PURPOSE: To determine differences in riboflavin concentration in the anterior, intermediate, and posterior stroma after 3 corneal cross-linking imbibition techniques (standard epithelial [epi]-off, epi-on, and iontophoresis-assisted administration) of 0.1% riboflavin. DESIGN: Experimental laboratory investigation of human cadaver corneas not suitable for transplantation. METHODS: Ten corneas underwent imbibition with epi-on (n = 3), epi-off (n = 3), iontophoresis (n = 3), and saline exposure (control; n = 1). Femtosecond laser was used to produce 3 8-mm discs of the superficial (0-150 μm), intermediate (150-300 μm), and deep stroma (>300 μm). Riboflavin concentration was measured with high-performance liquid chromatography. The main out...
PURPOSE: To compare biomechanical effect, riboflavin penetration and distribution in transepithelial...
PURPOSE: To compare biomechanical effect, riboflavin penetration and distribution in transepithelial...
<b>AIM:</b>To evaluate the enrichment of riboflavin in the corneal stroma after intracameral injecti...
PURPOSE: To determine differences in riboflavin concentration in the anterior, intermediate, and pos...
PURPOSE: To evaluate intrastromal concentrations of riboflavin with and without epithelium to en...
PURPOSE: To evaluate intrastromal concentrations of riboflavin with and without epithelium to en...
PURPOSE: To evaluate intrastromal concentrations of riboflavin with and without epithelium to en...
PURPOSE: To evaluate intrastromal concentrations of riboflavin with and without epithelium to en...
PURPOSE: To evaluate the efficacy of coulomb-controlled iontophoresis (CCI) for delivery of riboflav...
PURPOSE: To evaluate the efficacy of coulomb-controlled iontophoresis (CCI) for delivery of riboflav...
Purpose: To indirectly measure stromal riboflavin penetration using commercially available riboflavi...
Purpose: To indirectly measure stromal riboflavin penetration using commercially available riboflavi...
Purpose: To indirectly measure stromal riboflavin penetration using commercially available riboflavi...
Purpose: To indirectly measure stromal riboflavin penetration using commercially available riboflavi...
Purpose To determine the riboflavin concentration in the posterior corneal stroma, Descemet's mem...
PURPOSE: To compare biomechanical effect, riboflavin penetration and distribution in transepithelial...
PURPOSE: To compare biomechanical effect, riboflavin penetration and distribution in transepithelial...
<b>AIM:</b>To evaluate the enrichment of riboflavin in the corneal stroma after intracameral injecti...
PURPOSE: To determine differences in riboflavin concentration in the anterior, intermediate, and pos...
PURPOSE: To evaluate intrastromal concentrations of riboflavin with and without epithelium to en...
PURPOSE: To evaluate intrastromal concentrations of riboflavin with and without epithelium to en...
PURPOSE: To evaluate intrastromal concentrations of riboflavin with and without epithelium to en...
PURPOSE: To evaluate intrastromal concentrations of riboflavin with and without epithelium to en...
PURPOSE: To evaluate the efficacy of coulomb-controlled iontophoresis (CCI) for delivery of riboflav...
PURPOSE: To evaluate the efficacy of coulomb-controlled iontophoresis (CCI) for delivery of riboflav...
Purpose: To indirectly measure stromal riboflavin penetration using commercially available riboflavi...
Purpose: To indirectly measure stromal riboflavin penetration using commercially available riboflavi...
Purpose: To indirectly measure stromal riboflavin penetration using commercially available riboflavi...
Purpose: To indirectly measure stromal riboflavin penetration using commercially available riboflavi...
Purpose To determine the riboflavin concentration in the posterior corneal stroma, Descemet's mem...
PURPOSE: To compare biomechanical effect, riboflavin penetration and distribution in transepithelial...
PURPOSE: To compare biomechanical effect, riboflavin penetration and distribution in transepithelial...
<b>AIM:</b>To evaluate the enrichment of riboflavin in the corneal stroma after intracameral injecti...