AbstractThe aim of this study was to determine the central corneal thickness (CCT) in living rats, mice and rabbits using a non-contact, high-speed optical low coherence reflectometer (OLCR) mounted on a regular slit lamp. Both eyes of eight male Wistar rats, eight male balb-c mice and eight male Japanese rabbits were measured. Each eye was measured twice (one measurement consists of 20 scans), the average calculated. Additionally, CCT was measured in rabbits using an ultrasound pachymeter. The mean CCT was: rats: 159.08 μm (SD±14.99 μm), mice: 106.0 μm (SD±3.45 μm) and rabbits: 356.11 μm (SD±14.34 μm). With the use of OLCR we were able to accurately measure the CCT of rats, mice and rabbits in vivo. This technique may prove useful in furth...
The axial length of the eye, the radius of the anterior corneal surface, and the diameter of the cor...
We demonstrate an optical instrument that can measure the axial displacement of different eye tissue...
Citation: Lozano DC, Twa MD. Development of a rat schematic eye from in vivo biometry and the correc...
AbstractThe aim of this study was to determine the central corneal thickness (CCT) in living rats, m...
AIM:To measure central corneal thickness (CCT) and pre-corneal tear film thickness using the Galilei...
AbstractPurpose. A major drawback of the mouse model of myopia is that the ocular dimensions cannot ...
AbstractPurpose: To demonstrate that high-resolution biometry is possible in mouse eyes in vivo, usi...
OBJECTIVE To determine the practicability and accuracy of central corneal thickness (CCT) measureme...
An optical low-coherence reflectometer is used for rapid noncontact measurements of the human cornea...
PURPOSE. Central corneal thickness (CCT) exhibits broad vari-ability. For unknown reasons, CCT also ...
Purpose: The purpose of this study is to quantify the normal retinal thickness (RT) and retinal nerv...
PubMedID: 9057929The axial length of the eye, the radius of the anterior corneal surface, and the di...
PURPOSE: Central corneal thickness (CCT) exhibits broad variability. For unknown reasons, CCT also a...
Aim: To investigate en face optical coherence tomography ( eOCT) and its use as an effective objecti...
Several ultrasonic and Fourier-domain optical coherence tomography (FD-OCT) pachymeters are used to ...
The axial length of the eye, the radius of the anterior corneal surface, and the diameter of the cor...
We demonstrate an optical instrument that can measure the axial displacement of different eye tissue...
Citation: Lozano DC, Twa MD. Development of a rat schematic eye from in vivo biometry and the correc...
AbstractThe aim of this study was to determine the central corneal thickness (CCT) in living rats, m...
AIM:To measure central corneal thickness (CCT) and pre-corneal tear film thickness using the Galilei...
AbstractPurpose. A major drawback of the mouse model of myopia is that the ocular dimensions cannot ...
AbstractPurpose: To demonstrate that high-resolution biometry is possible in mouse eyes in vivo, usi...
OBJECTIVE To determine the practicability and accuracy of central corneal thickness (CCT) measureme...
An optical low-coherence reflectometer is used for rapid noncontact measurements of the human cornea...
PURPOSE. Central corneal thickness (CCT) exhibits broad vari-ability. For unknown reasons, CCT also ...
Purpose: The purpose of this study is to quantify the normal retinal thickness (RT) and retinal nerv...
PubMedID: 9057929The axial length of the eye, the radius of the anterior corneal surface, and the di...
PURPOSE: Central corneal thickness (CCT) exhibits broad variability. For unknown reasons, CCT also a...
Aim: To investigate en face optical coherence tomography ( eOCT) and its use as an effective objecti...
Several ultrasonic and Fourier-domain optical coherence tomography (FD-OCT) pachymeters are used to ...
The axial length of the eye, the radius of the anterior corneal surface, and the diameter of the cor...
We demonstrate an optical instrument that can measure the axial displacement of different eye tissue...
Citation: Lozano DC, Twa MD. Development of a rat schematic eye from in vivo biometry and the correc...