Purpose: To systematically investigate the central, paracentral, and peripheral endothelial cell density (ECD) in normal human corneas.
Design: Observational case series and experimental study.
Methods: Noncontact specular microscopy was undertaken to determine the ECD of the central, paracentral (2.7 +/- 0.2 mm from center) and peripheral (4.7 +/- 0.2 mm from center) regions of the cornea of 48 normal eyes. The ECDs of central and peripheral regions were also determined with contact specular microscopy in 21 normal eyes and a group of 30 Optisol-GS eye bank corneas were evaluated with alizarin red stain. Histologic ECD of 13 Optisol-GS stored corneas were also determined.
Results: Paracentral and peripheral ECD measured with the noncontact specular microscope were 5.8% (P <.01) and 9.6% (P <.001) increased compared with central ECD. Superior peripheral ECD was increased compared with the other three peripheral quadrants (P <.05) and was 15.9% higher than central ECD. Contact specular microscopy showed an increase of 8.9% in the peripheral ECD from the center. Alizarin red stained corneas confirmed the specular microscopy numbers with a 9.2% increase in the paracentral region, and a 17.2% increase in the peripheral region. Histological cross sections of human corneas also showed a 22.9% increase in peripheral ECD compared with the central region.
Conclusions: The human cornea has an increased ECD in the paracentral and peripheral regions of cornea compared with the central region. The superior peripheral region of the corneal endothelium has the largest increase in ECD. These data on normal endothelial cell distribution in the human cornea are especially significant as they relate to new surgical techniques and endothelial wound repair.
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http://dx.doi.org/10.1016/s0002-9394(02)02237-7 | DOI Listing |
Sci Rep
November 2024
Department of MRI, Shaanxi Provincial People's Hospital, Xi'an, 710068, China.
Int J Retina Vitreous
November 2024
Orbit Ophthalmo Learning, Salvador, Brazil.
Design: A retrospective, cross-sectional image analysis using a convenience sample.
Subjects: Five cases selected based on the availability of comprehensive imaging data.
Methods: This study involved a retrospective review of images from five cases, focusing on the use of retinal monochromatic blue light reflectance (BLR) imaging to detect non-perfusion areas.
J Optom
October 2023
Ocular Surface and Contact Lens Research Laboratory, Faculty of Optics and Optometry, Universidade de Santiago de Compostela, Spain; Clínica Oftalmológica Dr. Parafita, Ribeira, Spain.
Purpose: To study topographic epithelial and total corneal thickness changes in myopic subjects undergoing successful orthokeratology treatment in connection with the objective assessment of contact lens decentration.
Methods: A prospective-observational and non-randomized study in 32 Caucasian myopic eyes undergoing Ortho-k for 3 months. Total, epithelial, and stromal thicknesses were studied before and after Ortho-k treatment, using optical coherence tomography with anterior segment application software.
Indian J Ophthalmol
January 2025
Tianjin Key Laboratory of Retinal Functions and Diseases, Tianjin, China.
Environ Health
October 2024
Centre de recherche interdisciplinaire sur le bien-être, la santé, la société et l'environnement (CINBIOSE), CP 8888, Université du Québec À Montréal, Succ. Centreville, Montréal, Québec, H3C 3P8, Canada.
Background: Between 1962 and 1975, a chlor-alkali plant in Canada discharged approximately 9 metric tons of mercury (Hg) into the Wabigoon River. Over the following decades, biomarkers of Hg exposure of persons from Grassy Narrows First Nation (Asubpeeschoseewagong Anishinabek), located downriver from the discharge, reflected Hg concentrations in fish. Hg exposure is known to target the calcarine fissure, resulting in visual field (VF) loss.
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