![]() | Sousa, C., Okamoto, S., Matsuzawa, T. 2003. Behavioural development in a matching-to-sample task and token use by an infant chimpanzee reared by his mother. Animal Cognition 6: 259–267. |
![]() | Sousa-Lima, R. S., Paglia, A. P., Da Fonseca, G. A. B. 2002. Signature information and individual recognition in the isolation calls of Amazonian manatees, Trichechus inunguis (Mammalia: Sirenia). Animal Behaviour 63: 301–310. |
![]() | South, A., LeVan, K., Leombruni, L., Orians, C. M., Lewis, S. M. 2008. Examining the role of cuticular hydrocarbons in firefly species recognition. Ethology 114: 916–924. |
![]() | Southall, B. L., Durban, J. W., Calambokidis, J., Casey, C., Fahlbusch, J. A., Fearnbach, H., Flynn, K. R., Fregosi, S., Friedlaender, A. S., Leander, S. G. M., Visser, F. 2024. Behavioural responses of common dolphins to naval sonar. Royal Society Open Science 11: 240650. |
![]() | Souto, A., Bione, C. B. C., Bastos, M., Bezerra, B. M., Fragaszy, D., Schiel, N. 2011. Critically endangered blonde capuchins fish for termites and use new techniques to accomplish the task. Biology Letters 7: 532–535. |
![]() | Sovrano, V. A., Albertazzi, L., Salva, O. R. 2015. The Ebbinghaus illusion in a fish (Xenotoca eiseni). Animal Cognition 18: 533–542. |
![]() | Sovrano, V. A., Baratti, G., Lee, S. A. 2020. The role of learning and environmental geometry in landmark-based spatial reorientation of fish (Xenotoca eiseni). PLoS One 15: e0229608. |
![]() | Sovrano, V. A., Bisazza, A. 2008. Recognition of partly occluded objects by fish. Animal Cognition 11: 161–166. |
![]() | Sovrano, V. A., Bisazza, A., Vallortigara, G. 2007. How fish do geometry in large and in small spaces. Animal Cognition 10: 47–54. |
![]() | Sovrano, V. A., da Pos, O., Albertazzi, L. 2016. The Müller-Lyer illusion in the teleost fish Xenotoca eiseni. Animal Cognition 19: 123–132. |
![]() | Sovrano, V. A., Truppa, V., Potrich, D., Job, R., Sulpizio, S. 2026. Exploring visual categorical learning in teleost fish Danio rerio and Xenotoca eiseni. Animal Cognition 29: 30. |
![]() | Sowersby, W., Eckerström‐Liedholm, S., Kotrschal, A., Näslund, J., Rowiński, P., Gonzalez‐Voyer, A., Rogell, B. 2021. Fast life‐histories are associated with larger brain size in killifishes. Evolution 75: 2286–2298. |
![]() | Sozou, P. D. 2009. Individual and social discounting in a viscous population. Proceedings of the Royal Society B: Biological Sciences 276: 2955–2962. |
![]() | Spaethe, J., Tautz, J., Chittka, L. 2006. Do honeybees detect colour targets using serial or parallel visual search?. Journal of Experimental Biology 209: 987–93. |
![]() | Spagnoletti, N., Visalberghi, E., Verderane, M. P., Ottoni, E., Izar, P., Fragaszy, D. 2012. Stone tool use in wild bearded capuchin monkeys, Cebus libidinosus. Is it a strategy to overcome food scarcity?. Animal Behaviour 83: 1285–1294. |
![]() | Spano, L., Long, S. M., Jakob, E. M. 2012. Secondary eyes mediate the response to looming objects in jumping spiders (Phidippus audax, Salticidae). Biology Letters 8: 949–951. |
![]() | Sparkman, A. M., Adams, J., Beyer, A., Steury, T. D., Waits, L., Murray, D. L. 2011. Helper effects on pup lifetime fitness in the cooperatively breeding red wolf (Canis rufus). Proceedings of the Royal Society of London B: Biological Sciences 278: 1381–1389. |
![]() | Sparks, A. L., Lailvaux, S. P. 2026. Sleeping under pressure: Sleep site selection in urban brown anole lizards (Anolis sagrei). Ethology 132: 95–103. |
![]() | Spaulding, B., Hauser, M. 2005. What experience is required for acquiring tool competence? Experiments with two callitrichids. Animal Behaviour 70: 517–526. |
![]() | Speechley, E. M., Ashton, B. J., Thornton, A., King, S. L., Simmons, L. W., Woodiss-Field, S. L., Ridley, A. R. 2024. Aggressive interactions influence cognitive performance in Western Australian magpies. Proceedings of the Royal Society B: Biological Sciences 291: 20240435. |
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