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Absolute brain size predicts dog breed differences in executive function.

Publication ,  Journal Article
Horschler, DJ; Hare, B; Call, J; Kaminski, J; Miklósi, Á; MacLean, EL
Published in: Animal cognition
March 2019

Large-scale phylogenetic studies of animal cognition have revealed robust links between absolute brain volume and species differences in executive function. However, past comparative samples have been composed largely of primates, which are characterized by evolutionarily derived neural scaling rules. Therefore, it is currently unknown whether positive associations between brain volume and executive function reflect a broad-scale evolutionary phenomenon, or alternatively, a unique consequence of primate brain evolution. Domestic dogs provide a powerful opportunity for investigating this question due to their close genetic relatedness, but vast intraspecific variation. Using citizen science data on more than 7000 purebred dogs from 74 breeds, and controlling for genetic relatedness between breeds, we identify strong relationships between estimated absolute brain weight and breed differences in cognition. Specifically, larger-brained breeds performed significantly better on measures of short-term memory and self-control. However, the relationships between estimated brain weight and other cognitive measures varied widely, supporting domain-specific accounts of cognitive evolution. Our results suggest that evolutionary increases in brain size are positively associated with taxonomic differences in executive function, even in the absence of primate-like neuroanatomy. These findings also suggest that variation between dog breeds may present a powerful model for investigating correlated changes in neuroanatomy and cognition among closely related taxa.

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Published In

Animal cognition

DOI

EISSN

1435-9456

ISSN

1435-9448

Publication Date

March 2019

Volume

22

Issue

2

Start / End Page

187 / 198

Related Subject Headings

  • Primates
  • Phylogeny
  • Organ Size
  • Executive Function
  • Dogs
  • Cognition
  • Breeding
  • Brain
  • Behavioral Science & Comparative Psychology
  • Animals
 

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Horschler, D. J., Hare, B., Call, J., Kaminski, J., Miklósi, Á., & MacLean, E. L. (2019). Absolute brain size predicts dog breed differences in executive function. Animal Cognition, 22(2), 187–198. https://doi.org/10.1007/s10071-018-01234-1
Horschler, Daniel J., Brian Hare, Josep Call, Juliane Kaminski, Ádám Miklósi, and Evan L. MacLean. “Absolute brain size predicts dog breed differences in executive function.Animal Cognition 22, no. 2 (March 2019): 187–98. https://doi.org/10.1007/s10071-018-01234-1.
Horschler DJ, Hare B, Call J, Kaminski J, Miklósi Á, MacLean EL. Absolute brain size predicts dog breed differences in executive function. Animal cognition. 2019 Mar;22(2):187–98.
Horschler, Daniel J., et al. “Absolute brain size predicts dog breed differences in executive function.Animal Cognition, vol. 22, no. 2, Mar. 2019, pp. 187–98. Epmc, doi:10.1007/s10071-018-01234-1.
Horschler DJ, Hare B, Call J, Kaminski J, Miklósi Á, MacLean EL. Absolute brain size predicts dog breed differences in executive function. Animal cognition. 2019 Mar;22(2):187–198.
Journal cover image

Published In

Animal cognition

DOI

EISSN

1435-9456

ISSN

1435-9448

Publication Date

March 2019

Volume

22

Issue

2

Start / End Page

187 / 198

Related Subject Headings

  • Primates
  • Phylogeny
  • Organ Size
  • Executive Function
  • Dogs
  • Cognition
  • Breeding
  • Brain
  • Behavioral Science & Comparative Psychology
  • Animals