toggle visibility Search & Display Options

Select All    Deselect All
 | 
Citations
 | 
   print
Ahrendt, L. P., Christensen, J. W., & Ladewig, J. (2012). The ability of horses to learn an instrumental task through social observation. In Applied Animal Behaviour Science (Vol. 139, pp. 105–113).
toggle visibility
Ahrendt, L. P., Labouriau, R., Malmkvist, J., Nicol, C. J., & Christensen, J. W. (2015). Development of a standard test to assess negative reinforcement learning in horses. Appl. Anim. Behav. Sci., 169, 38–42.
toggle visibility
Ajie, B. C., Pintor, L. M., Watters, J., Kerby, J. L., Hammond, J. I., & Sih, A. (2007). A framework for determining the fitness consequences of antipredator behavior. Behav. Ecol., 18(1), 267–270.
toggle visibility
ALEXANDER, F. (1963). Digestion in the horse. Zool. Garten., , 259–268.
toggle visibility
Amé, J. - M., Halloy, J., Rivault, C., Detrain, C., & Deneubourg, J. L. (2006). Collegial decision making based on social amplification leads to optimal group formation. Proc. Natl. Acad. Sci. U.S.A., 103(15), 5835–5840.
toggle visibility
Amodio, P., Boeckle, M., Schnell, A. K., Ostojic, L., Fiorito, G., & Clayton, N. S. (2018). Grow Smart and Die Young: Why Did Cephalopods Evolve Intelligence? Trends. Ecol. Evol., .
toggle visibility
Anderson, C., & Franks, N. R. (2001). Teams in animal societies. Behav. Ecol., 12(5), 534–540.
toggle visibility
Anderson, M. K., Friend, T. H., Evans, J. W., & Bushong, D. M. (1999). Behavioral assessment of horses in therapeutic riding programs. Appl. Anim. Behav. Sci., 63(1), 11–24.
toggle visibility
Andrew, R. J., Osorio, D., & Budaev, S. (2009). Light during embryonic development modulates patterns of lateralization strongly and similarly in both zebrafish and chick. Phil. Trans. Biol. Sci., 364(1519), 983–989.
toggle visibility
ANSELL, W. F. H. (1960). The breeding of some larger mammals in northern Rhodesia. Proc. Zool. Soc. London., 134.
toggle visibility
Select All    Deselect All
 | 
Citations
 | 
   print