Artigos de revistas sobre o tema "Olfaction canine"
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Galibert, F., N. Azzouzi, P. Quignon e G. Chaudieu. "The genetics of canine olfaction". Journal of Veterinary Behavior 10, n.º 5 (setembro de 2015): 441. http://dx.doi.org/10.1016/j.jveb.2015.07.012.
Texto completo da fonteGalibert, Francis, Naoual Azzouzi, Pascale Quignon e Gilles Chaudieu. "The genetics of canine olfaction". Journal of Veterinary Behavior 16 (novembro de 2016): 86–93. http://dx.doi.org/10.1016/j.jveb.2016.06.012.
Texto completo da fonteGuest, Claire, Rob Harris, Karen S. Sfanos, Eva Shrestha, Alan W. Partin, Bruce Trock, Leslie Mangold et al. "Feasibility of integrating canine olfaction with chemical and microbial profiling of urine to detect lethal prostate cancer". PLOS ONE 16, n.º 2 (17 de fevereiro de 2021): e0245530. http://dx.doi.org/10.1371/journal.pone.0245530.
Texto completo da fonteOverall, Karen L. "Canine olfaction: from detection to biomarkers". Journal of Veterinary Behavior 52-53 (junho de 2022): A3—A4. http://dx.doi.org/10.1016/j.jveb.2022.06.006.
Texto completo da fonteArner, L. D., G. R. Johnson e H. S. Skovronek. "Delineating toxic areas by canine olfaction". Journal of Hazardous Materials 13, n.º 3 (agosto de 1986): 375–81. http://dx.doi.org/10.1016/0304-3894(86)85009-9.
Texto completo da fonteQuignon, Pascale, Maud Rimbault, Stéphanie Robin e Francis Galibert. "Genetics of canine olfaction and receptor diversity". Mammalian Genome 23, n.º 1-2 (13 de novembro de 2011): 132–43. http://dx.doi.org/10.1007/s00335-011-9371-1.
Texto completo da fonteBrisbin, I. Lehr, e Steven N. Austad. "Testing the individual odour theory of canine olfaction". Animal Behaviour 42, n.º 1 (julho de 1991): 63–69. http://dx.doi.org/10.1016/s0003-3472(05)80606-2.
Texto completo da fonteKokocińska-Kusiak, Agata, Martyna Woszczyło, Mikołaj Zybala, Julia Maciocha, Katarzyna Barłowska e Michał Dzięcioł. "Canine Olfaction: Physiology, Behavior, and Possibilities for Practical Applications". Animals 11, n.º 8 (21 de agosto de 2021): 2463. http://dx.doi.org/10.3390/ani11082463.
Texto completo da fonteSun, Pengjiao, Yunbo Shi e Yeping Shi. "Bionic sensing system and characterization of exhaled nitric oxide detection based on canine olfaction". PLOS ONE 17, n.º 12 (19 de dezembro de 2022): e0279003. http://dx.doi.org/10.1371/journal.pone.0279003.
Texto completo da fonteCraven, Brent A., Eric G. Paterson e Gary S. Settles. "The fluid dynamics of canine olfaction: unique nasal airflow patterns as an explanation of macrosmia". Journal of The Royal Society Interface 7, n.º 47 (9 de dezembro de 2009): 933–43. http://dx.doi.org/10.1098/rsif.2009.0490.
Texto completo da fonteHorowitz, Alexandra, e Becca Franks. "What smells? Gauging attention to olfaction in canine cognition research". Animal Cognition 23, n.º 1 (12 de outubro de 2019): 11–18. http://dx.doi.org/10.1007/s10071-019-01311-z.
Texto completo da fonteGRANDJEAN, Dominique, Caroline ELIE, Capucine GALLET, Clotilde JULIEN, Vinciane ROGER, Loïc DESQUILBET, Guillaume ALVERGNAT et al. "Diagnostic accuracy of non-invasive detection of SARS-CoV-2 infection by canine olfaction". PLOS ONE 17, n.º 6 (1 de junho de 2022): e0268382. http://dx.doi.org/10.1371/journal.pone.0268382.
Texto completo da fonteJuge, Aiden E., e Courtney L. Daigle. "PSIV-3 Canine olfaction as a disease detection technology: A systematic review". Journal of Animal Science 99, Supplement_3 (8 de outubro de 2021): 295–96. http://dx.doi.org/10.1093/jas/skab235.543.
Texto completo da fonteJuge, Aiden E., Nathan Hall, John Richeson e Courtney L. Daigle. "38 Using Canine Olfaction to Detect Bovine Respiratory Disease: A Pilot Study". Journal of Animal Science 100, Supplement_1 (8 de março de 2022): 19–20. http://dx.doi.org/10.1093/jas/skac028.037.
