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Laterality
Asymmetries of Brain, Behaviour, and Cognition
Volume 21, 2016 - Issue 3
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Original Articles

Auditory lateralization of conspecific and heterospecific vocalizations in cats

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Pages 215-227 | Received 06 Aug 2015, Accepted 30 Oct 2015, Published online: 30 Nov 2015

References

  • Austin, N. P., & Rogers, L. J. (2012). Limb preferences and lateralization of aggression, reactivity and vigilance in feral horses, Equus caballus. Animal Behaviour, 83(1), 239–247. doi: 10.1016/j.anbehav.2011.10.033
  • Austin, N. P., & Rogers, L. J. (2014). Lateralization of agonistic and vigilance responses in Przewalski horses (Equus przewalskii). Applied Animal Behaviour Science, 151, 43–50. doi: 10.1016/j.applanim.2013.11.011
  • Basile, M., Boivin, S., Boutin, A., Blois-Heulin, C., Hausberger, M., & Lemasson, A. (2009). Socially dependent auditory laterality in domestic horses (Equus caballus). Animal Cognition, 12, 611–619. doi:10.1007/s10071-009-02205
  • Bouissou, M. F., & Vandenheede, M. (1995). Fear reactions of domestic sheep confronted with either a human or a human-like model. Behavioral Processes, 34, 81–92. doi: 10.1016/0376-6357(94)00056-M
  • Böye, M., Güntürkün, O., & Vauclair, J. (2005). Right ear advantage for conspecific calls in adults and subadults, but not infants, California sea lions (Zalophus californianus): Hemispheric specialization for communication? European Journal of Neuroscience, 21, 1727–1732. doi:10.1111/j.1460-9568.2005.04005
  • Carrasco, A., Brown, T. A., Kok, M. A., Chabot, N., Kral, A., & Lomber, S. G. (2013). Influence of core auditory cortical areas on acoustically evoked activity in contralateral primary auditory cortex. Journal of Neuroscience, 33(2), 776–89. doi:10.1523/JNEUROSCI.1784-12.2013
  • Casseday, J. H., & Diamond, I. T. (1977). Symmetrical lateralization of function in the auditory system of the cat: Effects of unilateral ablation of cortex. Annals of the New York Academy of Sciences, 299, 255–263. doi: 10.1111/j.1749-6632.1977.tb41912.x
  • Fabre-Thorpe, M., Fagot, J., Lorincz, E., Levesque, F., & Vauclair, J. (1993). Laterality in cats: Paw preference and performance in a visuomotor activity. Cortex29, 15–24. doi: 10.1016/S0010-9452(13)80208-0
  • Gai, Y., Ruhland, J. L., Yin, T. C., & Tollin, D. J. (2013). Behavioral and modeling studies of sound localization in cats: Effects of stimulus level and duration. Journal of Neurophysiology, 110, 607–620. doi:10.1152/jn.01019.2012
  • Hauser, M. D., Agnetta, B., & Perez, C. (1998). Orienting asymmetries in rhesus monkeys: The effect of time-domain changes on acoustic perception. Animal Behaviour, 56, 41–47. doi:10.1006/anbe.1998.0738
  • Hauser, M. D., & Andersson, K. (1994). Left hemisphere dominance for processing vocalizations in adult, but not infant, rhesus monkeys: Field experiments. Proceedings of the National Academy of Sciences of the United States of America, 91, 3946–3948.
  • Henderson, J. V., Wathes, C. M., Nicol, C. J., White, R. P., & Lines, J. A. (2000). Threat assessment by domestic ducklings using visual signals: Implications for animal–machine interaction. Applied Animal Behavioral Science, 69, 241–253. doi: 10.1016/S0168-1591(00)00132-5
  • Konerding, W. S., Hedrich, H. J., Bleich, E., & Zimmermann, E. (2012). Paw preference is not affected by postural demand in a nonprimate mammal (Felis silvestris catus). Journal of Comparative Psychology, 126, 15–22. doi:10.1037/a0024638
  • Molnár, C., Kaplan, F., Roy, P., Pachet, F., Pongrácz, P., Dóka, A., & Miklósi, A. (2008). Classification of dog barks: A machine learning approach. Animal Cognition, 11, 389–400. doi:10.1007/s10071-007-0129-9
  • Ocklenburg, S., Ströckens, F., & Güntürkün, O. (2013). Lateralisation of conspecific vocalisation in non-human vertebrates. Laterality: Asymmetries of Body, Brain and Cognition, 18, 1–31. doi:10.1080/1357650X.2011.626561
