Visual perception of emotion cues in dogs: a critical review of methodologies
暂无分享,去创建一个
[1] M. Nagasawa,et al. Increase of tear volume in dogs after reunion with owners is mediated by oxytocin , 2022, Current Biology.
[2] D. Buchsbaum,et al. Head-mounted mobile eye-tracking in the domestic dog: A new method , 2022, Behavior Research Methods.
[3] C. Völter,et al. Pupil size changes reveal dogs’ sensitivity to motion cues , 2022, iScience.
[4] F. Range,et al. Comparing wolves and dogs: current status and implications for human ‘self-domestication’ , 2022, Trends in Cognitive Sciences.
[5] C. Völter,et al. Dogs' looking times and pupil dilation response reveal expectations about contact causality , 2021, Biology Letters.
[6] Tanya Behne,et al. Dogs distinguish human intentional and unintentional action , 2021, Scientific Reports.
[7] Emma Tecwyn. Doing reliable research in comparative psychology: Challenges and proposals for improvement. , 2021, Journal of Comparative Psychology.
[8] C. Völter,et al. Dogs follow human misleading suggestions more often when the informant has a false belief , 2021, Proceedings of the Royal Society B.
[9] Natalia Albuquerque,et al. Do Emotional Cues Influence the Performance of Domestic Dogs in an Observational Learning Task? , 2021, Frontiers in Psychology.
[10] N. Clayton,et al. The hidden side of animal cognition research: Scientists’ attitudes toward bias, replicability and scientific practice , 2021, PloS one.
[11] L. Marinelli,et al. I know a dog when I see one: dogs (Canis familiaris) recognize dogs from videos , 2021, Animal Cognition.
[12] B. Hare,et al. Is cognition the secret to working dog success? , 2021, Animal Cognition.
[13] Sai Sheshan Roy Gotoor,et al. Dog–human social relationship: representation of human face familiarity and emotions in the dog brain , 2021, Animal Cognition.
[14] D. Mills,et al. ‘Puppy Dog Eyes’ Are Associated With Eye Movements, Not Communication , 2021, Frontiers in Psychology.
[15] J. Svoboda,et al. Turning preference in dogs: North attracts while south repels , 2021, PloS one.
[16] D. Mills,et al. Bodily emotional expressions are a primary source of information for dogs, but not for humans , 2021, Animal Cognition.
[17] L. Huber,et al. Neural Responses of Pet Dogs Witnessing Their Caregiver’s Positive Interactions with a Conspecific: An fMRI Study , 2021, Cerebral cortex communications.
[18] Claus Lamm,et al. Tailored haemodynamic response function increases detection power of fMRI in awake dogs (Canis familiaris) , 2020, NeuroImage.
[19] Sanni Somppi,et al. Observing animals and humans: dogs target their gaze to the biological information in natural scenes , 2020, PeerJ.
[20] Alan S. Cowen,et al. Sixteen facial expressions occur in similar contexts worldwide , 2020, Nature.
[21] Isabella C. Wagner,et al. Exploring the dog–human relationship by combining fMRI, eye-tracking and behavioural measures , 2020, Scientific Reports.
[22] Ludwig Huber,et al. Dogs accurately track a moving object on a screen and anticipate its destination , 2020, Scientific Reports.
[23] Jan Kujala,et al. Time-resolved classification of dog brain signals reveals early processing of faces, species and emotion , 2020, Scientific Reports.
[24] Emma L. Axelsson,et al. Humans’ pupillary contagion extends to cats and dogs , 2020, Social cognitive and affective neuroscience.
[25] A. Bhadra,et al. Sociability of Indian free-ranging dogs (Canis lupus familiaris) varies with human movement in urban areas. , 2020, Journal of Comparative Psychology.
[26] Á. Miklósi,et al. Movement and vocal intonation together evoke social referencing in companion dogs when confronted with a suspicious stranger , 2020, Animal Cognition.
[27] T. Ogura,et al. Dogs (Canis familiaris) Gaze at Our Hands: A Preliminary Eye-Tracker Experiment on Selective Attention in Dogs , 2020, Animals : an open access journal from MDPI.
