Purpose. To investigate the changes in intraocular pressure (IOP) and biomechanically corrected IOP (bIOP) in patients undergoing transepithelial photorefractive keratectomy (TPRK) and femtosecond laser in situ keratomileusis (FS-LASIK) and to determine the effects of preoperative biomechanical factors on IOP and bIOP changes after FS-LASIK and TPRK. Design. A retrospective comparative study. Methods. We retrospectively investigated the IOP and corneal biomechanical changes in 93 eyes undergoing FS-LASIK and 104 eyes undergoing TPRK in a clinical setting. Preoperative and postoperative data on ophthalmic and Corvis ST examinations, in vivo Young’s modulus, and noncontact tonometry were analyzed. Marginal linear regression models with genera...
Purpose: To compare intraocular pressure (IOP) preoperatively and 6 months post-photorefractive kera...
Copyright © 2015 Isabel Cacho et al. This is an open access article distributed under the Creative C...
Purpose To evaluate numerically the biomechanical and optical behavior of human corneas and quantita...
PURPOSE: To evaluate the changes in biomechanically corrected intraocular pressure (IOP) and new dyn...
Purpose: To investigate the effect of hyperopic photorefractive keratectomy (PRK) on intraocular pre...
The aim of this study is to describe factors that influence the measured intraocular pressure (IOP) ...
PURPOSE: To analyze changes in new biomechanical descriptors with myopic femtosecond laser assisted ...
AIM:To investigate the changes of corneal biomechanical indexes after femtosecond laser-assisted <i>...
Corneal configuration change due to recent keratorefractive surgery such as photorefractive keratec...
Background: Refractive laser surgery induces substantial changes in corneal structure, causing inacc...
AIM:To investigate the changes of corneal biomechanics after Femto LDV laser flapping in laser in si...
Purpose: To assess the performance of the dynamic contour tonometer (DCT) in eyes undergoing excimer...
Objective: To investigate the relation between measurements of intraocular pressure (IOP) and centra...
PurposeTo test the performance of 4 tonometers in estimating intraocular pressure (IOP) after 3 form...
PURPOSE: To determine whether tonometric readings of increases in intraocular pressure (IOP) during ...
Purpose: To compare intraocular pressure (IOP) preoperatively and 6 months post-photorefractive kera...
Copyright © 2015 Isabel Cacho et al. This is an open access article distributed under the Creative C...
Purpose To evaluate numerically the biomechanical and optical behavior of human corneas and quantita...
PURPOSE: To evaluate the changes in biomechanically corrected intraocular pressure (IOP) and new dyn...
Purpose: To investigate the effect of hyperopic photorefractive keratectomy (PRK) on intraocular pre...
The aim of this study is to describe factors that influence the measured intraocular pressure (IOP) ...
PURPOSE: To analyze changes in new biomechanical descriptors with myopic femtosecond laser assisted ...
AIM:To investigate the changes of corneal biomechanical indexes after femtosecond laser-assisted <i>...
Corneal configuration change due to recent keratorefractive surgery such as photorefractive keratec...
Background: Refractive laser surgery induces substantial changes in corneal structure, causing inacc...
AIM:To investigate the changes of corneal biomechanics after Femto LDV laser flapping in laser in si...
Purpose: To assess the performance of the dynamic contour tonometer (DCT) in eyes undergoing excimer...
Objective: To investigate the relation between measurements of intraocular pressure (IOP) and centra...
PurposeTo test the performance of 4 tonometers in estimating intraocular pressure (IOP) after 3 form...
PURPOSE: To determine whether tonometric readings of increases in intraocular pressure (IOP) during ...
Purpose: To compare intraocular pressure (IOP) preoperatively and 6 months post-photorefractive kera...
Copyright © 2015 Isabel Cacho et al. This is an open access article distributed under the Creative C...
Purpose To evaluate numerically the biomechanical and optical behavior of human corneas and quantita...