Long-term Variability of GDx VCC Retinal Nerve Fiber Layer Thickness Measurements
- 1 May 2007
- journal article
- research article
- Published by Wolters Kluwer Health in Journal of Glaucoma
- Vol. 16 (3) , 277-281
- https://doi.org/10.1097/ijg.0b013e3180391a3c
Abstract
Purpose To evaluate the long-term variability of GDx VCC retinal nerve fiber layer (RNFL) thickness measurements. Methods The study enrolled a cohort of glaucoma suspects who did not develop any evidence of visual field damage or change in the appearance of the optic nerve during an average follow-up of 9.1±3.2 years. Subjects underwent ocular imaging using the commercially available GDx VCC scanning laser polarimeter. At each visit, each eye was imaged 3 times. Subjects underwent repeated testing with GDx VCC at approximately 12-month intervals during their follow-up. In total, 255 examinations were obtained in 31 eyes of 31 individuals during an average GDx VCC follow-up time of 26.0±8.9 months. A random effects analysis of variance model was used to estimate intraclass correlation coefficients and long-term and short-term variability estimates. Results Intraclass correlation coefficients ranged from 0.77 to 0.86 for GDx VCC parameters. Short-term variability estimates ranged from 2.45 to 3.89 μm for RNFL thickness parameters, whereas the short-term variability estimate for the parameter Nerve Fiber Indicator was 3.71. Long-term variability was slightly higher than short-term variability for all parameters. For RNFL thickness parameters, long-term variability estimates ranged from 3.21 to 4.97 μm, whereas for the parameter Nerve Fiber Indicator the long-term variability estimate was 4.93. Conclusions RNFL measurements obtained with the GDx VCC were found to be highly reproducible in a long-term test-retest situation, supporting the use of this instrument for longitudinal assessment of the RNFL.Keywords
This publication has 17 references indexed in Scilit:
- Intersession Reproducibility of Retinal Nerve Fiber Layer Thickness Measurements by GDx-VCC in Healthy and Glaucomatous EyesOphthalmologica, 2006
- Reproducibility of Retinal Nerve Fiber Thickness Measurements Using the Stratus OCT in Normal and Glaucomatous EyesInvestigative Opthalmology & Visual Science, 2005
- Operator learning effect and interoperator reproducibility of the scanning laser polarimeter with variable corneal compensationOphthalmology, 2005
- Inter-device reproducibility of the scanning laser polarimeter with variable cornea compensationEye, 2004
- Comparison of the GDx VCC Scanning Laser Polarimeter, HRT II ConfocalScanning Laser Ophthalmoscope, and Stratus OCT Optical Coherence Tomographfor the Detection of GlaucomaArchives of Ophthalmology (1950), 2004
- Reproducibility of Nerve Fiber Thickness, Macular Thickness, and Optic Nerve Head Measurements Using StratusOCTInvestigative Opthalmology & Visual Science, 2004
- Fourier analysis of scanning laser polarimetry measurements with variable corneal compensation in glaucoma.Investigative Opthalmology & Visual Science, 2003
- Reproducibility of Measurements With the Nerve Fiber Analyzer (NFA/GDx)Journal of Glaucoma, 2000
- Scanning Laser Polarimetry to Measure the Nerve Fiber Layer of Normal and Glaucomatous EyesAmerican Journal of Ophthalmology, 1995
- Histopathologic Validation of Fourier-Ellipsometry Measurements of Retinal Nerve Fiber Layer ThicknessArchives of Ophthalmology (1950), 1990