[28] Á. Miklósi,et al. On the Face of It: No Differential Sensitivity to Internal Facial Features in the Dog Brain , 2020, Frontiers in Behavioral Neuroscience.
[29] Á. Miklósi,et al. Do dogs mind the dots? Investigating domestic dogs' ( Canis familiaris ) preferential looking at human‐shaped point‐light figures , 2020 .
[30] Á. Miklósi,et al. Dogs can sense weak thermal radiation , 2020, Scientific Reports.
[31] J. O’Keefe,et al. Two Distinct Types of Eye-Head Coupling in Freely Moving Mice , 2020, Current Biology.
[32] D. Mills,et al. Perception of dynamic facial expressions of emotion between dogs and humans , 2020, Animal Cognition.
[33] K. Holmqvist,et al. Dog eye movements are slower than human eye movements , 2020, Journal of eye movement research.
[34] R. Rumiati,et al. Facial responses of adult humans during the anticipation and consumption of touch and food rewards , 2020, Cognition.
[35] L. Huber,et al. Challenges in the comparative study of empathy and related phenomena in animals , 2020, Neuroscience & Biobehavioral Reviews.
[36] Enrico Glerean,et al. Bodily maps of emotions are culturally universal. , 2020, Emotion.
[37] A. Bhadra,et al. Free-Ranging Dogs Are Capable of Utilizing Complex Human Pointing Cues , 2020, Frontiers in Psychology.
[38] H. Chaloupková,et al. Salivary cortisol as a marker of acute stress in dogs: a review. , 2019, Domestic animal endocrinology.
[39] D. Mills,et al. Differences in facial expressions during positive anticipation and frustration in dogs awaiting a reward , 2019, Scientific Reports.
[40] M. Nagasawa,et al. Endocrine Regulations in Human–Dog Coexistence through Domestication , 2019, Trends in Endocrinology & Metabolism.
[41] Paolo Mongillo,et al. Local Dot Motion, Not Global Configuration, Determines Dogs’ Preference for Point-Light Displays , 2019, Animals : an open access journal from MDPI.
[42] L. Huber,et al. Training pet dogs for eye-tracking and awake fMRI , 2019, Behavior research methods.
[43] Alan S. Cowen,et al. What Basic Emotion Theory Really Says for the Twenty-First Century Study of Emotion , 2019, Journal of Nonverbal Behavior.
[44] A. Guastella,et al. Canine Endogenous Oxytocin Responses to Dog-Walking and Affiliative Human–Dog Interactions , 2019, Animals : an open access journal from MDPI.
[45] A. J. Fridlund,et al. Inside-Out: From Basic Emotions Theory to the Behavioral Ecology View , 2019, Journal of Nonverbal Behavior.
[46] Katalin Oláh,et al. Auditory–Visual Matching of Conspecifics and Non-Conspecifics by Dogs and Human Infants , 2019, Animals : an open access journal from MDPI.
[47] S. Begall,et al. Dogs can be trained to find a bar magnet , 2018, PeerJ.
[48] E. Baxter,et al. Facial expression as a potential measure of both intent and emotion , 2018, Scientific Reports.
[49] Sai Sheshan Roy Gotoor,et al. Separate brain areas for processing human and dog faces as revealed by awake fMRI in dogs (Canis familiaris) , 2018, Learning & Behavior.
[50] Philippe A. Chouinard,et al. What do dogs (Canis familiaris) see? A review of vision in dogs and implications for cognition research , 2018, Psychonomic bulletin & review.
[51] S. Lea,et al. In what sense are dogs special? Canine cognition in comparative context , 2018, Learning & Behavior.
[52] A. Wilkinson,et al. Truth is in the eye of the beholder: Perception of the Müller-Lyer illusion in dogs , 2018, Learning & behavior.
[53] A. Di Cosmo,et al. Behavioral and Perceptual Differences between Sexes in Dogs: An Overview , 2018, Animals : an open access journal from MDPI.
[54] M. Siniscalchi,et al. Communication in Dogs , 2018, Animals : an open access journal from MDPI.
