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Corneal Segmentation Analysis Increases Glaucoma Diagnostic Ability of Optic Nerve Head Examination, Heidelberg Retina Tomograph's Moorfield's Regression Analysis, and Glaucoma Probability Score

Purpose. To study whether a corneal thickness segmentation model, consisting in a central circular zone of 1 mm radius centered at the corneal apex (zone I) and five concentric rings of 1 mm width (moving outwards: zones II to VI), could boost the diagnostic accuracy of Heidelberg Retina Tomograph&#...

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Autores principales: Saenz-Frances, F., Jañez, L., Berrozpe-Villabona, C., Borrego-Sanz, L., Morales-Fernández, L., Acebal-Montero, A., Mendez-Hernandez, C. D., Martinez-de-la-Casa, J. M., Santos-Bueso, E., Garcia-Sanchez, J., Garcia-Feijoo, J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4477440/
https://www.ncbi.nlm.nih.gov/pubmed/26180641
http://dx.doi.org/10.1155/2015/215951
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author Saenz-Frances, F.
Jañez, L.
Berrozpe-Villabona, C.
Borrego-Sanz, L.
Morales-Fernández, L.
Acebal-Montero, A.
Mendez-Hernandez, C. D.
Martinez-de-la-Casa, J. M.
Santos-Bueso, E.
Garcia-Sanchez, J.
Garcia-Feijoo, J.
author_facet Saenz-Frances, F.
Jañez, L.
Berrozpe-Villabona, C.
Borrego-Sanz, L.
Morales-Fernández, L.
Acebal-Montero, A.
Mendez-Hernandez, C. D.
Martinez-de-la-Casa, J. M.
Santos-Bueso, E.
Garcia-Sanchez, J.
Garcia-Feijoo, J.
author_sort Saenz-Frances, F.
collection PubMed
description Purpose. To study whether a corneal thickness segmentation model, consisting in a central circular zone of 1 mm radius centered at the corneal apex (zone I) and five concentric rings of 1 mm width (moving outwards: zones II to VI), could boost the diagnostic accuracy of Heidelberg Retina Tomograph's (HRT's) MRA and GPS. Material and Methods. Cross-sectional study. 121 healthy volunteers and 125 patients with primary open-angle glaucoma. Six binary multivariate logistic regression models were constructed (MOD-A1, MOD-A2, MOD-B1, MOD-B2, MOD-C1, and MOD-C2). The dependent variable was the presence of glaucoma. In MOD-A1, the predictor was the result (presence of glaucoma) of the analysis of the stereophotography of the optic nerve head (ONH). In MOD-B1 and MOD-C1, the predictor was the result of the MRA and GPS, respectively. In MOD-B2 and MOD-C2, the predictors were the same along with corneal variables: central, overall, and zones I to VI thicknesses. This scheme was reproduced for model MOD-A2 (stereophotography along with corneal variables). Models were compared using the area under the receiver operator characteristic curve (AUC). Results. MOD-A1-AUC: 0.771; MOD-A2-AUC: 0.88; MOD-B1-AUC: 0.736; MOD-B2-AUC: 0.845; MOD-C1-AUC: 0.712; MOD-C2-AUC: 0.838. Conclusion. Corneal thickness variables enhance ONH assessment and HRT's MRA and GPS diagnostic capacity.
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spelling pubmed-44774402015-07-15 Corneal Segmentation Analysis Increases Glaucoma Diagnostic Ability of Optic Nerve Head Examination, Heidelberg Retina Tomograph's Moorfield's Regression Analysis, and Glaucoma Probability Score Saenz-Frances, F. Jañez, L. Berrozpe-Villabona, C. Borrego-Sanz, L. Morales-Fernández, L. Acebal-Montero, A. Mendez-Hernandez, C. D. Martinez-de-la-Casa, J. M. Santos-Bueso, E. Garcia-Sanchez, J. Garcia-Feijoo, J. J Ophthalmol Research Article Purpose. To study whether a corneal thickness segmentation model, consisting in a central circular zone of 1 mm radius centered at the corneal apex (zone I) and five concentric rings of 1 mm width (moving outwards: zones II to VI), could boost the diagnostic accuracy of Heidelberg Retina Tomograph's (HRT's) MRA and GPS. Material and Methods. Cross-sectional study. 121 healthy volunteers and 125 patients with primary open-angle glaucoma. Six binary multivariate logistic regression models were constructed (MOD-A1, MOD-A2, MOD-B1, MOD-B2, MOD-C1, and MOD-C2). The dependent variable was the presence of glaucoma. In MOD-A1, the predictor was the result (presence of glaucoma) of the analysis of the stereophotography of the optic nerve head (ONH). In MOD-B1 and MOD-C1, the predictor was the result of the MRA and GPS, respectively. In MOD-B2 and MOD-C2, the predictors were the same along with corneal variables: central, overall, and zones I to VI thicknesses. This scheme was reproduced for model MOD-A2 (stereophotography along with corneal variables). Models were compared using the area under the receiver operator characteristic curve (AUC). Results. MOD-A1-AUC: 0.771; MOD-A2-AUC: 0.88; MOD-B1-AUC: 0.736; MOD-B2-AUC: 0.845; MOD-C1-AUC: 0.712; MOD-C2-AUC: 0.838. Conclusion. Corneal thickness variables enhance ONH assessment and HRT's MRA and GPS diagnostic capacity. Hindawi Publishing Corporation 2015 2015-05-27 /pmc/articles/PMC4477440/ /pubmed/26180641 http://dx.doi.org/10.1155/2015/215951 Text en Copyright © 2015 F. Saenz-Frances et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Saenz-Frances, F.
Jañez, L.
Berrozpe-Villabona, C.
Borrego-Sanz, L.
Morales-Fernández, L.
Acebal-Montero, A.
Mendez-Hernandez, C. D.
Martinez-de-la-Casa, J. M.
Santos-Bueso, E.
Garcia-Sanchez, J.
Garcia-Feijoo, J.
Corneal Segmentation Analysis Increases Glaucoma Diagnostic Ability of Optic Nerve Head Examination, Heidelberg Retina Tomograph's Moorfield's Regression Analysis, and Glaucoma Probability Score
title Corneal Segmentation Analysis Increases Glaucoma Diagnostic Ability of Optic Nerve Head Examination, Heidelberg Retina Tomograph's Moorfield's Regression Analysis, and Glaucoma Probability Score
title_full Corneal Segmentation Analysis Increases Glaucoma Diagnostic Ability of Optic Nerve Head Examination, Heidelberg Retina Tomograph's Moorfield's Regression Analysis, and Glaucoma Probability Score
title_fullStr Corneal Segmentation Analysis Increases Glaucoma Diagnostic Ability of Optic Nerve Head Examination, Heidelberg Retina Tomograph's Moorfield's Regression Analysis, and Glaucoma Probability Score
title_full_unstemmed Corneal Segmentation Analysis Increases Glaucoma Diagnostic Ability of Optic Nerve Head Examination, Heidelberg Retina Tomograph's Moorfield's Regression Analysis, and Glaucoma Probability Score
title_short Corneal Segmentation Analysis Increases Glaucoma Diagnostic Ability of Optic Nerve Head Examination, Heidelberg Retina Tomograph's Moorfield's Regression Analysis, and Glaucoma Probability Score
title_sort corneal segmentation analysis increases glaucoma diagnostic ability of optic nerve head examination, heidelberg retina tomograph's moorfield's regression analysis, and glaucoma probability score
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4477440/
https://www.ncbi.nlm.nih.gov/pubmed/26180641
http://dx.doi.org/10.1155/2015/215951
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