Kaminski, J. & Marshall-Pescini, S. The Social Dog: Behaviour and Cognition (Elsevier publishers, Dordrecht, 2014).
Brown, D. S. & Johnston, R. E. in Chemical Signals in Vertebrates 3 (ed D Müller-Schwartze) 343–346 (Plenum Press, 1983).
Cafazzo, S., Natoli, E. & Valsecchi, P. Scent-marking behaviour in a pack of free-ranging domestic dogs. Ethology 118, 955–966. https://doi.org/10.1111/j.1439-0310.2012.02088.x (2012).
Lisberg, A. E. & Snowdon, C. T. The effects of sex, gonadectomy and status on investigation patterns of unfamiliar conspecific urine in domestic dogs, Canis familiaris. Anim. Behav. 77, 1147–1154 (2009).
Walker, D. B. et al. Naturalistic quantification of canine olfactory sensitivity. Appl. Anim. Behav. Sci. 97, 241–254. https://doi.org/10.1016/j.applanim.2005.07.009 (2006).
Miklosi, A. Dog Behaviour, Evolution, and Cognition 1st edn, Vol. 304 (Oxford University Press, Oxford, 2007).
Hall, N., Glenn, K., Smith, D. & Wynne, C. Performance of Pugs, German Shepherds, and Greyhounds (Canis lupus familiaris) on an odor-discrimination task. J. Comp. Psychol. 129, 237–246 (2015).
Williams, M. & Johnston, J. M. Training and maintaining the performance of dogs (Canis familiaris) on an increasing number of odor discriminations in a controlled setting. Appl. Anim. Behav. Sci. 78, 55–65. https://doi.org/10.1016/s0168-1591(02)00081-3 (2002).
Alasaad, S. et al. Sarcoptic-mange detector dogs used to identify infected animals during outbreaks in wildlife. Vet. Res. 8, 33 (2012).
Browne, C., Stafford, K. & Fordham, R. The use of scent-detection dogs. Ir. Vet. J. 59, 97–102 (2006).
Dalziel, D. J., Uthman, B. M., McGorray, S. P. & Reep, R. L. Seizure-alert dogs: a review and preliminary study. Seizure-Eur. J. Epilepsy 12, 115–120. https://doi.org/10.1016/s1059-1311(02)00225-x (2003).
Furton, K. G. & Myers, L. J. The Scientific Foundation And Efficacy Of The Use Of Canines And Chemical Detectors For Explosives. Talanta 43, 487–500 (2001).
Gazit, I., Goldblatt, A. & Terkel, J. The role of context specificity in learning: the effects of training context on explosives detection in dogs. Anim. Cogn. 8, 143–150. https://doi.org/10.1007/s10071-004-0236-9 (2005).
Lim, K., Fisher, M. & Burns-Cox, C. J. Type 1 diabetics and their pets. Diabet. Med. 9, S3–S4 (1992).
Lippi, G. & Cervellin, G. Canine olfactory detection of cancer versus laboratory testing: myth or opportunity?. Clin. Chem. Lab. Med. 50, 435–439 (2012).
Marchal, S., Bregeras, O., Puaux, D., Gervais, R. & Ferry, B. Rigorous training of dogs leads to high accuracy in human scent matching-to-sample performance. PLoS ONE 11, e0146963 (2016).
Brisbin, I. L. J. & Austad, S. N. Testing the individual odor theory of canine olfaction. Anim. Behav. 42, 63–70. https://doi.org/10.1016/s0003-3472(05)80606-2 (1991).
Schoon, G. A. A. Scent identification lineups by dogs (Canis familiaris): Experimental design and forensic application. Appl. Anim. Behav. Sci. 49, 257–267. https://doi.org/10.1016/0168-1591(95)00656-7 (1996).
Bräuer, J., Hanus, D., Pika, S., Gray, R. & Uomini, N. Old and new approaches to animal cognition: there is not “One Cognition”. J. Intell. 8, 28. https://doi.org/10.3390/jintelligence8030028 (2020).
Prato Previde, E. & Valsecchi, P. in The Social Dog (eds Juliane Kaminski & S Marshall-Pescini) Ch. 6, 165–190 (Elsevier Publishers, 2014).
Gacsi, M. et al. Species-specific differences and similarities in the behavior of hand-raised dog and wolf pups in social situations with humans. Dev. Psychobiol. 47, 111–122 (2005).
Miklosi, A., Kubinyi, E., Gacsi, M., Viranyi, Z. & Csanyi, V. A simple reason for a big difference: wolves do not look back at humans but dogs do. Curr. Biol. 13, 763–766 (2003).