[55] T. Hasegawa,et al. Cross-modal perception of human emotion in domestic horses (Equus caballus) , 2018, Scientific Reports.
[56] G. Pérez-Camargo,et al. Can you spare 15 min? The measurable positive impact of a 15-min petting session on shelter dog well-being , 2018, Applied Animal Behaviour Science.
[57] D. Mills,et al. A Systematic Review of the Reliability and Validity of Behavioural Tests Used to Assess Behavioural Characteristics Important in Working Dogs , 2018, Front. Vet. Sci..
[58] A. J. Fridlund,et al. Facial Displays Are Tools for Social Influence , 2018, Trends in Cognitive Sciences.
[59] F. Gaunet,et al. Behavioral synchronization and affiliation: Dogs exhibit human-like skills , 2018, Learning & Behavior.
[60] E. Kubinyi,et al. Sex, skull length, breed, and age predict how dogs look at faces of humans and conspecifics , 2018, Animal Cognition.
[61] D. Mills,et al. Noise Sensitivities in Dogs: An Exploration of Signs in Dogs with and without Musculoskeletal Pain Using Qualitative Content Analysis , 2018, Front. Vet. Sci..
[62] Á. Miklósi,et al. Neural processes of vocal social perception: Dog-human comparative fMRI studies , 2018, Neuroscience & Biobehavioral Reviews.
[63] D. Mills,et al. Sociability modifies dogs’ sensitivity to biological motion of different social relevance , 2018, Animal Cognition.
[64] M. Siniscalchi,et al. Lateralized behavior and cardiac activity of dogs in response to human emotional vocalizations , 2018, Scientific Reports.
[65] O. Lind,et al. High visual acuity revealed in dogs , 2017, PloS one.
[66] Cátia Caeiro. Animal and human emotion: Concepts and methodologies , 2017 .
[67] M. Bentosela,et al. Are animal‐assisted activity dogs different from pet dogs? A comparison of their sociocognitive abilities , 2017 .
[68] D. Mills,et al. Dogs and humans respond to emotionally competent stimuli by producing different facial actions , 2017, Scientific Reports.
[69] B. Waller,et al. Rethinking primate facial expression: A predictive framework , 2017, Neuroscience & Biobehavioral Reviews.
[70] Laurie R Santos,et al. Uncovering the origins of dog–human eye contact: dingoes establish eye contact more than wolves, but less than dogs , 2017, Animal Behaviour.
[71] J. Topál,et al. The Way Dogs (Canis familiaris) Look at Human Emotional Faces Is Modulated by Oxytocin. An Eye-Tracking Study , 2017, Front. Behav. Neurosci..
[72] Juliane Kaminski,et al. Human attention affects facial expressions in domestic dogs , 2017, Scientific Reports.
[73] C. Krause,et al. Nasal Oxytocin Treatment Biases Dogs’ Visual Attention and Emotional Response toward Positive Human Facial Expressions , 2017, Front. Psychol..
[74] Rachael E. Jack,et al. Discovering cultural differences (and similarities) in facial expressions of emotion. , 2017, Current opinion in psychology.
[75] J. Svoboda,et al. Directional preference in dogs: Laterality and "pull of the north" , 2017, PloS one.
[76] N. Gee,et al. Effects of Affiliative Human–Animal Interaction on Dog Salivary and Plasma Oxytocin and Vasopressin , 2017, Front. Psychol..
[77] J. Bräuer,et al. The effects of domestication and ontogeny on cognition in dogs and wolves , 2017, Scientific Reports.
[78] Alan S. Cowen,et al. Self-report captures 27 distinct categories of emotion bridged by continuous gradients , 2017, Proceedings of the National Academy of Sciences.
[79] D. Mills. Perspectives on assessing the emotional behavior of animals with behavior problems , 2017, Current Opinion in Behavioral Sciences.
[80] A. Boissy,et al. Behavioral and physiological reactions in dogs to a veterinary examination: Owner-dog interactions improve canine well-being , 2017, Physiology & Behavior.
[81] D. Mills,et al. Noise sensitivities in dogs: a new licensed treatment option , 2017, Veterinary Record.
