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Particular Anatomy of the Hyperopic Eye and Potential Clinical Implications

Background and Objectives: Hyperopia is a refractive error which affects cognitive and social development if uncorrected and raises the risk of primary angle-closure glaucoma (PACG). Materials and Methods: The study included only the right eye—40 hyperopic eyes in the study group (spherical equivale...

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Autores principales: Marinescu, Maria-Cristina, Dascalescu, Dana-Margareta-Cornelia, Constantin, Mihaela-Monica, Coviltir, Valeria, Potop, Vasile, Stanila, Dan, Constantin, Farah, Alexandrescu, Cristina, Ciuluvica, Radu-Constantin, Voinea, Liliana-Mary
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10536421/
https://www.ncbi.nlm.nih.gov/pubmed/37763779
http://dx.doi.org/10.3390/medicina59091660
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author Marinescu, Maria-Cristina
Dascalescu, Dana-Margareta-Cornelia
Constantin, Mihaela-Monica
Coviltir, Valeria
Potop, Vasile
Stanila, Dan
Constantin, Farah
Alexandrescu, Cristina
Ciuluvica, Radu-Constantin
Voinea, Liliana-Mary
author_facet Marinescu, Maria-Cristina
Dascalescu, Dana-Margareta-Cornelia
Constantin, Mihaela-Monica
Coviltir, Valeria
Potop, Vasile
Stanila, Dan
Constantin, Farah
Alexandrescu, Cristina
Ciuluvica, Radu-Constantin
Voinea, Liliana-Mary
author_sort Marinescu, Maria-Cristina
collection PubMed
description Background and Objectives: Hyperopia is a refractive error which affects cognitive and social development if uncorrected and raises the risk of primary angle-closure glaucoma (PACG). Materials and Methods: The study included only the right eye—40 hyperopic eyes in the study group (spherical equivalent (SE) under pharmacological cycloplegia over 0.50 D), 34 emmetropic eyes in the control group (SE between −0.50 D and +0.50 D). A complete ophthalmological evaluation was performed, including autorefractometry to measure SE, and additionally we performed Ocular Response Analyser: Corneal Hysteresis (CH), Corneal Resistance Factor (CRF); specular microscopy: Endothelial cell density (CD), Cell variability (CV), Hexagonality (Hex), Aladdin biometry: Anterior Chamber Depth (ACD), Axial Length (AL), Central Corneal Thickness (CCT). IBM SPSS 26 was used for statistical analysis. Results: The mean age of the entire cohort was 22.93 years (SD ± 12.069), 66.22% being female and 33.78% male. The hyperopic eyes had significantly lower AL, ACD, higher SE, CH, CRF. In the hyperopia group, there are significant, negative correlations between CH and AL (r −0.335), CRF and AL (r −0.334), SE–AL (r −0.593), ACD and CV (r −0.528), CV and CRF (r −0.438), CH (r −0.379), and positive correlations between CCT and CH (r 0.393) or CRF (r 0.435), CD and ACD (r 0.509) or CH (0.384). Age is significantly, negatively correlated with ACD (r −0.447), CH (r −0.544), CRF (r −0.539), CD (r −0.546) and positively with CV (r 0.470). Conclusions: Our study suggests a particular biomechanical behavior of the cornea in hyperopia, in relation with morphological and endothelial parameters. Moreover, the negative correlation between age and ACD suggests a shallower anterior chamber as patients age, increasing the risk for PACG.
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spelling pubmed-105364212023-09-29 Particular Anatomy of the Hyperopic Eye and Potential Clinical Implications Marinescu, Maria-Cristina Dascalescu, Dana-Margareta-Cornelia Constantin, Mihaela-Monica Coviltir, Valeria Potop, Vasile Stanila, Dan Constantin, Farah Alexandrescu, Cristina Ciuluvica, Radu-Constantin Voinea, Liliana-Mary Medicina (Kaunas) Article Background and Objectives: Hyperopia is a refractive error which affects cognitive and social development if uncorrected and raises the risk of primary angle-closure glaucoma (PACG). Materials and Methods: The study included only the right eye—40 hyperopic eyes in the study group (spherical equivalent (SE) under pharmacological cycloplegia over 0.50 D), 34 emmetropic eyes in the control group (SE between −0.50 D and +0.50 D). A complete ophthalmological evaluation was performed, including autorefractometry to measure SE, and additionally we performed Ocular Response Analyser: Corneal Hysteresis (CH), Corneal Resistance Factor (CRF); specular microscopy: Endothelial cell density (CD), Cell variability (CV), Hexagonality (Hex), Aladdin biometry: Anterior Chamber Depth (ACD), Axial Length (AL), Central Corneal Thickness (CCT). IBM SPSS 26 was used for statistical analysis. Results: The mean age of the entire cohort was 22.93 years (SD ± 12.069), 66.22% being female and 33.78% male. The hyperopic eyes had significantly lower AL, ACD, higher SE, CH, CRF. In the hyperopia group, there are significant, negative correlations between CH and AL (r −0.335), CRF and AL (r −0.334), SE–AL (r −0.593), ACD and CV (r −0.528), CV and CRF (r −0.438), CH (r −0.379), and positive correlations between CCT and CH (r 0.393) or CRF (r 0.435), CD and ACD (r 0.509) or CH (0.384). Age is significantly, negatively correlated with ACD (r −0.447), CH (r −0.544), CRF (r −0.539), CD (r −0.546) and positively with CV (r 0.470). Conclusions: Our study suggests a particular biomechanical behavior of the cornea in hyperopia, in relation with morphological and endothelial parameters. Moreover, the negative correlation between age and ACD suggests a shallower anterior chamber as patients age, increasing the risk for PACG. MDPI 2023-09-14 /pmc/articles/PMC10536421/ /pubmed/37763779 http://dx.doi.org/10.3390/medicina59091660 Text en © 2023 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
Marinescu, Maria-Cristina
Dascalescu, Dana-Margareta-Cornelia
Constantin, Mihaela-Monica
Coviltir, Valeria
Potop, Vasile
Stanila, Dan
Constantin, Farah
Alexandrescu, Cristina
Ciuluvica, Radu-Constantin
Voinea, Liliana-Mary
Particular Anatomy of the Hyperopic Eye and Potential Clinical Implications
title Particular Anatomy of the Hyperopic Eye and Potential Clinical Implications
title_full Particular Anatomy of the Hyperopic Eye and Potential Clinical Implications
title_fullStr Particular Anatomy of the Hyperopic Eye and Potential Clinical Implications
title_full_unstemmed Particular Anatomy of the Hyperopic Eye and Potential Clinical Implications
title_short Particular Anatomy of the Hyperopic Eye and Potential Clinical Implications
title_sort particular anatomy of the hyperopic eye and potential clinical implications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10536421/
https://www.ncbi.nlm.nih.gov/pubmed/37763779
http://dx.doi.org/10.3390/medicina59091660
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