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Review
. 2020 Apr 1:335:108616.
doi: 10.1016/j.jneumeth.2020.108616. Epub 2020 Jan 30.

Current approaches to modeling the virtual reality in rodents for the assessment of brain plasticity and behavior

Affiliations
Review

Current approaches to modeling the virtual reality in rodents for the assessment of brain plasticity and behavior

Olga L Lopatina et al. J Neurosci Methods. .

Abstract

Virtual reality (VR) and augmented reality (AR) have become valuable tools to study brains and behaviors resulting in development of new methods of diagnostics and treatment. Neurodegenerаtion is one of the best examples demonstrating efficacy of VR/АR technologies in modern neurology. Development of novel VR systems for rodents and combination of VR tools with up-to-date imaging techniques (i.e. MRI, imaging of neural networks etc.), brain electrophysiology (EEG, patch-clamp), precise analytics (microdialysis) allowed implementing of VR protocols into the animal neurobiology to study brain plasticity, sensorimotor integration, spatial navigation, memory, and decision-making. VR/AR for rodents is а young field of experimental neuroscience and has already provided more consistent testing conditions, less human-animal interaction, opportunities to use a wider variety of experimental parameters. Here we discuss present and future perspectives of using VR/AR to assess brain plasticity, neurogenesis and complex behavior in rodent and human study, and their advantages for translational neuroscience.

Keywords: Augmented reality; Cognition; Enriched environment; Neuroplastisity; Virtual reality.

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Conflict of interest statement

Declaration of Competing Interest The authors declare that there are no conflicts of interest.

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