[82] L. Huber,et al. Dogs demonstrate perspective taking based on geometrical gaze following in a Guesser–Knower task , 2017, Animal Cognition.
[83] L. Huber,et al. Understanding dog cognition by functional magnetic resonance imaging , 2017, Learning & behavior.
[84] M. Manser,et al. Dogs’ (Canis familiaris) Attention to Human Perception: Influence of Breed Groups and Life Experiences , 2017, Journal of comparative psychology.
[85] M. Bekoff,et al. A Cross-Species Comparative Approach to Positive Emotion Disturbance , 2017 .
[86] L. F. Barrett. The theory of constructed emotion: an active inference account of interoception and categorization , 2016, Social cognitive and affective neuroscience.
[87] Eugenia Polizzi di Sorrentino,et al. Oxytocin improves the ability of dogs to follow informative pointing: a neuroemotional hypothesis , 2017, Rendiconti Lincei.
[88] D. Mills,et al. Companion Animal Economics: The Economic Impact of Companion Animals in the UK , 2016 .
[89] A. Buttner. Neurobiological underpinnings of dogs’ human-like social competence: How interactions between stress response systems and oxytocin mediate dogs’ social skills , 2016, Neuroscience & Biobehavioral Reviews.
[90] D. Mills,et al. Dynamic changes in ear temperature in relation to separation distress in dogs , 2016, Physiology & Behavior.
[91] C. Wynne. What Is Special About Dog Cognition? , 2016 .
[92] M. Adams,et al. A Review of Cognitive Abilities in Dogs, 1911 Through 2016 , 2016 .
[93] L. Huber. How Dogs Perceive and Understand Us , 2016 .
[94] Á. Miklósi,et al. Current Trends in Canine Problem-Solving and Cognition , 2016, Current directions in psychological science.
[95] Łukasz Żurawski,et al. Do Dynamic Compared to Static Facial Expressions of Happiness and Anger Reveal Enhanced Facial Mimicry? , 2016, PloS one.
[96] Alexander Todorov,et al. Contributions of facial expressions and body language to the rapid perception of dynamic emotions , 2016, Cognition & emotion.
[97] Kazushi Ikeda,et al. Heart rate variability predicts the emotional state in dogs , 2016, Behavioural Processes.
[98] Paola Valsecchi,et al. How good is this food? A study on dogs' emotional responses to a potentially pleasant event using infrared thermography , 2016, Physiology & Behavior.
[99] Ludwig Huber,et al. The Processing of Human Emotional Faces by Pet and Lab Dogs: Evidence for Lateralization and Experience Effects , 2016, PloS one.
[100] B. Smuts,et al. Investigating the function of play bows in adult pet dogs (Canis lupus familiaris) , 2016, Behavioural Processes.
[101] D. Mills,et al. Differences in Trait Impulsivity Indicate Diversification of Dog Breeds into Working and Show Lines , 2016, Scientific Reports.
[102] Luis Concha,et al. Our Faces in the Dog's Brain: Functional Imaging Reveals Temporal Cortex Activation during Perception of Human Faces , 2016, PloS one.
[103] M. Fukuzawa,et al. Evaluation of Physiological Responses to Human Approach Manner in Pet Dogs , 2016 .
[104] Heini Törnqvist,et al. Dogs Evaluate Threatening Facial Expressions by Their Biological Validity – Evidence from Gazing Patterns , 2016, PloS one.
[105] D. Mills,et al. Dogs recognize dog and human emotions , 2016, Biology Letters.
[106] G. Deshpande,et al. Functional Magnetic Resonance Imaging of the Domestic Dog: Research, Methodology, and Conceptual Issues. , 2016, Comparative cognition & behavior reviews.
[107] J. Topál,et al. The effect of oxytocin on biological motion perception in dogs (Canis familiaris) , 2016, Animal Cognition.
[108] Ludwig Huber,et al. Aging effects on discrimination learning, logical reasoning and memory in pet dogs , 2016, AGE.
[109] E. Palagi,et al. Rapid mimicry and emotional contagion in domestic dogs , 2015, Royal Society Open Science.