Marshall-Pescini, S., Rao, A., Virányi, Z. & Range, F. The role of domestication and experience in ‘looking back’ towards humans in an unsolvable task. Sci. Rep. 7, 46636. https://doi.org/10.1038/srep46636 (2017).
Miklosi, A., Polgardi, T. J. & J. & Csányi, V. Intentional behavior in dog-human communication: an experimental analysis of “showing’’ behaviour in the dog”. Anim. Cognit. 3, 159–166 (2000).
Heberlein, M. T. E., Turner, D. C., Range, F. & Virányi, Z. A comparison between wolves, Canis lupus, and dogs, Canis familiaris, in showing behaviour towards humans. Anim. Behav. 122, 59–66. https://doi.org/10.1016/j.anbehav.2016.09.023 (2016).
Henschel, M., Winters, J., Müller, T. F. & Bräuer, J. Effect of shared information and owner behavior on showing in dogs (Canis familiaris). Anim. Cogn. https://doi.org/10.1007/s10071-020-01409-9 (2020).
Kaminski, J., Neumann, M., Bräuer, J., Call, J. & Tomasello, M. Domestic dogs communicate to request and not to inform. Anim. Behav. 82, 651–658 (2011).
Piotti, P. & Kaminski, J. Do dogs provide information helpfully?. PLoS ONE 11, e0159797. https://doi.org/10.1371/journal.pone.0159797 (2016).
Topal, J. et al. Attachment to humans: a comparative study on hand-reared wolves and differently socialized dog puppies. Anim. Behav. 70, 1367–1375 (2005).
Gacsi, M., Topal, J., Miklosi, A., Doka, A. & Csanyi, V. Attachment behavior of adult dogs (Canis familiaris) living at rescue centers: forming new bonds. J. Comp. Psychol. 115, 423–431 (2001).
Hare, B. & Tomasello, M. Human-like social skills in dogs?. Trends Cognit. Sci. 9, 439–444 (2005).
Nagasawa, M. et al. Oxytocin-gaze positive loop and the coevolution of human-dog bonds. Science 348, 333–336. https://doi.org/10.1126/science.1261022 (2015).
Bräuer, J. & Belger, J. A ball is not a Kong: odor representation and search behavior in domestic dogs (Canis familiaris) of different education. J. Comp. Psychol. 132, 189–199. https://doi.org/10.1037/com0000115 (2018).
Hepper, P. G. & Wells, D. L. How many footsteps do dogs need to determine the direction of an odour trail. Chem. Senses 30, 291–298 (2005).
Wells, D. L. & Hepper, P. G. Directional tracking in the domestic dog, Canis familiaris. Appl. Anim. Behav. Sci. 84, 297–305. https://doi.org/10.1016/j.applanim.2003.08.009 (2003).
Polgár, Z., Miklósi, Á. & Gácsi, M. Strategies used by pet dogs for solving olfaction-based problems at various distances. PLoS ONE 10, e0131610. https://doi.org/10.1371/journal.pone.0131610.pmid:26176609 (2015).
Phillips, C. J., Coppinger, R. P. & Schimel, D. S. Hyperthermia in running sled dogs. J. Appl. Physiol. 51, 135–142. https://doi.org/10.1152/jappl.1981.51.1.135 (1981).
Köhler, F. Vergleichende Untersuchungen zur Belastung von Lawinen- und Rettungshunden bei der Lauf- und der Sucharbeit Ph.D. thesis, Ludwig-Maximilians-Universität München (2004).
Snovak, A. E. Guide to search and rescue dogs (Hauppauge, New York, 2004).
Pearsall, M. D. & Verbruggen, H. Scent—Training to Track, Search and Rescue (Alpine Publications, Crawford, 1982).
Syrotuck, W. G. Scent and the Scenting Dog (Barkleigh Productions, Mechanicsburg, 2000).
Judah, J. C. Building a Basic Foundation for Search and Rescue Dog Training (Lulu Publishing, Morrisville, 2007).
Jones, K. E., Dashfield, K., Downend, A. B. & Otto, C. M. Search-and-rescue dogs: an overview for veterinarians. J. Am. Vet. Med. Assoc. 225, 854–860. https://doi.org/10.2460/javma.2004.225.854 (2004).
Wright, G. A. & Thomson, M. G. A. in Chemical Ecology and Phytochemistry of Forest Ecosys-tems (ed J Romeo) 191–226 (Elsevier, 2005).
