A Rodent Model for the Study of Invariant Visual Object Recognition
Overview
Affiliations
The human visual system is able to recognize objects despite tremendous variation in their appearance on the retina resulting from variation in view, size, lighting, etc. This ability--known as "invariant" object recognition--is central to visual perception, yet its computational underpinnings are poorly understood. Traditionally, nonhuman primates have been the animal model-of-choice for investigating the neuronal substrates of invariant recognition, because their visual systems closely mirror our own. Meanwhile, simpler and more accessible animal models such as rodents have been largely overlooked as possible models of higher-level visual functions, because their brains are often assumed to lack advanced visual processing machinery. As a result, little is known about rodents' ability to process complex visual stimuli in the face of real-world image variation. In the present work, we show that rats possess more advanced visual abilities than previously appreciated. Specifically, we trained pigmented rats to perform a visual task that required them to recognize objects despite substantial variation in their appearance, due to changes in size, view, and lighting. Critically, rats were able to spontaneously generalize to previously unseen transformations of learned objects. These results provide the first systematic evidence for invariant object recognition in rats and argue for an increased focus on rodents as models for studying high-level visual processing.
Unraveling the complexity of rat object vision requires a full convolutional network and beyond.
Muratore P, Alemi A, Zoccolan D Patterns (N Y). 2025; 6(2):101149.
PMID: 40041851 PMC: 11873012. DOI: 10.1016/j.patter.2024.101149.
Parallel development of object recognition in newborn chicks and deep neural networks.
Pandey L, Lee D, Wood S, Wood J PLoS Comput Biol. 2024; 20(12):e1012600.
PMID: 39621774 PMC: 11651591. DOI: 10.1371/journal.pcbi.1012600.
Flintoff J, Alexander S, Kesby J, Burne T Front Psychiatry. 2024; 15:1303728.
PMID: 39006823 PMC: 11240049. DOI: 10.3389/fpsyt.2024.1303728.
Learning to Choose: Behavioral Dynamics Underlying the Initial Acquisition of Decision-Making.
White S, Preston M, Swanson K, Laubach M eNeuro. 2024; 11(5).
PMID: 38724267 PMC: 11103646. DOI: 10.1523/ENEURO.0142-24.2024.
Learning to Choose: Behavioral Dynamics Underlying the Initial Acquisition of Decision Making.
White S, Preston M, Swanson K, Laubach M bioRxiv. 2024; .
PMID: 38464283 PMC: 10925347. DOI: 10.1101/2024.02.28.582581.