Literature DB >> 21733067

In vivo measurement of central corneal thickness in normal chicks (Gallus gallus domesticus) with the optical low-coherence reflectometer.

Christoph Tappeiner1, David Goldblum, Konstantinos Katsoulis, Gian-Marco Sarra, Beatrice E Frueh.   

Abstract

OBJECTIVE: To determine the practicability and accuracy of central corneal thickness (CCT) measurements in living chicks utilizing a noncontact, high-speed optical low-coherence reflectometer (OLCR) mounted on a slit lamp. ANIMALS STUDIED: Twelve male chicks (Gallus gallus domesticus). Procedures  Measurements of CCT were obtained in triplicate in 24 eyes of twelve 1-day-old anaesthetized chicks using OLCR. Every single measurement taken by OLCR consisted of the average result of 20 scans obtained within seconds. Additionally, corneal thickness was determined histologically after immersion fixation in Karnovsky's solution alone (20 eyes) or with a previous injection of the fixative into the anterior chamber before enucleation (4 eyes).
RESULTS: Central corneal thickness measurements using OLCR in 1-day-old living chicks provide a rapid and feasible examination technique. Mean CCT measured with OLCR (189.7 ± 3.34 μm) was significantly lower than histological measurements (242.1 ± 47.27 μm) in eyes with fixation in Karnovsky's solution (P = 0.0005). In eyes with additional injection of Karnovsky's fixative into the anterior chamber, mean histologically determined CCT was 195.2 ± 8.25 μm vs. 191.9 ± 8.90 μm with OLCR. A trend for a lower variance was found compared to the eyes that had only been immersion fixed.
CONCLUSION: Optical low-coherence reflectometry is an accurate examination technique to measure in vivo CCT in the eye of newborn chicks. The knowledge of the thickness of the chick cornea and the ability to obtain noninvasive, noncontact measurements of CCT in the living animal may be of interest for research and development of eye diseases in chick models.
© 2011 American College of Veterinary Ophthalmologists.

Entities:  

Mesh:

Year:  2011        PMID: 21733067     DOI: 10.1111/j.1463-5224.2011.00875.x

Source DB:  PubMed          Journal:  Vet Ophthalmol        ISSN: 1463-5216            Impact factor:   1.644


  1 in total

1.  The novel model: Experimental optical coherence tomography-guided anterior segment imaging chick embryo model.

Authors:  Resat Duman; Tolga Ertekin; Rahmi Duman; Esra Aslan; Mehmet Cem Sabaner; Ersan Cetinkaya
Journal:  Indian J Ophthalmol       Date:  2019-01       Impact factor: 1.848

  1 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.