Texto completo da fonteHuff, Dillon E., Ariela Cantu, Sarah A. Kane, Lauren S. Fernandez, Jaclyn E. Cañas-Carrell, Nathaniel J. Hall e Paola A. Prada-Tiedemann. "Odor Dilution Assessment for Explosive Detection". Analytica 5, n.º 3 (9 de agosto de 2024): 402–13. http://dx.doi.org/10.3390/analytica5030025.
Texto completo da fonteJeong, Seongsoo, Dongwook Kim, Wun-Jae Kim e Gonhyung Kim. "Detection of volatile organic compounds from human prostate cancer cell using canine olfaction". Journal of Veterinary Behavior 49 (março de 2022): 80–84. http://dx.doi.org/10.1016/j.jveb.2021.10.010.
Texto completo da fonteSeo, In-Seok, Hwan-Gon Lee, Bonkon Koo, Chin Su Koh, Hae-Yong Park, Changkyun Im e Hyung-Cheul Shin. "Cross detection for odor of metabolic waste between breast and colorectal cancer using canine olfaction". PLOS ONE 13, n.º 2 (13 de fevereiro de 2018): e0192629. http://dx.doi.org/10.1371/journal.pone.0192629.
Texto completo da fonteYi, Tongmo. "A More Effective and Safer Treatment of Separation Anxiety". Lecture Notes in Education Psychology and Public Media 3, n.º 1 (1 de março de 2023): 121–30. http://dx.doi.org/10.54254/2753-7048/3/2022477.
Texto completo da fonteLawson, M. J., B. A. Craven, E. G. Paterson e G. S. Settles. "A Computational Study of Odorant Transport and Deposition in the Canine Nasal Cavity: Implications for Olfaction". Chemical Senses 37, n.º 6 (2 de abril de 2012): 553–66. http://dx.doi.org/10.1093/chemse/bjs039.
Texto completo da fonteSimon, Alison G., Lauryn E. DeGreeff, Kelvin Frank, Kimberly Peranich, Howard Holness e Kenneth G. Furton. "A Method for Controlled Odor Delivery in Olfactory Field-Testing". Chemical Senses 44, n.º 6 (21 de maio de 2019): 399–408. http://dx.doi.org/10.1093/chemse/bjz031.
Texto completo da fonteJuge, Aiden E., Nathaniel Hall, John T. Richeson e Courtney L. Daigle. "PSV-A-13 Using Canine Olfaction to Detect Bovine Respiratory Disease: An Analysis of two Dogs’ Performance". Journal of Animal Science 100, Supplement_3 (21 de setembro de 2022): 261. http://dx.doi.org/10.1093/jas/skac247.473.
Texto completo da fonteBrooks, Spencer W., Daniel R. Moore, Evan B. Marzouk, Frasier R. Glenn e Robert M. Hallock. "Canine Olfaction and Electronic Nose Detection of Volatile Organic Compounds in the Detection of Cancer: A Review". Cancer Investigation 33, n.º 9 (26 de junho de 2015): 411–19. http://dx.doi.org/10.3109/07357907.2015.1047510.
Texto completo da fonteHackner, Klaus, e Joachim Pleil. "Canine olfaction as an alternative to analytical instruments for disease diagnosis: understanding ‘dog personality’ to achieve reproducible results". Journal of Breath Research 11, n.º 1 (9 de janeiro de 2017): 012001. http://dx.doi.org/10.1088/1752-7163/aa5524.
Texto completo da fonteJezierski, Tadeusz, Marta Walczak, Tomasz Ligor, Joanna Rudnicka e Bogusław Buszewski. "Study of the art: canine olfaction used for cancer detection on the basis of breath odour. Perspectives and limitations". Journal of Breath Research 9, n.º 2 (6 de maio de 2015): 027001. http://dx.doi.org/10.1088/1752-7155/9/2/027001.
Texto completo da fonteSokolenko, L. V., T. M. Sokolenko, Yu L. Yagupolskii, V. I. Kalchenko, Yu V. Veresenko, O. V. Nenia, Yu D. Kuchynskyi et al. "Narcotic Drug Smell Mimics for Dog Training at Cynological Departments: Composition, Principle of Action, and Legal Frame work of their Use". Science and innovation 16, n.º 5 (30 de outubro de 2020): 71–78. http://dx.doi.org/10.15407/scine16.05.071.
Texto completo da fonteWarli, Syah Mirsya, Naufal Nandita Firsty, Adrian Joshua Velaro e Zaimah Zulkarnaini Tala. "The Olfaction Ability of Medical Detection Canine to Detect Prostate Cancer From Urine Samples: Progress Captured in Systematic Review and Meta-Analysis". World Journal of Oncology 14, n.º 5 (outubro de 2023): 358–70. http://dx.doi.org/10.14740/wjon1635.