[110] I. Charrier,et al. Aggressive Bimodal Communication in Domestic Dogs, Canis familiaris , 2015, PloS one.
[111] C. Krause,et al. Comparison of dogs and humans in visual scanning of social interaction , 2015, Royal Society Open Science.
[112] Michael C. Frank,et al. Estimating the reproducibility of psychological science , 2015, Science.
[113] Daniel D. Dilks,et al. Awake fMRI reveals a specialized region in dog temporal cortex for face processing , 2015, PeerJ.
[114] Rachael E. Jack,et al. The Human Face as a Dynamic Tool for Social Communication , 2015, Current Biology.
[115] J. Higham,et al. Perspectives: The Looking Time Experimental Paradigm in Studies of Animal Visual Perception and Cognition , 2015 .
[116] M. Balconi,et al. What hemodynamic (fNIRS), electrophysiological (EEG) and autonomic integrated measures can tell us about emotional processing , 2015, Brain and Cognition.
[117] Linda J. Keeling,et al. Dog behavior but not frontal brain reaction changes in repeated positive interactions with a human: A non-invasive pilot study using functional near-infrared spectroscopy (fNIRS) , 2015, Behavioural Brain Research.
[118] Ludwig Huber,et al. Dogs Can Discriminate Emotional Expressions of Human Faces , 2015, Current Biology.
[119] M. Gácsi,et al. Oxytocin induces positive expectations about ambivalent stimuli (cognitive bias) in dogs , 2015, Hormones and Behavior.
[120] Á. Miklósi. Dog Behaviour, Evolution, and Cognition , 2015 .
[121] N. Clayton,et al. Are owners' reports of their dogs’ ‘guilty look’ influenced by the dogs’ action and evidence of the misdeed? , 2015, Behavioural Processes.
[122] Paola Valsecchi,et al. Hot dogs: Thermography in the assessment of stress in dogs (Canis familiaris)—A pilot study , 2015 .
[123] F. Kuhne,et al. Emotions in dogs being petted by a familiar or unfamiliar person: Validating behavioural indicators of emotional states using heart rate variability , 2014 .
[124] Katalin Oláh,et al. Emotional contagion in dogs as measured by change in cognitive task performance , 2014 .
[125] G. Berns,et al. One pair of hands is not like another: caudate BOLD response in dogs depends on signal source and canine temperament , 2014, PeerJ.
[126] Paolo Mongillo,et al. Part-Based and Configural Processing of Owner's Face in Dogs , 2014, PloS one.
[127] R. Grace,et al. Visual perspective taking by dogs (Canis familiaris) in a Guesser–Knower task: evidence for a canine theory of mind? , 2014, Animal Cognition.
[128] Takefumi Kikusui,et al. Oxytocin promotes social bonding in dogs , 2014, Proceedings of the National Academy of Sciences.
[129] David J. Anderson,et al. A Framework for Studying Emotions across Species , 2014, Cell.
[130] Alexander Sumaroka,et al. Canine Retina Has a Primate Fovea-Like Bouquet of Cone Photoreceptors Which Is Affected by Inherited Macular Degenerations , 2014, PloS one.
[131] Á. Miklósi,et al. Voice-Sensitive Regions in the Dog and Human Brain Are Revealed by Comparative fMRI , 2014, Current Biology.
[132] Oliver G. B. Garrod,et al. Dynamic Facial Expressions of Emotion Transmit an Evolving Hierarchy of Signals over Time , 2014, Current Biology.
[133] P. Carnier,et al. Hierarchical stimulus processing by dogs (Canis familiaris) , 2014, Animal Cognition.
[134] C. Krause,et al. How dogs scan familiar and inverted faces: an eye movement study , 2014, Animal Cognition.
[135] S. Marshall-Pescini,et al. Dogs’ comprehension of referential emotional expressions: familiar people and familiar emotions are easier , 2014, Animal Cognition.
[136] P. Nováková,et al. Dogs are sensitive to small variations of the Earth’s magnetic field , 2013, Frontiers in Zoology.
[137] Juliane Kaminski,et al. Paedomorphic Facial Expressions Give Dogs a Selective Advantage , 2013, PloS one.
