Measurement of local retinal ganglion cell layer thickness in patients with glaucoma using frequency-domain optical coherence tomography

Arch Ophthalmol. 2009 Jul;127(7):875-81. doi: 10.1001/archophthalmol.2009.145.

Abstract

Objective: To explore the feasibility of obtaining a local measurement of the thickness of the retinal ganglion cell layer in patients with glaucoma using frequency-domain optical coherence tomography (fdOCT) and a computer-aided manual segmentation procedure.

Methods: The fdOCT scans were obtained from the horizontal midline for 1 eye of 26 patients with glaucoma and 20 control subjects. The thickness of various layers was measured with a manual segmentation procedure aided by a computer program. The patients were divided into low- and high-sensitivity groups based on their foveal sensitivity on standard automated perimetry.

Results: The RGC plus inner plexiform and the retinal nerve fiber layers of the low-sensitivity group were significantly thinner than those of the high-sensitivity group. While these layers were thinner in the patients than the controls, the thicknesses of inner nuclear layer and receptor layer were similar in all 3 groups. Further, the thinning of the retinal ganglion cell plus inner plexiform layer in 1 glaucoma-affected eye showed qualitative correspondence to the loss in 10-2 visual field sensitivity.

Conclusions: Local measures of RGC layer thickness can be obtained from fdOCT scans using a manual segmentation procedure, and these measures show qualitative agreement with visual field sensitivity.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Axons / pathology*
  • Body Weights and Measures
  • Feasibility Studies
  • Female
  • Glaucoma, Open-Angle / diagnosis*
  • Gonioscopy
  • Humans
  • Male
  • Middle Aged
  • Optic Disk / pathology*
  • Optic Nerve Diseases / diagnosis*
  • Retinal Ganglion Cells / pathology*
  • Tomography, Optical Coherence
  • Vision Disorders / diagnosis
  • Visual Acuity
  • Visual Field Tests
  • Visual Fields