Author
Listed:
- Joel R Palko
- Hugh J Morris
- Xueliang Pan
- Christine D Harman
- Kristin L Koehl
- Kirk N Gelatt
- Caryn E Plummer
- András M Komáromy
- Jun Liu
Abstract
Soft tissue often displays marked age-associated stiffening. This study aims to investigate how age affects scleral biomechanical properties in a canine glaucoma model with ADAMTS10 mutation, whose extracellular matrix is concomitantly influenced by the mutation and an increased mechanical load from an early age. Biomechanical data was acquired from ADAMTS10-mutant dogs (n = 10, 21 to 131 months) and normal dogs (n = 5, 69 to 113 months). Infusion testing was first performed in the whole globes to measure ocular rigidity. After infusion experiments, the corneas were immediately trephined to prepare scleral shells that were mounted on a pressurization chamber to measure strains in the posterior sclera using an inflation testing protocol. Dynamic viscoelastic mechanical testing was then performed on dissected posterior scleral strips and the data were combined with those reported earlier by our group from the same animal model (Palko et al, IOVS 2013). The association between age and scleral biomechanical properties was evaluated using multivariate linear regression. The relationships between scleral properties and the mean and last measured intraocular pressure (IOP) were also evaluated. Our results showed that age was positively associated with complex modulus (p
Suggested Citation
Joel R Palko & Hugh J Morris & Xueliang Pan & Christine D Harman & Kristin L Koehl & Kirk N Gelatt & Caryn E Plummer & András M Komáromy & Jun Liu, 2016.
"Influence of Age on Ocular Biomechanical Properties in a Canine Glaucoma Model with ADAMTS10 Mutation,"
PLOS ONE, Public Library of Science, vol. 11(6), pages 1-19, June.
Handle:
RePEc:plo:pone00:0156466
DOI: 10.1371/journal.pone.0156466
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