Crystalline lens paradoxes revisited: Significance of age-related restructuring of the GRIN

Conor J. Sheil, Alexander V. Goncharov

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

8 Citations (Scopus)

Abstract

The accommodating volume-constant age-dependent optical (AVOCADO) model of the crystalline lens is used to explore the age-related changes in ocular power and spherical aberration. The additional parameter m in the GRIN lens model allows decoupling of the axial and radial GRIN profiles, and is used to stabilise the age-related change in ocular power. Data for age-related changes in ocular geometry and lens parameter P in the axial GRIN profile were taken from published experimental data. In our age-dependent eye model, the ocular refractive power shows behaviour similar to the previously unexplained “lens paradox”. Furthermore, ocular spherical aberration agrees with the data average, in contrast to the proposed “spherical aberration paradox”. The additional flexibility afforded by parameter m, which controls the ratio of the axial and radial GRIN profile exponents, has allowed us to study the restructuring of the lens GRIN medium with age, resulting in a new interpretation of the origin of the power and spherical aberration paradoxes. Our findings also contradict the conceptual idea that the ageing eye is similar to the accommodating eye.

Original languageEnglish
Article number#293354
Pages (from-to)4172-4180
Number of pages9
JournalBiomedical Optics Express
Volume8
Issue number9
DOIs
Publication statusPublished - 1 Sep 2017

Keywords

  • Inhomogeneous optical media
  • Ophthalmic optics and devices
  • Physiological optics
  • Visual optics, aging changes
  • Visual optics, modelling

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