Frontiers in Physiology (Nov 2018)

Plasticity in the Sensitivity to Light in Aging: Decreased Non-visual Impact of Light on Cognitive Brain Activity in Older Individuals but No Impact of Lens Replacement

  • Véronique Daneault,
  • Véronique Daneault,
  • Véronique Daneault,
  • Marie Dumont,
  • Marie Dumont,
  • Éric Massé,
  • Éric Massé,
  • Pierre Forcier,
  • Arnaud Boré,
  • Jean-Marc Lina,
  • Jean-Marc Lina,
  • Jean-Marc Lina,
  • Julien Doyon,
  • Julien Doyon,
  • Gilles Vandewalle,
  • Julie Carrier,
  • Julie Carrier,
  • Julie Carrier

DOI
https://doi.org/10.3389/fphys.2018.01557
Journal volume & issue
Vol. 9

Abstract

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Beyond its essential visual role, light, and particularly blue light, has numerous non-visual effects, including stimulating cognitive functions and alertness. Non-visual effects of light may decrease with aging and contribute to cognitive and sleepiness complaints in aging. However, both the brain and the eye profoundly change in aging. Whether the stimulating effects light on cognitive brain functions varies in aging and how ocular changes may be involved is not established. We compared the impact of blue and orange lights on non-visual cognitive brain activity in younger (23.6 ± 2.5 years), and older individuals with their natural lenses (NL; 66.7 ± 5.1 years) or with intraocular lens (IOL) replacement following cataract surgery (69.6 ± 4.9 years). Analyses reveal that blue light modulates executive brain responses in both young and older individuals. Light effects were, however, stronger in young individuals including in the hippocampus and frontal and cingular cortices. Light effects did not significantly differ between older-IOL and older-NL while regression analyses indicated that differential brain engagement was not underlying age-related differences in light effects. These findings show that, although its impact decreases, light can stimulate cognitive brain activity in aging. Since lens replacement did not affect light impact, the brain seems to adapt to the progressive decrease in retinal light exposure in aging.

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