  • Poremba, A., Malloy, M., Saunders, R. C., Carson, R. E., Herscovitch, P., & Mishkin, M. (2004). Species-specific calls evoke asymmetric activity in the monkey's temporal poles. Nature, 427, 448–451. doi:10.1038/nature02268
  • Reinholz-Trojan, A., Włodarczyk, E., Trojan, M., Kulczyński, A., & Stefańska, J. (2012). Hemispheric specialization in domestic dogs (Canis familiaris) for processing different types of acoustic stimuli. Behavioural Processes, 91, 202–205. doi:10.1016/j.beproc.2012.07.001
  • Rogers, L. J., & Andrew, R. J. (2002). Comparative vertebrate lateralization. New York, NY: Cambridge University Press. p. 660.
  • Rogers, L. J., Vallortigara, G., & Andrew, R. J. (2013). Divided brains. The biology and behaviour of brain asymmetries. New York: Cambridge University Press. p. 229.
  • Scheumann, M., & Zimmermann, E. (2008). Sex-specific asymmetries in communication sound perception are not related to hand preference in an early primate. BMC Biology, 6, 3. doi:10.1186/1741-7007-6-3
  • Siniscalchi, M., Lusito, R., Sasso, R., & Quaranta, A. (2012). Are temporal features crucial acoustic cues in dog vocal recognition? Animal Cognition, 15, 815–821. doi:10.1007/s10071-012-0506-x
  • Siniscalchi, M., Lusito, R., Vallortigara, G., & Quaranta, A. (2013). Seeing left- or right-asymmetric tail wagging produces different emotional responses in dogs. Current Biology, 23, 2279–2282. doi:10.1016/j.cub.2013.09.027
  • Siniscalchi, M., Padalino, B., Aubé, L., & Quaranta, A. (2015). Right-nostril use during sniffing at arousing stimuli produces higher cardiac activity in jumper horses. Laterality: Asymmetries of Body, Brain and Cognition, 20, 483–500. doi:10.1080/1357650X.2015.1005629
  • Siniscalchi, M., Quaranta, A., & Rogers, L. J. (2008). Hemispheric specialization in dogs for processing different acoustic stimuli. PLoS One, 3(10), e3349. doi:10.1371/journal.pone.0003349
  • Siniscalchi, M., Sasso, R., Pepe, A. M., Dimatteo, S., Vallortigara, G., & Quaranta, A. (2011). Sniffing with right nostril: Lateralization of response to odour stimuli by dogs. Animal Behaviour, 82, 399–404. doi:10.1016/j.anbehav.2011.05.020
  • Tan, U. (1992). Associations among right minus left brain weight, right- and left-brain weight and the degree of paw preference in right- and left-preferent male and female cats. International Journal of Neuroscience, 66, 177–188.
  • Tan, U., & Kutlu, N. (1992). Asymmetrical relationships between the right and left heights of the sylvian end points in right- and left-pawed male and female cats: Similarities with planum temporale asymmetries in human brain. International Journal of Neuroscience, 67, 81–91. doi:10.3109/00207459208994775
  • Vallortigara, G., Chiandetti, C., & Sovrano, V. A. (2011). “Brain asymmetry (animal).” in Wiley Interdisciplinary Reviews. Cognitive Science, 2, 146–157. doi:10.1002/wcs.100
  • Wakeford, O. S., & Robinson, D. E. (1974). Lateralization of tonal stimuli by the cat. The Journal of the Acoustical Society of America, 55, 649–652. doi: 10.1121/1.1914577
  • Wells, D. L., & Millsopp, S. (2009). Lateralized behaviour in the domestic cat, Felis silvestris catus. Animal Behaviour, 78, 537–541. doi:10.1016/j.anbehav.2009.06.010
  • Xu, L., Furukawa, S., & Middlebrooks, J. C. (1999). Auditory cortical responses in the cat to sounds that produce spatial illusions. Nature, 399, 688–691. doi:10.1038/21424
  • Yin, S., & McCowan, B. (2004). Barking in domestic dogs: Context specificity and individual identification. Animal Behaviour, 68, 343–355. doi:10.1016/j.anbehav.2003.07.016
  • Young, G., & Gagnon, M. (1990). Neonatal laterality, birth stress, familial sinistrality, and left-brain inhibition. Developmental Neuropsychology, 6, 127–150. doi:10.1080/87565649009540455

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