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  1. Automatic imitation in a rich social context with virtual characters.Xueni Pan & Antonia F. De C. Hamilton - 2015 - Frontiers in Psychology 6.
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  • Mimicking and sharing emotions: a re-examination of the link between facial mimicry and emotional contagion.Michal Olszanowski, Monika Wróbel & Ursula Hess - 2020 - Cognition and Emotion 34 (2):367-376.
    ABSTRACTFacial mimicry has long been considered a main mechanism underlying emotional contagion. A closer look at the empirical evidence, however, rev...
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  • The Simulation of Smiles (SIMS) model: Embodied simulation and the meaning of facial expression.Paula M. Niedenthal, Martial Mermillod, Marcus Maringer & Ursula Hess - 2010 - Behavioral and Brain Sciences 33 (6):417.
    Recent application of theories of embodied or grounded cognition to the recognition and interpretation of facial expression of emotion has led to an explosion of research in psychology and the neurosciences. However, despite the accelerating number of reported findings, it remains unclear how the many component processes of emotion and their neural mechanisms actually support embodied simulation. Equally unclear is what triggers the use of embodied simulation versus perceptual or conceptual strategies in determining meaning. The present article integrates behavioral research (...)
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  • Inherently Ambiguous: Facial Expressions of Emotions, in Context.Ran R. Hassin, Hillel Aviezer & Shlomo Bentin - 2013 - Emotion Review 5 (1):60-65.
    With a few yet increasing number of exceptions, the cognitive sciences enthusiastically endorsed the idea that there are basic facial expressions of emotions that are created by specific configurations of facial muscles. We review evidence that suggests an inherent role for context in emotion perception. Context does not merely change emotion perception at the edges; it leads to radical categorical changes. The reviewed findings suggest that configurations of facial muscles are inherently ambiguous, and they call for a different approach towards (...)
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  • Dissociable functions of reward inference in the lateral prefrontal cortex and the striatum.Shingo Tanaka, Xiaochuan Pan, Mineki Oguchi, Jessica E. Taylor & Masamichi Sakagami - 2015 - Frontiers in Psychology 6.
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