Corneal morphological analysis has greatly improved in recent years, providing physicians with new and reliable parameters to study. Moreover, today corneal functional too is a routine analysis, thanks to biomechanical evaluation allowed by an ocular response analyzer (Reichert Ophthalmic Instrument, Depew, NY, USA). Corvis ST (OCULUS Optikgeräte GmbH, Wetzlar, Germany), that relies on the ultrahigh speed Scheimpflug camera, is a new device providing corneal deformation parameters measured ny scanning the cornea response to an air puff; it is an instrument able to measure intraocular pressure too. This device could open up a whole new prospective in screening, detecting and managing corneal diseases, intraocular pressure measurement and in ...
Purpose: To evaluate corneal biomechanics using Corvis ST in healthy eyes from Iranian keratorefract...
Purpose. To evaluate the corneal biomechanical parameters in myopic and emmetropic eyes using Cornea...
To demonstrate a Scheimpflug-based imaging procedure for investigating the depth- and time-dependent...
Purpose: To evaluate the correlation between corneal biomechanical and morphological data in healthy...
Purpose. To compare the corneal biomechanical properties of keratoconic patients and age-matched con...
Introduction: The method for measuring intraocular pressure using the Corvis tonometer provides a se...
The study of corneal biomechanics in vivo has been evolving fast in recent years. While an organised...
OBJECTIVE: To describe a novel technique for clinical characterization of corneal biomechanics using...
Interest in corneal biomechanics has increased with the development of new refractive surgery techni...
Abstract Background Non-contact tonometers based on the method using air puff and Scheimpflug’s fast...
Introduction: Contemporary ophthalmology knows many methods of measuring intraocular pressure, namel...
Objective. To study the correlations between corneal distortion and morphological features in differ...
Purpose. To determine the repeatability of recalculated corneal visualization Scheimpflug technology...
Background: The software supplied with the Corvis tonometer (which is designed to measure intraocula...
PURPOSE: To correlate parameters derived from corneal deformation resulting from non-contact tonomet...
Purpose: To evaluate corneal biomechanics using Corvis ST in healthy eyes from Iranian keratorefract...
Purpose. To evaluate the corneal biomechanical parameters in myopic and emmetropic eyes using Cornea...
To demonstrate a Scheimpflug-based imaging procedure for investigating the depth- and time-dependent...
Purpose: To evaluate the correlation between corneal biomechanical and morphological data in healthy...
Purpose. To compare the corneal biomechanical properties of keratoconic patients and age-matched con...
Introduction: The method for measuring intraocular pressure using the Corvis tonometer provides a se...
The study of corneal biomechanics in vivo has been evolving fast in recent years. While an organised...
OBJECTIVE: To describe a novel technique for clinical characterization of corneal biomechanics using...
Interest in corneal biomechanics has increased with the development of new refractive surgery techni...
Abstract Background Non-contact tonometers based on the method using air puff and Scheimpflug’s fast...
Introduction: Contemporary ophthalmology knows many methods of measuring intraocular pressure, namel...
Objective. To study the correlations between corneal distortion and morphological features in differ...
Purpose. To determine the repeatability of recalculated corneal visualization Scheimpflug technology...
Background: The software supplied with the Corvis tonometer (which is designed to measure intraocula...
PURPOSE: To correlate parameters derived from corneal deformation resulting from non-contact tonomet...
Purpose: To evaluate corneal biomechanics using Corvis ST in healthy eyes from Iranian keratorefract...
Purpose. To evaluate the corneal biomechanical parameters in myopic and emmetropic eyes using Cornea...
To demonstrate a Scheimpflug-based imaging procedure for investigating the depth- and time-dependent...