Modification of Peak Plasticity Induced by Brief Dark Exposure

Author:

Lingley Alexander J.1ORCID,Mitchell Donald E.1ORCID,Crowder Nathan A.1ORCID,Duffy Kevin R.1ORCID

Affiliation:

1. Department of Psychology & Neuroscience, Dalhousie University, Halifax, NS, Canada B3H 4R2

Abstract

The capacity for neural plasticity in the mammalian central visual system adheres to a temporal profile in which plasticity peaks early in postnatal development and then declines to reach enduring negligible levels. Early studies to delineate the critical period in cats employed a fixed duration of monocular deprivation to measure the extent of ocular dominance changes induced at different ages. The largest deprivation effects were observed at about 4 weeks postnatal, with a steady decline in plasticity thereafter so that by about 16 weeks only small changes were measured. The capacity for plasticity is regulated by a changing landscape of molecules in the visual system across the lifespan. Studies in rodents and cats have demonstrated that the critical period can be altered by environmental or pharmacological manipulations that enhance plasticity at ages when it would normally be low. Immersion in complete darkness for long durations (dark rearing) has long been known to alter plasticity capacity by modifying plasticity-related molecules and slowing progress of the critical period. In this study, we investigated the possibility that brief darkness (dark exposure) imposed just prior to the critical period peak can enhance the level of plasticity beyond that observed naturally. We examined the level of plasticity by measuring two sensitive markers of monocular deprivation, namely, soma size of neurons and neurofilament labeling within the dorsal lateral geniculate nucleus. Significantly larger modification of soma size, but not neurofilament labeling, was observed at the critical period peak when dark exposure preceded monocular deprivation. This indicated that the natural plasticity ceiling is modifiable and also that brief darkness does not simply slow progress of the critical period. As an antecedent to traditional amblyopia treatment, darkness may increase treatment efficacy even at ages when plasticity is at its highest.

Funder

Canadian Institutes of Health Research

Publisher

Hindawi Limited

Subject

Clinical Neurology,Neurology

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Leveraging neural plasticity for the treatment of amblyopia;Survey of Ophthalmology;2024-09

2. The Dorsal Nucleus of the Lateral Geniculate Body: Anatomy, Histology, Ontogenesis;Neuroscience and Behavioral Physiology;2023-10

3. THE DORSAL LATERAL GENICULATE NUCLEUS: ANATOMY, HISTOLOGY, ONTOGENESIS;Журнал высшей нервной деятельности им. И.П. Павлова;2023-05-01

4. Age-Related Changes in Soma Size of Y Neurons in the Cat Dorsal Lateral Geniculate Nucleus: Dorsoventral and Centroperipheral Gradients;Journal of Evolutionary Biochemistry and Physiology;2022-11

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