Purpose. To evaluate corneal thickness changes during pulsed accelerated corneal cross-linking (CXL) for keratoconus using a new isotonic riboflavin formula. Methods. In this prospective, interventional, clinical study patients with grades 1-2 keratoconus (Amsler-Krumeich classification) underwent pulsed accelerated (30 mW/cm(2)) CXL after application of an isotonic riboflavin solution (0.1%) with HPMC for 10 minutes. Central corneal thickness (CCT) measurements were taken using ultrasound pachymetry before and after epithelial removal, after riboflavin soaking, and immediately after completion of UVA treatment. Results. Twenty eyes of 11 patients (4 males, 7 females) were enrolled. Mean patient age was 26 ± 3 (range from 18 to 30 years). N...
Purpose: To assess intraoperative corneal pachymetry in patients undergoing accelerated corneal coll...
Purpose: To assess intraoperative corneal pachymetry in patients undergoing accelerated corneal coll...
Biomechanical reinforcement of the cornea by collagen cross-linking (CXL) using riboflavin and ultra...
Purpose. To evaluate corneal thickness changes during pulsed accelerated corneal cross-linking (CXL)...
PURPOSE To assess intraoperative and postoperative changes in corneal thickness subsequent to rib...
PurposeThe aim of this study is to compare the effect of different riboflavin solutions (hypotonic a...
Background To investigate the efficacy and safety of the retention ring-assisted co...
To study central corneal pachymetric variations during corneal collagen cross-linking (CXL) treatmen...
Purpose: To assess intraoperative corneal pachymetry in patients undergoing accelerated corneal coll...
Objectives: To monitor the corneal thickness change during the dextran-free isotonic riboflavin solu...
The purpose of this study was to evaluate the effectiveness and safety of a novel buffered riboflavi...
The purpose of this study was to evaluate the effectiveness and safety of a novel buffered riboflavi...
Purpose. To report the 12-month outcomes of corneal collagen cross-linking (CXL) with a hypoosmolar ...
Purpose. To evaluate the efficacy and safety of epithelium-on corneal collagen cross-linking (CXL) u...
Purpose: To assess intraoperative corneal pachymetry in patients undergoing accelerated corneal coll...
Purpose: To assess intraoperative corneal pachymetry in patients undergoing accelerated corneal coll...
Purpose: To assess intraoperative corneal pachymetry in patients undergoing accelerated corneal coll...
Biomechanical reinforcement of the cornea by collagen cross-linking (CXL) using riboflavin and ultra...
Purpose. To evaluate corneal thickness changes during pulsed accelerated corneal cross-linking (CXL)...
PURPOSE To assess intraoperative and postoperative changes in corneal thickness subsequent to rib...
PurposeThe aim of this study is to compare the effect of different riboflavin solutions (hypotonic a...
Background To investigate the efficacy and safety of the retention ring-assisted co...
To study central corneal pachymetric variations during corneal collagen cross-linking (CXL) treatmen...
Purpose: To assess intraoperative corneal pachymetry in patients undergoing accelerated corneal coll...
Objectives: To monitor the corneal thickness change during the dextran-free isotonic riboflavin solu...
The purpose of this study was to evaluate the effectiveness and safety of a novel buffered riboflavi...
The purpose of this study was to evaluate the effectiveness and safety of a novel buffered riboflavi...
Purpose. To report the 12-month outcomes of corneal collagen cross-linking (CXL) with a hypoosmolar ...
Purpose. To evaluate the efficacy and safety of epithelium-on corneal collagen cross-linking (CXL) u...
Purpose: To assess intraoperative corneal pachymetry in patients undergoing accelerated corneal coll...
Purpose: To assess intraoperative corneal pachymetry in patients undergoing accelerated corneal coll...
Purpose: To assess intraoperative corneal pachymetry in patients undergoing accelerated corneal coll...
Biomechanical reinforcement of the cornea by collagen cross-linking (CXL) using riboflavin and ultra...