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Biomedical subjects

L Missotten

Publications and source records attributed to L Missotten.

220 records · Page 13Linked to original sources

Histology of rabbit corneas after 10-diopter photorefractive keratectomy for hyperopia.

PURPOSE: To measure histological changes in the optical and transition zones of rabbit corneas treated with excimer laser photorefractive keratectomy (PRK) to correct hyperopia and to estimate the optical effect of these changes on the induced power profile. METHODS: Corrections of +10.00 D were ablated by means of a Questek 2620 excimer laser and rotational masks on 8 rabbit eyes. On frozen sections of 4 stained corneas and historesine sections of 4 other corneas, stromal, new stromal, epithelial, and total corneal thickness were measured on four significant locations. The optical effect of each parameter on the axial power profile was estimated in a computer simulation. RESULTS: Mean stromal regrowth was 50% of the ablated tissue. Deposition was lenticular and could account for -5.00 D of regression. Stromal thickening without regrowth occurred in the optical zone and over the shoulder, causing augmentation instead of regression. The epithelium thickened 20% in the mid-transition zone and was thinner over the shoulder, accounting for 1.00 D of regression and an increase in asphericity in the optical zone. CONCLUSION: In these hyperopic rabbit PRK corneas, stromal regrowth and epithelial hyperplasia were lenticular and contributed to regression of the optical effect. Stromal swelling around interrupted collagen lamellae seemed to occur, augmenting the optical effect. The epithelium filters high spatial frequency stromal irregularities.

Animals↗

Is the corneal contour influenced by a tension in the superficial epithelial cells? A new hypothesis.

BACKGROUND: The corneal epithelium has a limited capacity to smooth stromal irregularities by compensatory variations in epithelial thickness. METHODS: Cuts were made in fixed and nonfixed human and rabbit corneal epithelium with an excimer laser, and undulations were produced in the anterior stromal lining of rabbit corneas by inducing hypotony of the eye balls. RESULTS: A retraction of the nonfixed epithelium at the edges of the cuts, and immediate small variations in epithelial thickness partly compensating for the induced irregularities in the stroma were observed. CONCLUSIONS: A tension between the superficial epithelial cells could explain these phenomena. The balance between the pressure exerted by the superficial cell layer under tension and the epithelial growth pressure might be the factor determining the thickness of the epithelium an any point of the cornea in steady state conditions. A preliminary mathematical model and consequences for refractive surgery are presented.

Actin Cytoskeleton↗

On the safety of 193-nanometer excimer laser refractive corneal surgery.

Current literature on the potential hazards of 193-nanometer excimer laser corneal surgery is reviewed. The healing process of the different layers involved in the procedure is examined. The epithelium regenerates without delay or abnormal adhesion. A certain loss of corneal transparency seems to be only a short-term complication. The phototoxic risk for the endothelium and the lens has not yet been fully investigated. This risk is presently thought to be minimal. Factors such as improper corneal centering could lead to degradation of best corrected visual acuity or to loss of contrast sensitivity. Results of the first clinical trials indicate that vision quality does not appear to be adversely affected. The last section reviews studies designed to investigate the mutagenicity and cytotoxicity of 193-nanometer UV radiation. In vivo experiments could find no evidence of cellular transformation.

Animals↗