Woidtke, L., Dreßler, J. & Hädrich-Babian, C. Individual human scent as a forensic identifier using mantrailing. Forensic Sci. Int. 282, 111–121. https://doi.org/10.1016/j.forsciint.2017.11.021 (2017).
Goss, K.-U. Comment on “Individual human scent as a forensic identifier using mantrailing”. Forensic Sci. Int. 297, e19. https://doi.org/10.1016/j.forsciint.2019.02.024 (2019).
Courts, C., Euteneuer, J. & Gosch, A. There is no evidence that dogs can smell DNA—Comment on “Individual human scent as a forensic identifier using mantrailing”. Forensic Sci. Int. 297, e14–e15 (2019).
Jezierski, T., Ensminger, J. & Papet, L. Canine Olfaction Science and Law (CRC Press, Boca Raton, 2016).
Laing, D. G. Natural sniffing gives optimum odour perception for humans. Perception 12, 99–117. https://doi.org/10.1068/p120099 (1983).
Gadbois, S. & Reeve, C. Canine olfaction: scent, sign, and situation. In Domestic Dog Cognition and Behavior: The Scientific Study of Canis familiaris (ed. Horowitz, A.) 3–29 (Springer, Berlin, 2014).
Neuhaus, V. W. The importance of sniffing to the olfaction of the dog. Zeitschrift für Säugetierkunde 46, 301–310 (1981).
Craven, B. A., Paterson, E. G. & Settles, G. S. The fluid dynamics of canine olfaction: unique nasal airflow patterns as an explanation of macrosmia. J. R. Soc. Interface 7, 933–943. https://doi.org/10.1098/rsif.2009.0490 (2010).
Lawson, M. J., Craven, B. A., Paterson, E. G. & Settles, G. S. A Computational study of odorant transport and deposition in the canine nasal cavity: implications for olfaction. Chem. Senses 37, 553–566. https://doi.org/10.1093/chemse/bjs039 (2012).
Gazit, I. & Terkel, J. Domination of olfaction over vision in explosives detection by dogs. Appl. Anim. Behav. Sci. 82, 65–73. https://doi.org/10.1016/S0168-1591(03)00051-0 (2003).
Schmidt-Nielsen, K., Bretz, W. L. & Taylor, C. R. Panting in dogs: unidirectional air flow over evaporative surfaces. Science 169, 1102. https://doi.org/10.1126/science.169.3950.1102 (1970).
Goldberg, M. B., Langman, V. A. & Taylor, C. R. Panting in dogs: paths of air flow in response to heat and exercise. Respir. Physiol. 43, 327–338. https://doi.org/10.1016/0034-5687(81)90113-4 (1981).
Greatbatch, I., Gosling, R. J. & Allen, S. Quantifying search dog effectiveness in a terrestrial search and rescue environment. Wilderness Environ. Med. 26, 327–334. https://doi.org/10.1016/j.wem.2015.02.009 (2015).
Scandurra, A., Alterisio, A., Di Cosmo, A. & D’Aniello, B. Behavioral and Perceptual Differences between Sexes in Dogs: An Overview. Animals (Basel) 8, 151. https://doi.org/10.3390/ani8090151 (2018).
Persson, M. E., Roth, L. S., Johnsson, M., Wright, D. & Jensen, P. Human-directed social behaviour in dogs shows significant heritability. Genes Brain Behav. 14, 337–344. https://doi.org/10.1111/gbb.12194 (2015).
Hamilton, J. & Vonk, J. Do dogs (Canis lupus familiaris) prefer family?. Behav. Proc. 119, 123–134 (2015).
Topál, J. in The Social Dog: behaviour and cognition (eds Juliane Kaminski & Sarah Mashall-Pescini) 319–346 (Elsevier publishers, 2014).
Polgár, Z., Kinnunen, M., Újváry, D., Miklósi, Á. & Gácsi, M. A test of canine olfactory capacity: comparing various dog breeds and wolves in a natural detection task. PLoS ONE 11, e0154087. https://doi.org/10.1371/journal.pone.0154087 (2016).
Jezierski, T. et al. Efficacy of drug detection by fully-trained police dogs varies by breed, training level, type of drug and search environment. Forensic Sci. Int. 237, 112–118. https://doi.org/10.1016/j.forsciint.2014.01.013.pmid:24631776 (2014).
Siniscalchi, M. et al. Sniffing with the right nostril: lateralization of response to odour stimuli by dogs. Anim. Behav. 82, 399–404. https://doi.org/10.1016/j.anbehav.2011.05.020 (2011).
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