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Distance estimation in the Goldfish (Carassius auratus)

View ORCID ProfileAdelaide Sibeaux, Cecilia Karlsson, Cait Newport, Theresa Burt de Perera
doi: https://doi.org/10.1101/2022.07.28.501828
Adelaide Sibeaux
1Department of Biology, University of Oxford, Zoology Research and Administration Building, 11a Mansfield Road, Oxford, OX1 3SZ
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  • For correspondence: adelaide.sibeaux@zoo.ox.ac.uk
Cecilia Karlsson
1Department of Biology, University of Oxford, Zoology Research and Administration Building, 11a Mansfield Road, Oxford, OX1 3SZ
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Cait Newport
1Department of Biology, University of Oxford, Zoology Research and Administration Building, 11a Mansfield Road, Oxford, OX1 3SZ
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Theresa Burt de Perera
1Department of Biology, University of Oxford, Zoology Research and Administration Building, 11a Mansfield Road, Oxford, OX1 3SZ
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Abstract

Neurophysiological advances have given us exciting insights into the systems responsible for spatial mapping in mammals. However, we are still lacking information on the evolution of these systems and whether the underlying mechanisms identified are universal across phyla, or specific to the species studied. Here we address these questions by exploring whether a species that is evolutionarily distant from mammals can perform a task central to mammalian spatial mapping – distance estimation. We developed a behavioural paradigm allowing us to test whether goldfish (Carassius auratus) can estimate distance and explored the behavioural mechanisms that underpin this ability. Fish were trained to swim a set distance within a narrow tank covered with striped pattern. After changing the background pattern, we found that goldfish use the spatial frequency of their visual environment to estimate distance; doubling the spatial frequency of optic flow pattern resulted in a large overestimation of the swimming distance. These results provide robust evidence that goldfish can accurately estimate distance, and show that they use optic flow to do so. These results provide a compelling basis to utilise goldfish as a model system to interrogate the evolution of the mechanisms that underpin spatial cognition, from brain to behaviour.

Competing Interest Statement

The authors have declared no competing interest.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted July 31, 2022.
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Distance estimation in the Goldfish (Carassius auratus)
Adelaide Sibeaux, Cecilia Karlsson, Cait Newport, Theresa Burt de Perera
bioRxiv 2022.07.28.501828; doi: https://doi.org/10.1101/2022.07.28.501828
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Distance estimation in the Goldfish (Carassius auratus)
Adelaide Sibeaux, Cecilia Karlsson, Cait Newport, Theresa Burt de Perera
bioRxiv 2022.07.28.501828; doi: https://doi.org/10.1101/2022.07.28.501828

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