Ingredients for understanding brain and behavioral evolution: Ecology, phylogeny, and mechanism
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S. Jelbert | N. Boogert | S. Shigeno | S. Montgomery | A. Currie | Andrew Buskell | C. Logan | D. Lukas | Ana F. Navarrete | S. Avin | Fiona R. Cross | Rafael Mares
[1] A. Currie,et al. Newton on Islandworld: Ontic-Driven Explanations of Scientific Method , 2018, Perspectives on Science.
[2] Suzana Herculano-Houzel,et al. Numbers of neurons as biological correlates of cognitive capability , 2017, Current Opinion in Behavioral Sciences.
[3] S. Ridgway,et al. Comparison of Dolphins' Body and Brain Measurements with Four Other Groups of Cetaceans Reveals Great Diversity , 2017, Brain, Behavior and Evolution.
[4] Irina Mikhalevich,et al. Experiment and Animal Minds: Why the Choice of the Null Hypothesis Matters , 2015, Philosophy of Science.
[5] R. Barton,et al. Rapid Evolution of the Cerebellum in Humans and Other Great Apes , 2014, Current Biology.
[6] Allison M. Barnard,et al. The evolution of self-control , 2014, Proceedings of the National Academy of Sciences.
[7] P. MacNeilage. Divided Brains: the Biology and Behaviour of Brain Asymmetries Leslie J. Rogers Giorgio Vallortigara , 2013, Animal Behaviour.
[8] R. Barton. Embodied cognitive evolution and the cerebellum , 2012, Philosophical Transactions of the Royal Society B: Biological Sciences.
[9] S. Jelbert,et al. Beyond brain size , 2017, bioRxiv.
[10] E. Frasnelli,et al. Where the standard approach in comparative neuroscience fails and where it works: General intelligence and brain asymmetries , 2018 .
[11] S. Herculano‐Houzel. Embodied (Embrained?) Cognitive Evolution, at Last! , 2018 .