Texto completo da fonteGrandjean, Dominique, Capucine Gallet, Clothilde Julien, Riad Sarkis, Quentin Muzzin, Vinciane Roger, Didier Roisse et al. "Identifying SARS-COV-2 infected patients through canine olfactive detection on axillary sweat samples; study of observed sensitivities and specificities within a group of trained dogs". PLOS ONE 17, n.º 2 (14 de fevereiro de 2022): e0262631. http://dx.doi.org/10.1371/journal.pone.0262631.
Texto completo da fonteWillis, C. M., L. E. Britton, M. A. Swindells, E. M. Jones, A. E. Kemp, N. L. Muirhead, A. Gul, R. N. Matin, L. Knutsson e M. Ali. "Invasive melanomain vivocan be distinguished from basal cell carcinoma, benign naevi and healthy skin by canine olfaction: a proof-of-principle study of differential volatile organic compound emission". British Journal of Dermatology 175, n.º 5 (11 de setembro de 2016): 1020–29. http://dx.doi.org/10.1111/bjd.14887.
Texto completo da fonteHaines, Aaron. "Canine olfaction science and law: Advances in forensic science, medicine, conservation, and environmental remediation. TadeuszJezierski, JohnEnsminger and L. E.Papet, editors. 2016. CRC Press, Taylor & Francis Group, Boca Raton, Florida, USA. 482 pp. $109". Journal of Wildlife Management 81, n.º 4 (7 de fevereiro de 2017): 742–43. http://dx.doi.org/10.1002/jwmg.21226.
Texto completo da fonteSarkis, R., J. Khazen, M. Issa, A. Khazzaka, G. Hilal e D. Grandjean. "Dépistage du cancer colorectal par détection olfactive canine". Journal de Chirurgie Viscérale 154 (setembro de 2017): 22. http://dx.doi.org/10.1016/j.jchirv.2017.07.068.
Texto completo da fonteGrandjean, Dominique, Florine Hache, Capucine Gallet, Hélène Bacqué, Marc Blondot, Loic Desquilbet, Holger Volk et al. "Acceptation par le public de la détection olfactive canine de la Covid-19 : à propos d’une enquête internationale avant redéploiement". Bulletin de l'Académie Vétérinaire de France 176, n.º 1 (2023): 336–49. http://dx.doi.org/10.3406/bavf.2023.18303.
Texto completo da fonteGrandjean, Dominique, Clothilde Julien, Capucine Gallet e Marc Blondot. "Détection olfactive canine de la COVID-19. Le chien au service dela santé humaine". Médecine de Catastrophe - Urgences Collectives 6, n.º 1 (março de 2022): 59–63. http://dx.doi.org/10.1016/j.pxur.2021.12.003.
Texto completo da fonteMagna, Gabriele, Lorena Di Zazzo, Manuela Stefanelli, Alexandro Catini, Rosamaria Capuano, Roberto Paolesse e Corrado Di Natale. "Porphyrinoids-Junctions Based Chemical Sensors". ECS Meeting Abstracts MA2023-01, n.º 15 (28 de agosto de 2023): 1404. http://dx.doi.org/10.1149/ma2023-01151404mtgabs.
Texto completo da fonteMaurer, Maureen, Michael McCulloch, Angel M. Willey, Wendi Hirsch e Danielle Dewey. "Detection of Bacteriuria by Canine Olfaction". Open Forum Infectious Diseases 3, n.º 2 (2016). http://dx.doi.org/10.1093/ofid/ofw051.
Texto completo da fonteJendrny, Paula, Friederike Twele, Sebastian Meller, Albertus Dominicus Marcellinus Eras Osterhaus, Esther Schalke e Holger Andreas Volk. "Canine olfactory detection and its relevance to medical detection". BMC Infectious Diseases 21, n.º 1 (19 de agosto de 2021). http://dx.doi.org/10.1186/s12879-021-06523-8.
Texto completo da fonte"Studies in canine olfaction, taste and feeding". Peptides 6, n.º 4 (julho de 1985): 795. http://dx.doi.org/10.1016/0196-9781(85)90188-3.
Texto completo da fonte"Studies in Canine Olfaction, Taste and Feedin". Pharmacology Biochemistry and Behavior 22, n.º 1 (janeiro de 1985): 166. http://dx.doi.org/10.1016/0091-3057(85)90506-4.
Texto completo da fonteMaidodou, Laetitia, Igor Clarot, Michelle Leemans, Isabelle Fromantin, Eric Marchioni e Damien Steyer. "Unraveling the potential of breath and sweat VOC capture devices for human disease detection: a systematic-like review of canine olfaction and GC-MS analysis". Frontiers in Chemistry 11 (1 de novembro de 2023). http://dx.doi.org/10.3389/fchem.2023.1282450.