[138] G. Berns,et al. Replicability and Heterogeneity of Awake Unrestrained Canine fMRI Responses , 2013, PloS one.
[139] G. Vallortigara,et al. Seeing Left- or Right-Asymmetric Tail Wagging Produces Different Emotional Responses in Dogs , 2013, Current Biology.
[140] Juliane Kaminski,et al. Do dogs get the point? A review of dog-human communication ability , 2013 .
[141] Min Hooi Yong,et al. Social referencing: dogs’ use of emotional signals from an unfamiliar person , 2013 .
[142] B. D’Aniello,et al. Social referencing: Water rescue trained dogs are less affected than pet dogs by the stranger's message , 2013 .
[143] H. Friedman,et al. Classifying dogs’ (Canis familiaris) facial expressions from photographs , 2013, Behavioural Processes.
[144] J. Kujala,et al. Visual event-related potentials of dogs: a non-invasive electroencephalography study , 2013, Animal Cognition.
[145] Márta Gácsi,et al. Human Analogue Safe Haven Effect of the Owner: Behavioural and Heart Rate Response to Stressful Social Stimuli in Dogs , 2013, PloS one.
[146] Ralph Adolphs,et al. The Biology of Fear , 2013, Current Biology.
[147] B. Waller,et al. Facial Expression in Nonhuman Animals , 2013 .
[148] M. Tomasello,et al. Dogs steal in the dark , 2013, Animal Cognition.
[149] L. Huber,et al. Do Owners Have a Clever Hans Effect on Dogs? Results of a Pointing Study , 2012, Front. Psychology.
[150] Marco Ferrari,et al. A brief review on the history of human functional near-infrared spectroscopy (fNIRS) development and fields of application , 2012, NeuroImage.
[151] Miiamaaria V. Kujala,et al. Dog Experts' Brains Distinguish Socially Relevant Body Postures Similarly in Dogs and Humans , 2012, PloS one.
[152] D. Custance,et al. Empathic-like responding by domestic dogs (Canis familiaris) to distress in humans: an exploratory study , 2012, Animal Cognition.
[153] G. Berns,et al. Functional MRI in Awake Unrestrained Dogs , 2012, PloS one.
[154] D. Mills,et al. Reading Faces: Differential Lateral Gaze Bias in Processing Canine and Human Facial Expressions in Dogs and 4-Year-Old Children , 2012, PloS one.
[155] Oliver G. B. Garrod,et al. Facial expressions of emotion are not culturally universal , 2012, Proceedings of the National Academy of Sciences.
[156] Paul D. McGreevy,et al. An overview of the dog–human dyad and ethograms within it , 2012 .
[157] Á. Miklósi,et al. Dogs' Gaze Following Is Tuned to Human Communicative Signals , 2012, Current Biology.
[158] Rachael E. Jack,et al. Internal representations reveal cultural diversity in expectations of facial expressions of emotion. , 2012, Journal of experimental psychology. General.
[159] M. Tomasello,et al. Can domestic dogs (Canis familiaris) use referential emotional expressions to locate hidden food? , 2012, Animal Cognition.
[160] S. Marshall-Pescini,et al. Social referencing in dog-owner dyads? , 2012, Animal Cognition.
[161] C. Krause,et al. Dogs do look at images: eye tracking in canine cognition research , 2011, Animal Cognition.
[162] Jaak Panksepp,et al. Neuroscience and Biobehavioral Reviews the Basic Emotional Circuits of Mammalian Brains: Do Animals Have Affective Lives? , 2022 .
[163] Jessica L. Tracy,et al. Four Models of Basic Emotions: A Review of Ekman and Cordaro, Izard, Levenson, and Panksepp and Watt , 2011 .
[164] L. de Sousa,et al. ‘Canis empathicus’? A proposal on dogs' capacity to empathize with humans , 2011, Biology Letters.
[165] Alexandra Horowitz. Theory of mind in dogs? Examining method and concept , 2011, Learning & behavior.
[166] M. Mendl,et al. Using judgement bias to measure positive affective state in dogs , 2011 .
