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Review
.2015 Dec 19;370(1684):20150049.
doi: 10.1098/rstb.2015.0049.

Convergent evolution of complex brains and high intelligence

Affiliations
Review

Convergent evolution of complex brains and high intelligence

Gerhard Roth. Philos Trans R Soc Lond B Biol Sci..

Abstract

Within the animal kingdom, complex brains and high intelligence have evolved several to many times independently, e.g. among ecdysozoans in some groups of insects (e.g. blattoid, dipteran, hymenopteran taxa), among lophotrochozoans in octopodid molluscs, among vertebrates in teleosts (e.g. cichlids), corvid and psittacid birds, and cetaceans, elephants and primates. High levels of intelligence are invariantly bound to multimodal centres such as the mushroom bodies in insects, the vertical lobe in octopodids, the pallium in birds and the cerebral cortex in primates, all of which contain highly ordered associative neuronal networks. The driving forces for high intelligence may vary among the mentioned taxa, e.g. needs for spatial learning and foraging strategies in insects and cephalopods, for social learning in cichlids, instrumental learning and spatial orientation in birds and social as well as instrumental learning in primates.

Keywords: brain evolution; cerebral cortex; intelligence; mesonidopallium; mushroom bodies; vertical lobe.

© 2015 The Author(s).

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References

    1. Gazzaniga M. 2008. The science behind what makes us unique. New York, NY: Ecco Press.
    1. Hirth F, Reichert H. 2007. Basic nervous system types: one or many. In Evolution of nervous systems. Theories, development, invertebrates, vol. 1 (eds Striedter GF, Rubenstein JL), pp. 55–72. Amsterdam, The Netherlands: Academic Press (Elsevier).
    1. Roth G. 2013. The long evolution of brains and minds. Dordrecht, The Netherlands: Springer.
    1. Byrne R. 1995. The thinking ape. Evolutionary origins of intelligence. Oxford, NY: Oxford University Press.
    1. Gibson KR, Rumbaugh D, Beran M. 2001. Bigger is better: primate brain size in relationship to cognition. In Evolutionary anatomy of the primate cerebral cortex (eds Falk D, Gibson KR), pp. 79–97. Cambridge, UK: Cambridge University Press.

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