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A Precise Method to Evaluate 360 Degree Measures of Optic Cup and Disc Morphology in an African American Cohort and Its Genetic Applications

(1) Background: Vertical cup-to-disc ratio (CDR) is an important measure for evaluating damage to the optic nerve head (ONH) in glaucoma patients. However, this measure often does not fully capture the irregular cupping observed in glaucomatous nerves. We developed and evaluated a method to measure...

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Autores principales: Addis, Victoria, Chen, Min, Zorger, Richard, Salowe, Rebecca, Daniel, Ebenezer, Lee, Roy, Pistilli, Maxwell, Gao, Jinpeng, Maguire, Maureen G., Chan, Lilian, Gudiseva, Harini V., Zenebe-Gete, Selam, Merriam, Sayaka, Smith, Eli J., Martin, Revell, Parker Ostroff, Candace, Gee, James C., Cui, Qi N., Miller-Ellis, Eydie, O’Brien, Joan M., Sankar, Prithvi S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8701339/
https://www.ncbi.nlm.nih.gov/pubmed/34946910
http://dx.doi.org/10.3390/genes12121961
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author Addis, Victoria
Chen, Min
Zorger, Richard
Salowe, Rebecca
Daniel, Ebenezer
Lee, Roy
Pistilli, Maxwell
Gao, Jinpeng
Maguire, Maureen G.
Chan, Lilian
Gudiseva, Harini V.
Zenebe-Gete, Selam
Merriam, Sayaka
Smith, Eli J.
Martin, Revell
Parker Ostroff, Candace
Gee, James C.
Cui, Qi N.
Miller-Ellis, Eydie
O’Brien, Joan M.
Sankar, Prithvi S.
author_facet Addis, Victoria
Chen, Min
Zorger, Richard
Salowe, Rebecca
Daniel, Ebenezer
Lee, Roy
Pistilli, Maxwell
Gao, Jinpeng
Maguire, Maureen G.
Chan, Lilian
Gudiseva, Harini V.
Zenebe-Gete, Selam
Merriam, Sayaka
Smith, Eli J.
Martin, Revell
Parker Ostroff, Candace
Gee, James C.
Cui, Qi N.
Miller-Ellis, Eydie
O’Brien, Joan M.
Sankar, Prithvi S.
author_sort Addis, Victoria
collection PubMed
description (1) Background: Vertical cup-to-disc ratio (CDR) is an important measure for evaluating damage to the optic nerve head (ONH) in glaucoma patients. However, this measure often does not fully capture the irregular cupping observed in glaucomatous nerves. We developed and evaluated a method to measure cup-to-disc ratio (CDR) at all 360 degrees of the ONH. (2) Methods: Non-physician graders from the Scheie Reading Center outlined the cup and disc on digital stereo color disc images from African American patients enrolled in the Primary Open-Angle African American Glaucoma Genetics (POAAGG) study. After converting the resultant coordinates into polar representation, the CDR at each 360-degree location of the ONH was obtained. We compared grader VCDR values with clinical VCDR values, using Spearman correlation analysis, and validated significant genetic associations with clinical VCDR, using grader VCDR values. (3) Results: Graders delineated outlines of the cup contour and disc boundaries twice in each of 1815 stereo disc images. For both cases and controls, the mean CDR was highest at the horizontal bisector, particularly in the temporal region, as compared to other degree locations. There was a good correlation between grader CDR at the vertical bisector and clinical VCDR (Spearman Correlation OD: r = 0.78 [95% CI: 0.76–0.79]). An SNP in the MPDZ gene, associated with clinical VCDR in a prior genome-wide association study, showed a significant association with grader VCDR (p = 0.01) and grader CDR area ratio (p = 0.02). (4) Conclusions: The CDR of both glaucomatous and non-glaucomatous eyes varies by degree location, with the highest measurements in the temporal region of the eye. This method can be useful for capturing innate eccentric ONH morphology, tracking disease progression, and identifying genetic associations.