[167] Eileen Kowler. Eye movements: The past 25years , 2011, Vision Research.
[168] C. Wynne,et al. Can your dog read your mind? Understanding the causes of canine perspective taking , 2011, Learning & behavior.
[169] M. Nagasawa,et al. Dogs can discriminate human smiling faces from blank expressions , 2011, Animal Cognition.
[170] S. O'hara,et al. A test of the yawning contagion and emotional connectedness hypothesis in dogs, Canis familiaris , 2011, Animal Behaviour.
[171] Fiona J. Williams,et al. Development of a head-mounted, eye-tracking system for dogs , 2011, Journal of Neuroscience Methods.
[172] Á. Miklósi,et al. Dogs' Expectation about Signalers' Body Size by Virtue of Their Growls , 2010, PloS one.
[173] K. Meints,et al. Atypical face-scan patterns in children misinterpreting dogs facial expressions evidence from eye-tracking , 2010, Injury Prevention.
[174] G. Rhodes,et al. A comparative view of face perception. , 2010, Journal of comparative psychology.
[175] Angel M. Elgier,et al. Author's Personal Copy Behavioural Processes , 2022 .
[176] Jennifer M. D. Yoon,et al. Contagious yawning: a reflection of empathy, mimicry, or contagion? , 2010, Animal Behaviour.
[177] G. Vallortigara,et al. Dogs turn left to emotional stimuli , 2010, Behavioural Brain Research.
[178] K. Meints,et al. Brief report: Don't kiss a sleeping dog: the first assessment of "the blue dog" bite prevention program. , 2009, Journal of pediatric psychology.
[179] J. Serpell,et al. Having Our Dogs and Eating Them Too: Why Animals Are a Social Issue , 2009 .
[180] Á. Miklósi,et al. Effects of selection for cooperation and attention in dogs , 2009, Behavioral and Brain Functions.
[181] S. Dobson. Socioecological correlates of facial mobility in nonhuman anthropoids. , 2009, American journal of physical anthropology.
[182] Maria J Grant,et al. A typology of reviews: an analysis of 14 review types and associated methodologies. , 2009, Health information and libraries journal.
[183] K. Phillips,et al. Do dogs (Canis familiaris) show contagious yawning? , 2009, Animal Cognition.
[184] Pamela J. Reid,et al. Adapting to the human world: Dogs’ responsiveness to our social cues , 2009, Behavioural Processes.
[185] R. Lane,et al. Claude Bernard and the heart–brain connection: Further elaboration of a model of neurovisceral integration , 2009, Neuroscience & Biobehavioral Reviews.
[186] S. Dobson. Allometry of facial mobility in anthropoid primates: implications for the evolution of facial expression. , 2009, American journal of physical anthropology.
[187] M. Tomasello,et al. Assessing the validity of ape-human comparisons: a reply to Boesch (2007). , 2008, Journal of comparative psychology.
[188] A. Senju,et al. Dogs catch human yawns , 2008, Biology Letters.
[189] L. Rogers,et al. Hemispheric Specialization in Dogs for Processing Different Acoustic Stimuli , 2008, PloS one.
[190] C. Wynne,et al. A review of domestic dogs' (Canis familiaris) human-like behaviors: or why behavior analysts should stop worrying and love their dogs. , 2008, Journal of the experimental analysis of behavior.
[191] Alexandra Horowitz,et al. Attention to attention in domestic dog (Canis familiaris) dyadic play , 2008, Animal Cognition.
[192] L. Huber,et al. Visual categorization of natural stimuli by domestic dogs , 2008, Animal Cognition.
[193] I. Veissier,et al. Exploration of the hypothalamic–pituitary–adrenal function as a tool to evaluate animal welfare , 2007, Physiology & Behavior.
[194] C. Izard. Basic Emotions, Natural Kinds, Emotion Schemas, and a New Paradigm , 2007, Perspectives on psychological science : a journal of the Association for Psychological Science.
[195] Lars Chittka,et al. Distinguishing signals and cues: bumblebees use general footprints to generate adaptive behaviour at flowers and nest , 2007, Arthropod-Plant Interactions.
