Aim. To evaluate the effect of scleral crosslinking with riboflavin and ultraviolet A (UVA) on scleral tissue structure in vitro. Material and methods. The study was performed on seven porcine cadaver eyes. Two parallel scleral strips were excised from each eyeball; one was subjected to the crosslinking procedure (instillation of 0.1% aqueous solution of riboflavin mononucleotide for 20 min followed by UV irradiation of 3 mW/cm2 for 30 min), and the other was used as control. Scleral structure was evaluated using light (Van Gieson’s stain) and electron microscopy. Special software was used to perform morphometric analysis of the microphotographs. Results. As a result of crosslinking, the average packing density of collagen fibers incr...
Background: Collagen cross-linking of the sclera is a promising approach to strengthen scleral rigid...
BackgroundMyopia is the most common ocular disorder and is mainly caused by axial elongation of the ...
BackgroundMyopia is the most common ocular disorder and is mainly caused by axial elongation of the ...
Purpose. To compare the biomechanical properties of porcine, rabbit, and human sclera before and aft...
To develop methods of collagen cross-linking (CXL) in the sclera for the treatment of progressive my...
To develop methods of collagen cross-linking (CXL) in the sclera for the treatment of progressive my...
<p>Light microscopy photographs illustrating scleras in the control group (A), CL group (B), and NCL...
The dynamics of the change of dimensions (cross-section area) of porcine sclera specimens in the pro...
To examine the effect of riboflavin/UVA corneal crosslinking on stromal ultrastructure and hydrodyna...
To examine the effect of riboflavin/UVA corneal crosslinking on stromal ultrastructure and hydrodyna...
In 2004, it was the first time that Wollensak and Spoerl had applied physical and chemical cross-lin...
Purpose: To examine the effect of riboflavin/UVA corneal crosslinking on stromal ultrastructure and ...
The possibility of increasing the efficiency of light action during scleral collagen riboflavin/UV p...
PURPOSE: To assess ultrastructural stromal modifications in porcine corneas after riboflavin and ult...
To determine the effect of Ultraviolet-A collagen cross-linking with hypo-osmolar and iso-osmolar ri...
Background: Collagen cross-linking of the sclera is a promising approach to strengthen scleral rigid...
BackgroundMyopia is the most common ocular disorder and is mainly caused by axial elongation of the ...
BackgroundMyopia is the most common ocular disorder and is mainly caused by axial elongation of the ...
Purpose. To compare the biomechanical properties of porcine, rabbit, and human sclera before and aft...
To develop methods of collagen cross-linking (CXL) in the sclera for the treatment of progressive my...
To develop methods of collagen cross-linking (CXL) in the sclera for the treatment of progressive my...
<p>Light microscopy photographs illustrating scleras in the control group (A), CL group (B), and NCL...
The dynamics of the change of dimensions (cross-section area) of porcine sclera specimens in the pro...
To examine the effect of riboflavin/UVA corneal crosslinking on stromal ultrastructure and hydrodyna...
To examine the effect of riboflavin/UVA corneal crosslinking on stromal ultrastructure and hydrodyna...
In 2004, it was the first time that Wollensak and Spoerl had applied physical and chemical cross-lin...
Purpose: To examine the effect of riboflavin/UVA corneal crosslinking on stromal ultrastructure and ...
The possibility of increasing the efficiency of light action during scleral collagen riboflavin/UV p...
PURPOSE: To assess ultrastructural stromal modifications in porcine corneas after riboflavin and ult...
To determine the effect of Ultraviolet-A collagen cross-linking with hypo-osmolar and iso-osmolar ri...
Background: Collagen cross-linking of the sclera is a promising approach to strengthen scleral rigid...
BackgroundMyopia is the most common ocular disorder and is mainly caused by axial elongation of the ...
BackgroundMyopia is the most common ocular disorder and is mainly caused by axial elongation of the ...