Purpose: To assess the precision and reproducibility of the corneal biomechanical parameters, and their relationships with the intraocular pressure (IOP) measured with the Goldmann tonometer and a noncontact tonometer. Methods: Readings for biomechanical properties and for IOP measured with the Goldmann and noncontact tonometers, were taken on one randomly selected eye of 106 normal subjects, on each one of two measurement sessions. Measurements with the ocular response analyzer (ORA) and the noncontact tonometer were randomized, followed by the measurement of central corneal thickness and with the Goldmann tonometer. Results: Repeatability coefficients for CCT, corneal hysteresis (CH) and corneal resistance factor (CRF) in Session 1 were ±...
Purpose: To determine if midperipheral corneal thickness (MCT) has an influence on intraocular press...
Purpose. To determine the corneal biomechanical properties by using the Ocular Response Analyzer™ an...
PurposeTo compare the biomechanically-corrected intraocular pressure (bIOP) measured by the Corvis S...
Kiyoshi Yaoeda,1,2 Atsushi Fukushima,1 Motohiro Shirakashi,3 Takeo Fukuchi2 1Yaoeda Eye Clinic, Nag...
Background: To evaluate the agreement in intraocular pressure (IOP) measurements by Ocular Response ...
Purpose. To compare corneal hysteresis (CH) and corneal resistance factor (CRF) measured with the Oc...
The paper deals with the influence of various biomechanical parameters on the intraocular pressure (...
Background: To evaluate the relationships between Reichert Ocular Response Analyzer (ORA) parameters...
Intraocular pressure measurement is a routine clinical examination performed in ophthalmic practice....
Biomechanics of the cornea have significant influences on the non-contact measurement of the intraoc...
PURPOSE: To investigate the biomechanical properties of the cornea using the dynamic Scheimpflug ana...
Background: The aim of this study was to investigate the biomechanical properties of the cornea and...
PubMedID: 18637107Purpose: To investigate the effects of central corneal thickness (CCT) on intraocu...
Purpose: To evaluate and compare corneal hysteresis (CH), corneal resistance factor (CRF), and centr...
Purpose: This study aims to introduce and clinically validate a new algorithm that can determine the...
Purpose: To determine if midperipheral corneal thickness (MCT) has an influence on intraocular press...
Purpose. To determine the corneal biomechanical properties by using the Ocular Response Analyzer™ an...
PurposeTo compare the biomechanically-corrected intraocular pressure (bIOP) measured by the Corvis S...
Kiyoshi Yaoeda,1,2 Atsushi Fukushima,1 Motohiro Shirakashi,3 Takeo Fukuchi2 1Yaoeda Eye Clinic, Nag...
Background: To evaluate the agreement in intraocular pressure (IOP) measurements by Ocular Response ...
Purpose. To compare corneal hysteresis (CH) and corneal resistance factor (CRF) measured with the Oc...
The paper deals with the influence of various biomechanical parameters on the intraocular pressure (...
Background: To evaluate the relationships between Reichert Ocular Response Analyzer (ORA) parameters...
Intraocular pressure measurement is a routine clinical examination performed in ophthalmic practice....
Biomechanics of the cornea have significant influences on the non-contact measurement of the intraoc...
PURPOSE: To investigate the biomechanical properties of the cornea using the dynamic Scheimpflug ana...
Background: The aim of this study was to investigate the biomechanical properties of the cornea and...
PubMedID: 18637107Purpose: To investigate the effects of central corneal thickness (CCT) on intraocu...
Purpose: To evaluate and compare corneal hysteresis (CH), corneal resistance factor (CRF), and centr...
Purpose: This study aims to introduce and clinically validate a new algorithm that can determine the...
Purpose: To determine if midperipheral corneal thickness (MCT) has an influence on intraocular press...
Purpose. To determine the corneal biomechanical properties by using the Ocular Response Analyzer™ an...
PurposeTo compare the biomechanically-corrected intraocular pressure (bIOP) measured by the Corvis S...