[196] Brian Hare,et al. From Nonhuman to Human Mind , 2007 .
[197] Hillary Anger Elfenbein,et al. Toward a dialect theory: cultural differences in the expression and recognition of posed facial expressions. , 2007, Emotion.
[198] R. Aslin. What's in a look? , 2007, Developmental science.
[199] K. Kendrick,et al. Behavioural and neurophysiological evidence for face identity and face emotion processing in animals , 2006, Philosophical Transactions of the Royal Society B: Biological Sciences.
[200] Ádám Miklósi,et al. Acoustic parameters of dog barks carry emotional information for humans , 2006 .
[201] I. Duncan,et al. The changing concept of animal sentience , 2006 .
[202] I. Adachi,et al. Dogs recall their owner's face upon hearing the owner's voice , 2006, Animal Cognition.
[203] L. F. Barrett. Are Emotions Natural Kinds? , 2006, Perspectives on psychological science : a journal of the Association for Psychological Science.
[204] K. Scherer. What are emotions? And how can they be measured? , 2005 .
[205] Márta Gácsi,et al. A friend or an enemy? Dogs' reaction to an unfamiliar person showing behavioural cues of threat and friendliness at different times , 2005 .
[206] W. Hofmann,et al. A Meta-Analysis on the Correlation Between the Implicit Association Test and Explicit Self-Report Measures , 2005, Personality & social psychology bulletin.
[207] Á. Miklósi,et al. Species-specific differences and similarities in the behavior of hand-raised dog and wolf pups in social situations with humans. , 2005, Developmental psychobiology.
[208] Michael Tomasello,et al. Human-like social skills in dogs? , 2005, Trends in Cognitive Sciences.
[209] M. Mendl,et al. Measuring emotional processes in animals: the utility of a cognitive approach , 2005, Neuroscience & Biobehavioral Reviews.
[210] David B. Lindenmayer,et al. Continua and Umwelt: novel perspectives on viewing landscapes , 2004 .
[211] Jeffrey F. Cohn,et al. The Timing of Facial Motion in posed and Spontaneous Smiles , 2003, Int. J. Wavelets Multiresolution Inf. Process..
[212] R. Seyfarth,et al. Meaning and Emotion in Animal Vocalizations , 2003, Annals of the New York Academy of Sciences.
[213] Antonio Damasio,et al. Feelings of Emotion and the Self , 2003, Annals of the New York Academy of Sciences.
[214] Clinton D. Kilts,et al. Dissociable Neural Pathways Are Involved in the Recognition of Emotion in Static and Dynamic Facial Expressions , 2003, NeuroImage.
[215] P. Marler,et al. The Umwelt and its relevance to animal communication: introduction to special issue. , 2002, Journal of comparative psychology.
[216] Ádám Miklósi,et al. Social learning in dogs: the effect of a human demonstrator on the performance of dogs in a detour task , 2001, Animal Behaviour.
[217] K. Overall,et al. Frequency of nonspecific clinical signs in dogs with separation anxiety, thunderstorm phobia, and noise phobia, alone or in combination. , 2001, Journal of the American Veterinary Medical Association.
[218] D. Keltner,et al. Social Functions of Emotions at Four Levels of Analysis , 1999 .
[219] E. Deci,et al. A meta-analytic review of experiments examining the effects of extrinsic rewards on intrinsic motivation. , 1999, Psychological bulletin.
[220] Á. Miklósi,et al. Use of experimenter-given cues in dogs , 1998, Animal Cognition.
[221] John Garcia and Andrew R. Gustavson. The Science of Self-Report , 1997 .
[222] J. Russell. Is there universal recognition of emotion from facial expression? A review of the cross-cultural studies. , 1994, Psychological bulletin.
[223] P. Ekman. An argument for basic emotions , 1992 .
[224] P. Ekman,et al. Facial signs of emotional experience. , 1980 .
[225] M. Bekoff. Social Communication in Canids: Evidence for the Evolution of a Stereotyped Mammalian Display , 1977, Science.
[226] H W Shipton,et al. EGG analysis: a history and a prospectus. , 1975, Annual review of biophysics and bioengineering.