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References 49
VetBooks.ir Barlow, G.W. (1991). Nature‐nurture and the (Pecari tajacu, Tayassuidae) fails to
discriminate between predator and non‐
debates surrounding ethology and
sociobiology. American Zoologist 31 (2):
286–296. predator models. Acta Ethologica 21 (3):
175–184.
Bateson, P. and Laland, K.N. (2013). de Milliano, J., Di Stefano, J., Courtney, P. et al.
Tinbergen’s four questions: an appreciation (2016). Soft‐release versus hard‐release for
and an update. Trends in Ecology & reintroduction of an endangered species: an
Evolution 28: 712–718. experimental comparison using eastern
Brayley, C. and Montrose, V.T. (2016). The barred bandicoots (Perameles gunnii).
effects of audiobooks on the behaviour of Wildlife Research 43 (1): 1–12.
dogs at a rehoming kennels. Applied Animal Damasceno, J., Genaro, G., Quirke, T. et al.
Behaviour Science 174: 111–115. (2017). The effects of intrinsic enrichment
Brooker, J.S. (2016). An investigation of the on captive felids. Zoo Biology 36 (3):
auditory perception of western lowland 186–192.
gorillas in an enrichment study. Zoo Biology DeGregorio, B., Weatherhead, P., Tuberville, T.,
35 (5): 398–408. and Sperry, J. (2013). Time in captivity
Brydges, N.M., Leach, M., Nicol, K. et al. affects foraging behavior of ratsnakes:
(2011). Environmental enrichment induces implications for translocation.
optimistic cognitive bias in rats. Animal Herpetological Conservation and Biology 8
Behaviour 81 (1): 169–175. (3): 581–590.
Clark, F.E. (2017). Cognitive enrichment and DeGregorio, B.A., Sperry, J.H., Tuberville, T.D.,
welfare: current approaches and future and Weatherhead, P.J. (2017). Translocating
directions. Animal Behavior and Cognition ratsnakes: does enrichment offset negative
4 (1): 52–71. effects of time in captivity? Wildlife Research
Clark, F.E. and Smith, L.J. (2013). Effect of a 44 (5): 438–448.
cognitive challenge device containing food Dunston, E.J., Abell, J., Doyle, R.E. et al. (2017).
and non‐food rewards on chimpanzee Investigating the impacts of captive origin,
well‐being. American Journal of Primatology time and vegetation on the daily activity of
75 (8): 807–816. African lion prides. Journal of ethology 35
Cracchiolo, J.R., Mori, T., Nazian, S.J. et al. (2): 187–195.
(2007). Enhanced cognitive activity – over Duyff, R.L. (1999). The value of lifelong
and above social or physical activity – is learning: key element in professional career
required to protect Alzheimer’s mice against development. Journal of the American
cognitive impairment, reduce Aβ Dietetic Association 99 (5): 538–543.
deposition, and increase synaptic Fraser, D. (2008). Understanding Animal
immunoreactivity. Neurobiology of Learning Welfare: The Science in Its Cultural Context.
and Memory 88 (3): 277–294. Chichester, UK: Wiley.
Cremona, T., Crowther, M.S., and Webb, J.K. Griffin, A.S., Blumstein, D.T., and Evans, C.S.
(2017). High mortality and small population (2000). Training captive‐bred or
size prevent population recovery of a translocated animals to avoid predators.
reintroduced mesopredator. Animal Conservation Biology 14 (5): 1317–1326.
Conservation 20 (6): 555–563. Harati, H., Barbelivien, A., Herbeaux, K. et al.
Csikszentmihalyi, M. (1990). Flow: The (2013). Lifelong environmental enrichment
Psychology of Optimal Experience. New in rats: impact on emotional behavior,
York: Harper and Row. spatial memory vividness, and cholinergic
Csikszentmihalyi, M. (1997). Flow and the neurons over the lifespan. Age 35 (4):
Psychology of Discovery and Invention, 39. 1027–1043.
New York: Harper Perennial. Harris, A.P., D’Eath, R.B., and Healy, S.D.
de Faria, C.M., de Souza Sá, F., Costa, D.D.L. (2009). Environmental enrichment enhances
et al. (2018). Captive‐born collared peccary spatial cognition in rats by reducing