Deformation of the Normal Monkey Optic Nerve Head Connective Tissue after Acute IOP Elevation within 3-D Histomorphometric Reconstructions
- 1 December 2009
- journal article
- glaucoma
- Published by Association for Research in Vision and Ophthalmology (ARVO) in Investigative Opthalmology & Visual Science
- Vol. 50 (12) , 5785-5799
- https://doi.org/10.1167/iovs.09-3410
Abstract
Purpose.: To characterize optic nerve head (ONH) connective tissue deformation after acute (15 or 30 minutes) intraocular pressure (IOP) elevation in six adult normal monkeys using three-dimensional (3-D) histomorphometry. Methods.: Trephined ONH and peripapillary sclera from both eyes of six monkeys, each perfusion fixed with one eye at IOP 10 mm Hg (IOP-10) and the other at IOP 30 or 45 mm Hg (IOP-30 or IOP-45, by anterior chamber manometer), were serially sectioned, 3-D reconstructed, 3-D delineated, and quantified according to standard parameters. For each monkey, intereye differences (high-IOP eye minus IOP-10) for each parameter were calculated and compared by ANOVA and EPIDmax both overall and regionally. EPIDmax deformations for each parameter were defined to be those statistically significant differences that exceeded the maximum physiologic intereye difference within six bilaterally normal monkeys in a previous report. Results.: Regional EPIDmax laminar thinning, posterior bowing of the peripapillary sclera, and thinning and expansion of the scleral canal were present in most high-IOP eyes and were colocalized in those demonstrating the most deformation. Laminar deformation was minimal, not only posteriorly but in some cases anteriorly in the high-IOP eyes. No increase in deformation was seen in the IOP-45 versus the IOP-30 eyes. Conclusions.: ONH connective tissue alterations after acute IOP elevation involve regional thinning, stretching, and deformation of the lamina cribrosa and peripapillary sclera that are minimal to modest in magnitude. The time-dependent character of these alterations and their compressive, expansile, and shear effects on the axons, the astrocytes, and the laminar and posterior ciliary circulations remain to be determined.Keywords
This publication has 71 references indexed in Scilit:
- Detection of Optic Nerve Head Neural Canal Opening within Histomorphometric and Spectral Domain Optical Coherence Tomography Data SetsInvestigative Opthalmology & Visual Science, 2009
- Ultrahigh-Speed Optical Coherence Tomography for Three-Dimensional and En Face Imaging of the Retina and Optic Nerve HeadInvestigative Opthalmology & Visual Science, 2008
- [Retinal ganglion cell damage in human glaucoma. 2. Studies on damage pattern].1987
- The Efficiency of Simulation-Based Multiple ComparisonsPublished by JSTOR ,1987
- Displacement of Optic Nerve Head in Response to Short-term Intraocular Pressure Elevation in Human EyesArchives of Ophthalmology (1950), 1984
- Optic Nerve Damage in Human GlaucomaArchives of Ophthalmology (1950), 1981
- Scleral creep vs. temperature and pressure in vitroExperimental Eye Research, 1979
- The Histology of Human Glaucoma Cupping and Optic Nerve Damage: Clinicopathologic Correlation in 21 EyesOphthalmology, 1979
- AXOPLASMIC FLOW DURING CHRONIC EXPERIMENTAL GLAUCOMA .1. LIGHT AND ELECTRON-MICROSCOPIC STUDIES OF MONKEY OPTIC NERVEHEAD DURING DEVELOPMENT OF GLAUCOMATOUS CUPPING1978
- DISTRIBUTION OF AXONAL-TRANSPORT BLOCKADE BY ACUTE INTRAOCULAR-PRESSURE ELEVATION IN PRIMATE OPTIC-NERVE HEAD1977