Oxygen free radical damage in the cornea after excimer laser therapy

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Oxygen free radical damage in the cornea after excimer laser therapy.

AIMS/BACKGROUND To evaluate the extent of oxygen radical damage in the cornea after excimer laser ablation. METHODS The 193 nm argon fluoride excimer laser was programmed for an average fluence of 150 mJ/cm2, with a firing rate of 5 Hz and an ablation zone diameter of 6 mm. Phototherapeutic keratectomy was performed to remove 30 microns of epithelium and 50 microns of stroma from the corneas ...

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HSP47 expression in cornea after excimer laser photoablation.

PURPOSE The expression of heat shock protein 47 (HSP47) was observed histologically to investigate the spatial and chronological effects of excimer laser photoablation. HSP47 expression after radial keratotomy (RK) was also investigated and compared with the effects after excimer laser photoablation. METHOD Twenty-eight male rabbits were used. The rabbits were divided with two groups and trea...

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Analysis of glycosaminoglycans in rabbit cornea after excimer laser keratectomy.

BACKGROUND/AIMS The biochemical basis for the development of subepithelial opacity of the cornea after excimer laser keratectomy has yet to be fully defined. The aim of this study was to evaluate the alterations of glycosaminoglycans (GAGs) after excimer laser keratectomy. METHODS Rabbit corneas were harvested on days 5, 10, 20, and 30 after excimer laser photoablation. The amount of main dis...

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Acute ultrastructural changes of cornea after excimer laser ablation.

Corneal ultrastructural changes induced by an argon fluoride excimer laser using different parameters were investigated. Twenty-eight rabbit corneas were ablated at light doses per pulse and repetition rates ranging from 25-800 mJ/cm2 and 1-100 Hz, respectively, at four different total light doses (25-150 J/cm2). Transmission electron microscopy showed that corneal ablations done at subthreshol...

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ژورنال

عنوان ژورنال: British Journal of Ophthalmology

سال: 1997

ISSN: 0007-1161

DOI: 10.1136/bjo.81.2.141