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  1. Distributed neural systems for face perception.James V. Haxby & M. Ida Gobbini - 2011 - In Andy Calder, Gillian Rhodes, Mark Johnson & Jim Haxby (eds.), Oxford Handbook of Face Perception. Oxford University Press. pp. 93--110.
    Face perception plays a central role in social communication and is, arguably, one of the most sophisticated visual perceptual skills in humans. The organization of neural systems for face perception has stimulated intense debate. This article presents an updated model of distributed human neural systems for face perception. It opens up with a discussion of the Core System for visual analysis of faces with an emphasis on the distinction between perception of invariant features for identity recognition and changeable features for (...)
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  • The distributed human neural system for face perception.Elizabeth A. Hoffman, M. Ida Gobbini & James V. Haxby - 2000 - Trends in Cognitive Sciences 4 (6):223-233.
    Face perception, perhaps the most highly developed visual skill in humans, is mediated by a distributed neural system in humans that is comprised of multiple, bilateral regions. We propose a model for the organization of this system that emphasizes a distinction between the representation of invariant and changeable aspects of faces. The representation of invariant aspects of faces underlies the recognition of individuals, whereas the representation of changeable aspects of faces, such as eye gaze, expression, and lip movement, underlies the (...)
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  • The Ability Model of Emotional Intelligence: Principles and Updates.Peter Salovey, David R. Caruso & John D. Mayer - 1990 - Emotion Review 8 (4):290-300.
    This article presents seven principles that have guided our thinking about emotional intelligence, some of them new. We have reformulated our original ability model here guided by these principles, clarified earlier statements of the model that were unclear, and revised portions of it in response to current research. In this revision, we also positioned emotional intelligence amidst other hot intelligences including personal and social intelligences, and examined the implications of the changes to the model. We discuss the present and future (...)
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  • Sex differences in facial emotion perception ability across the lifespan.Sally Olderbak, Oliver Wilhelm, Andrea Hildebrandt & Jordi Quoidbach - 2018 - Cognition and Emotion 33 (3):579-588.
    ABSTRACTPerception of emotion in the face is a key component of human social cognition and is considered vital for many domains of life; however, little is known about how this ability differs across the lifespan for men and women. We addressed this question with a large community sample of persons ranging from younger than 15 to older than 60 years of age. Participants were viewers of the television show “Tout le Monde Joue”, and the task was presented on television, with (...)
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  • Age and emotion affect how we look at a face: Visual scan patterns differ for own-age versus other-age emotional faces.Natalie C. Ebner, Yi He & Marcia K. Johnson - 2011 - Cognition and Emotion 25 (6):983-997.
    We investigated how age of faces and emotion expressed in faces affect young (n=30) and older (n=20) adults’ visual inspection while viewing faces and judging their expressions. Overall, expression identification was better for young than older faces, suggesting that interpreting expressions in young faces is easier than in older faces, even for older participants. Moreover, there were age-group differences in misattributions of expressions, in that young participants were more likely to label disgusted faces as angry, whereas older adults were more (...)
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  • Age effects and gaze patterns in recognising emotional expressions: An in-depth look at gaze measures and covariates.Nora A. Murphy & Derek M. Isaacowitz - 2010 - Cognition and Emotion 24 (3):436-452.
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  • Only irrelevant sad but not happy faces are inhibited under high perceptual load.Rashmi Gupta & Narayanan Srinivasan - 2015 - Cognition and Emotion 29 (4):747-754.
    Perceptual load plays a critical role in identification and awareness of stimuli. Given the differences in emotion–attention interactions, we investigated the perception of distractor emotional faces in two different load conditions under divided attention with a task based on the inattentional blindness paradigm. Participants performed a low- or high-load task with a string of letters presented against a happy, sad or neutral face (in a circular form) as the background. Participants were asked to identify the face that appeared in the (...)
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  • Sex differences in scanning faces: Does attention to the eyes explain female superiority in facial expression recognition?Jessica K. Hall, Sam B. Hutton & Michael J. Morgan - 2010 - Cognition and Emotion 24 (4):629-637.
    Previous meta-analyses support a female advantage in decoding non-verbal emotion (Hall, 1978, 1984), yet the mechanisms underlying this advantage are not understood. The present study examined whether the female advantage is related to greater female attention to the eyes. Eye-tracking techniques were used to measure attention to the eyes in 19 males and 20 females during a facial expression recognition task. Women were faster and more accurate in their expression recognition compared with men, and women looked more at the eyes (...)
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  • Emotions help memory for faces: Role of whole and parts.Rashmi Gupta & Narayanan Srinivasan - 2009 - Cognition and Emotion 23 (4):807-816.
    The role of holistic or parts-based processing in face identification has been explored mostly with neutral faces. In the current study, we investigated the nature of processing (holistic vs. parts) in recognition memory for faces with emotional expressions. There were two phases in this experiment: learning phase and test phase. In the learning phase participants learned face–name associations of happy, neutral, and sad faces. The test phase consisted of a two-choice recognition test (whole face, eyes, or mouth) given either immediately (...)
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  • Sex differences in the ability to recognise non-verbal displays of emotion: A meta-analysis.Ashley E. Thompson & Daniel Voyer - 2014 - Cognition and Emotion 28 (7):1164-1195.
    The present study aimed to quantify the magnitude of sex differences in humans' ability to accurately recognise non-verbal emotional displays. Studies of relevance were those that required explicit labelling of discrete emotions presented in the visual and/or auditory modality. A final set of 551 effect sizes from 215 samples was included in a multilevel meta-analysis. The results showed a small overall advantage in favour of females on emotion recognition tasks (d = 0.19). However, the magnitude of that sex difference was (...)
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