Documentation scienceplus.abes.fr version Bêta

À propos de : Agreement among three types of spectral-domain optical coherent tomography instruments in measuring parapapillary retinal nerve fibre layer thickness        

AttributsValeurs
type
Is Part Of
Subject
Title
  • Agreement among three types of spectral-domain optical coherent tomography instruments in measuring parapapillary retinal nerve fibre layer thickness
has manifestation of work
related by
Abstract
  • Backgrounds/aims. To evaluate the agreement of parapapillary retinal nerve fibre layer (RNFL) thickness among three spectral-domain optical coherence tomography (OCT) instruments. Methods. Two hundred and three glaucomatous eyes and 88 normal eyes were imaged by Cirrus, RTVue and 3D OCT. The average and the four quadrant RNFL thicknesses were evaluated. Agreement among RNFL measurements was evaluated using Bland-Altman analysis and linear regression analysis. The percentage of each quadrant in the average RNFL thickness value was compared among the three instruments. Results. Cirrus showed significantly smaller thickness values than RTVue (difference=8.8 μm, p<0.0001) and 3D OCT (difference=8.1 μm, p<0.0001). Although RNFL measurements among the instruments were highly correlated, the Bland-Altman analysis revealed proportional biases for most of the pair-wise agreements. Additionally, 3D OCT showed strong proportional biases with RTVue and 3D OCT. RTVue had a smaller occupied proportion of nasal quadrants (30.2%) and a larger proportion of inferior quadrants (32.4%) compared with Cirrus and 3D OCT. Conclusions. RNFL measurements among the instruments were well correlated but had different values for thickness. The measurement circle of RTVue might be more superior-temporally located compared with the other instruments. Differences in the measurement protocols might be affected by the disagreements. These instruments should not be used interchangeably.
article type
publisher identifier
  • bjophthalmol-2011-301084
is part of this journal
PubMed ID
  • 22334136



Alternative Linked Data Documents: ODE     Content Formats:       RDF       ODATA       Microdata