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spelling pubmed-87013392021-12-24 A Precise Method to Evaluate 360 Degree Measures of Optic Cup and Disc Morphology in an African American Cohort and Its Genetic Applications Addis, Victoria Chen, Min Zorger, Richard Salowe, Rebecca Daniel, Ebenezer Lee, Roy Pistilli, Maxwell Gao, Jinpeng Maguire, Maureen G. Chan, Lilian Gudiseva, Harini V. Zenebe-Gete, Selam Merriam, Sayaka Smith, Eli J. Martin, Revell Parker Ostroff, Candace Gee, James C. Cui, Qi N. Miller-Ellis, Eydie O’Brien, Joan M. Sankar, Prithvi S. Genes (Basel) Article (1) Background: Vertical cup-to-disc ratio (CDR) is an important measure for evaluating damage to the optic nerve head (ONH) in glaucoma patients. However, this measure often does not fully capture the irregular cupping observed in glaucomatous nerves. We developed and evaluated a method to measure cup-to-disc ratio (CDR) at all 360 degrees of the ONH. (2) Methods: Non-physician graders from the Scheie Reading Center outlined the cup and disc on digital stereo color disc images from African American patients enrolled in the Primary Open-Angle African American Glaucoma Genetics (POAAGG) study. After converting the resultant coordinates into polar representation, the CDR at each 360-degree location of the ONH was obtained. We compared grader VCDR values with clinical VCDR values, using Spearman correlation analysis, and validated significant genetic associations with clinical VCDR, using grader VCDR values. (3) Results: Graders delineated outlines of the cup contour and disc boundaries twice in each of 1815 stereo disc images. For both cases and controls, the mean CDR was highest at the horizontal bisector, particularly in the temporal region, as compared to other degree locations. There was a good correlation between grader CDR at the vertical bisector and clinical VCDR (Spearman Correlation OD: r = 0.78 [95% CI: 0.76–0.79]). An SNP in the MPDZ gene, associated with clinical VCDR in a prior genome-wide association study, showed a significant association with grader VCDR (p = 0.01) and grader CDR area ratio (p = 0.02). (4) Conclusions: The CDR of both glaucomatous and non-glaucomatous eyes varies by degree location, with the highest measurements in the temporal region of the eye. This method can be useful for capturing innate eccentric ONH morphology, tracking disease progression, and identifying genetic associations. MDPI 2021-12-09 /pmc/articles/PMC8701339/ /pubmed/34946910 http://dx.doi.org/10.3390/genes12121961 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Addis, Victoria
Chen, Min
Zorger, Richard
Salowe, Rebecca
Daniel, Ebenezer
Lee, Roy
Pistilli, Maxwell
Gao, Jinpeng
Maguire, Maureen G.
Chan, Lilian
Gudiseva, Harini V.
Zenebe-Gete, Selam
Merriam, Sayaka
Smith, Eli J.
Martin, Revell
Parker Ostroff, Candace
Gee, James C.
Cui, Qi N.
Miller-Ellis, Eydie
O’Brien, Joan M.
Sankar, Prithvi S.
A Precise Method to Evaluate 360 Degree Measures of Optic Cup and Disc Morphology in an African American Cohort and Its Genetic Applications
title A Precise Method to Evaluate 360 Degree Measures of Optic Cup and Disc Morphology in an African American Cohort and Its Genetic Applications
title_full A Precise Method to Evaluate 360 Degree Measures of Optic Cup and Disc Morphology in an African American Cohort and Its Genetic Applications
title_fullStr A Precise Method to Evaluate 360 Degree Measures of Optic Cup and Disc Morphology in an African American Cohort and Its Genetic Applications
title_full_unstemmed A Precise Method to Evaluate 360 Degree Measures of Optic Cup and Disc Morphology in an African American Cohort and Its Genetic Applications
title_short A Precise Method to Evaluate 360 Degree Measures of Optic Cup and Disc Morphology in an African American Cohort and Its Genetic Applications
title_sort precise method to evaluate 360 degree measures of optic cup and disc morphology in an african american cohort and its genetic applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8701339/
https://www.ncbi.nlm.nih.gov/pubmed/34946910
http://dx.doi.org/10.3390/genes12121961
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