Texto completo da fonteKhan, Michael Z., Alejandra Mondino, Katharine Russell, Beth Case, Gilad Fefer, Hope Woods, Natasha Olby e Margaret Gruen. "A novel task of canine olfaction for use in adult and senior pet dogs". Scientific Reports 13, n.º 1 (8 de fevereiro de 2023). http://dx.doi.org/10.1038/s41598-023-29361-x.
Texto completo da fonteJuge, Aiden E., Margaret F. Foster e Courtney L. Daigle. "Canine Olfaction as a Disease Detection Technology: A Systematic Review". Applied Animal Behaviour Science, junho de 2022, 105664. http://dx.doi.org/10.1016/j.applanim.2022.105664.
Texto completo da fonteGrandjean, Dominique, Florine Hache, Capucine Gallet, Hélène Bacqué, Marc Blondot, Loïc Desquilbet, Holger Volk et al. "Acceptation par le public de la détection olfactive canine de la CoViD-19 : à propos d’une enquête internationale avant redéploiement". Bulletin de l'Académie vétérinaire de France 176 (2023). http://dx.doi.org/10.3406/bavf.2023.71014.
Texto completo da fonteJuge, Aiden E., Nathaniel J. Hall, John T. Richeson e Courtney L. Daigle. "Using Canine Olfaction to Detect Bovine Respiratory Disease: A Pilot Study". Frontiers in Veterinary Science 9 (1 de julho de 2022). http://dx.doi.org/10.3389/fvets.2022.902151.
Texto completo da fonteMaurer, Maureen, Todd Seto, Claire Guest, Amendeep Somal e Catherine Julian. "Detection of SARS-CoV-2 by Canine Olfaction: A Pilot Study". Open Forum Infectious Diseases, 7 de maio de 2022. http://dx.doi.org/10.1093/ofid/ofac226.
Texto completo da fonteKim, Soohwan, Sandeepan Mukherjee, Jordi Fonollosa e David L. Hu. "Canine-inspired Unidirectional Flows for Improving Memory Effects in Machine Olfaction". Integrative And Comparative Biology, 25 de abril de 2023. http://dx.doi.org/10.1093/icb/icad016.
Texto completo da fonteGrandjean, Dominique, Capucine Gallet, Clothilde Julien, Marc Blondot e Hélène Bacqué. "La détection biomédicale canine, un potentiel inexploité dans la gestion immédiate des crises épi/pandémiques et bioterrotistes… Application à la CoViD-19 dans le cadre du programme NOSAÏS". Bulletin de l'Académie vétérinaire de France 175 (2022). http://dx.doi.org/10.3406/bavf.2022.71013.
Texto completo da fonteAngle, Craig T., Joseph J. Wakshlag, Robert L. Gillette, Todd Steury, Pamela Haney, Jay Barrett e Terrence Fisher. "The effects of exercise and diet on olfactory capability in detection dogs". Journal of Nutritional Science 3 (2014). http://dx.doi.org/10.1017/jns.2014.35.
Texto completo da fonteMouton, Alice, Deborah Bird, Gang Li, Brent A. Craven, Jonathan M. Levine, Marco Morselli, Matteo Pellegrini, Blaire Van Valkenburgh, Robert K. Wayne e William J. Murphy. "Genetic and anatomical determinants of olfaction in dogs and wild canids". Molecular Biology and Evolution, 14 de fevereiro de 2025. https://doi.org/10.1093/molbev/msaf035.
Texto completo da fonteBerg, Päivi, Tapio Mappes e Miiamaaria V. Kujala. "Olfaction in the canine cognitive and emotional processes: from behavioral and neural viewpoints to measurement possibilities". Neuroscience & Biobehavioral Reviews, dezembro de 2023, 105527. http://dx.doi.org/10.1016/j.neubiorev.2023.105527.
Texto completo da fonteCraven, Brent A., Eric G. Paterson, Gary S. Settles e Michael J. Lawson. "Development and Verification of a High-Fidelity Computational Fluid Dynamics Model of Canine Nasal Airflow". Journal of Biomechanical Engineering 131, n.º 9 (4 de agosto de 2009). http://dx.doi.org/10.1115/1.3148202.
Texto completo da fonteJuge, Aiden E., Nathaniel J. Hall, John T. Richeson, Reinaldo F. Cooke e Courtney L. Daigle. "Dogs' ability to detect an inflammatory immune response in cattle via olfaction". Frontiers in Veterinary Science 11 (9 de abril de 2024). http://dx.doi.org/10.3389/fvets.2024.1393289.
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