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Serial visual reversal learning in harbor seals (Phoca vitulina)
Progressively improving performance in a serial reversal learning (SRL) test has been associated with higher cognitive abilities and has served as a measure for cognitive/behavioral flexibility. Although the cognitive and sensory abilities of marine mammals have been subject of extensive investigati...
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Published in: | Animal cognition 2022-10, Vol.25 (5), p.1183-1193 |
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creator | Erdsack, Nicola Dehnhardt, Guido Hanke, Frederike D. |
description | Progressively improving performance in a serial reversal learning (SRL) test has been associated with higher cognitive abilities and has served as a measure for cognitive/behavioral flexibility. Although the cognitive and sensory abilities of marine mammals have been subject of extensive investigation, and numerous vertebrate and invertebrate species were tested, SRL studies in aquatic mammals are sparse. Particularly in pinnipeds, a high degree of behavioral flexibility seems probable as they face a highly variable environment in air and underwater. Thus, we tested four harbor seals in a visual two-alternative forced-choice discrimination task and its subsequent reversals. We found significant individual differences in performance. One individual was able to solve 37 reversals showing progressive improvement of performance with a minimum of 6 errors in reversal 33. Two seals mastered two reversals, while one animal had difficulties in learning the discrimination task and failed to complete a single reversal. In conclusion, harbor seals can master an SRL experiment; however, the performance is inferior to results obtained in other vertebrates in comparable tasks. Future experiments will need to assess whether factors such as the modality addressed in the experiment have an influence on reversal learning performance or whether indeed, during evolution, behavioral flexibility has not specifically been favored in harbor seals. |
doi_str_mv | 10.1007/s10071-022-01653-1 |
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The Author(s).</rights><rights>The Author(s) 2022. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). 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subjects | Animal cognition Animals Aquatic mammals Behavioral Sciences Biomedical and Life Sciences Cognitive ability Flexibility Learning Life Sciences Marine mammals Original Paper Phoca Phoca vitulina Psychology Research Reversal Learning Seals Seals (animals) Serial Learning Serial reversal learning Spatial Learning Vertebrates Visual discrimination Visual discrimination learning Visual tasks Zoology |
title | Serial visual reversal learning in harbor seals (Phoca vitulina) |
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