Yavari, Negin Matsumiya, Wataru Yasar, Cigdem Than, Ngoc Tuong Trong Uludag, Gunay Do, Diana Ghoraba, Hashem Nguyen, Quan Dong Clin Ophthalmol Original Research PURPOSE: Diopsys(®) NOVA fixed-luminance flicker full-field electroretinogram (ffERG) device is a potential adjunct to conventional flicker ffERG testing for assessing cone cell function. Magnitude of measured electrical response is known to vary with pupil size in conventional ffERG testing. The index study characterizes the relationship between magnitude of measured electrical activity and pupil size, both pupil diameter and pupil area, for this device. METHODS: Seventeen patients (34 eyes) with no known ocular diseases were enrolled in the study. Electrophysiologic function of cone cells was evaluated using fixed-luminance flicker ffERG before and after dilation. Linear regression models, with inter-eye correlations controlled as fixed-effects, were used to characterize the effect of pupil dilation on the magnitude of the measured responses. RESULTS: Mean age of study patients was 33.5 (standard deviation 7.4 years), and 35.3% of the subjects were female. Mean value of electrical response magnitude was 10.07±2.79µV before dilation and 15.30±4.08µV after dilation. The correlations of ERG magnitude with pupil diameter and with pupil area were not significant for either dilated or undilated eyes considered separately but were highly significant (p<0.001) for dilated and undilated eyes considered in aggregate. ERG magnitude tended to increase by 1.08 µV for every 1 mm increase in pupillary diameter. CONCLUSION: An increase in pupil size, both pupil diameter and pupil area, is significantly associated with an increase in flicker ffERG magnitude recorded by the Diopsys device, suggesting that pupil size should be measured and considered when making clinical judgments based on the flicker ffERGs recorded by the device, and that pupil size-specific reference ranges could improve the clinical utility of the device. Dove 2022-11-11 /pmc/articles/PMC9664919/ /pubmed/36389637 http://dx.doi.org/10.2147/OPTH.S382207 Text en © 2022 Mobasserian et al. https://creativecommons.org/licenses/by-nc/3.0/This work is published and licensed by Dove Medical Press Limited. The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/ (https://creativecommons.org/licenses/by-nc/3.0/) ). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed. For permission for commercial use of this work, please see paragraphs 4.2 and 5 of our Terms (https://www.dovepress.com/terms.php).
spellingShingle Original Research
Mobasserian, Azadeh
Zaidi, Moosa
Halim, Sohail
Hwang, Jaclyn Joyce
Regenold, Jonathan
Akhavanrezayat, Amir
Karaca, Irmak
Khojasteh Jafari, Hassan
Yavari, Negin
Matsumiya, Wataru
Yasar, Cigdem
Than, Ngoc Tuong Trong
Uludag, Gunay
Do, Diana
Ghoraba, Hashem
Nguyen, Quan Dong
Effect of Pupil Size on Fixed-Luminance Flicker Full-Field Electroretinogram Magnitude
title Effect of Pupil Size on Fixed-Luminance Flicker Full-Field Electroretinogram Magnitude
title_full Effect of Pupil Size on Fixed-Luminance Flicker Full-Field Electroretinogram Magnitude
title_fullStr Effect of Pupil Size on Fixed-Luminance Flicker Full-Field Electroretinogram Magnitude
title_full_unstemmed Effect of Pupil Size on Fixed-Luminance Flicker Full-Field Electroretinogram Magnitude
title_short Effect of Pupil Size on Fixed-Luminance Flicker Full-Field Electroretinogram Magnitude
title_sort effect of pupil size on fixed-luminance flicker full-field electroretinogram magnitude
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9664919/
https://www.ncbi.nlm.nih.gov/pubmed/36389637
http://dx.doi.org/10.2147/OPTH.S382207
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