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  1. The spatial logic of fear.Giulia Ellena, Francesca Starita, Patrick Haggard & Elisabetta Làdavas - 2020 - Cognition 203 (C):104336.
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  • The effects of emotion on attention: A review of attentional processing of emotional information. [REVIEW]Jenny Yiend - 2010 - Cognition and Emotion 24 (1):3-47.
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  • Attentional bias towards happy faces in the dot-probe paradigm: it depends on which task is used.Dirk Wentura, Liliann Messeh & Benedikt Emanuel Wirth - 2024 - Cognition and Emotion 38 (2):217-231.
    Two recent articles [Gronchi et al., Citation2018. Automatic and controlled attentional orienting in the elderly: A dual-process view of the positivity effect. Acta Psychologica, 185, 229–234; Wirth & Wentura, Citation2020. It occurs after all: Attentional bias towards happy faces in the dot-probe task. Attention, Perception, & Psychophysics, 82(5), 2463–2481] report attentional biases for happy facial expressions in the dot-probe paradigm, albeit in different directions. While Wirth and Wentura report a bias towards happy expressions, Gronchi et al. found a reversed effect. (...)
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  • Gender Differences in the Difficulty in Disengaging from Threat among Children and Adolescents With Social Anxiety.Peng Zhang, Wenjin Ni, Ruibo Xie, Jiahua Xu & Xiangping Liu - 2017 - Frontiers in Psychology 8.
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  • The Predictive Role of Low Spatial Frequencies in Automatic Face Processing: A Visual Mismatch Negativity Investigation.Adeline Lacroix, Sylvain Harquel, Martial Mermillod, Laurent Vercueil, David Alleysson, Frédéric Dutheil, Klara Kovarski & Marie Gomot - 2022 - Frontiers in Human Neuroscience 16.
    Visual processing is thought to function in a coarse-to-fine manner. Low spatial frequencies, conveying coarse information, would be processed early to generate predictions. These LSF-based predictions would facilitate the further integration of high spatial frequencies, conveying fine details. The predictive role of LSF might be crucial in automatic face processing, where high performance could be explained by an accurate selection of clues in early processing. In the present study, we used a visual Mismatch Negativity paradigm by presenting an unfiltered face (...)
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  • The proximate mechanisms and ultimate functions of smiles.Marc Mehu & Karim N'Diaye - 2010 - Behavioral and Brain Sciences 33 (6):454-455.
    Niedenthal et al's classification of smiles erroneously conflates psychological mechanisms and adaptive functions. This confusion weakens the rationale behind the types of smiles they chose to individuate, and it obfuscates the distinction between the communicative versus denotative nature of smiles and the role of perceived-gaze direction in emotion recognition.
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  • The future of SIMS: who embodies which smile and when?Paula M. Niedenthal, Martial Mermillod, Marcus Maringer & Ursula Hess - 2010 - Behavioral and Brain Sciences 33 (6):464-480.
    The set of 30 stimulating commentaries on our target article helps to define the areas of our initial position that should be reiterated or else made clearer and, more importantly, the ways in which moderators of and extensions to the SIMS can be imagined. In our response, we divide the areas of discussion into (1) a clarification of our meaning of (2) a consideration of our proposed categories of smiles, (3) a reminder about the role of top-down processes in the (...)
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  • Spatial frequency filtered images reveal differences between masked and unmasked processing of emotional information.Michaela Rohr & Dirk Wentura - 2014 - Consciousness and Cognition 29:141-158.
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  • Psychophysical evidence for distinct contributions in processing low and high spatial frequencies of fearful facial expressions in backward masking task.Agata Sobków & Remigiusz Szczepanowski - 2012 - Polish Psychological Bulletin 43 (3):167-172.
    The present report examined the hypothesis that two distinct visual routes contribute in processing low and high spatial frequencies of fearful facial expressions. Having the participants presented with a backwardly masked task, we analyzed conscious processing of spatial frequency contents of emotional faces according to both objective and subjective taskrelevant criteria. It was shown that fear perception in the presence of the low-frequency faces can be supported by stronger automaticity leading to less false positives. In contrary, the detection of high-frequency (...)
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  • Beyond smiles: The impact of culture and race in embodying and decoding facial expressions.Roberto Caldara - 2010 - Behavioral and Brain Sciences 33 (6):438-439.
    Understanding the very nature of the smile with an integrative approach and a novel model is a fertile ground for a new theoretical vision and insights. However, from this perspective, I challenge the authors to integrate culture and race in their model, because both factors would impact upon the embodying and decoding of facial expressions.
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  • Working Memory Performance for Differentially Conditioned Stimuli.Richard T. Ward, Salahadin Lotfi, Daniel M. Stout, Sofia Mattson, Han-Joo Lee & Christine L. Larson - 2022 - Frontiers in Psychology 12.
    Previous work suggests that threat-related stimuli are stored to a greater degree in working memory compared to neutral stimuli. However, most of this research has focused on stimuli with physically salient threat attributes, failing to account for how a “neutral” stimulus that has acquired threat-related associations through differential aversive conditioning influences working memory. The current study examined how differentially conditioned safe and threat stimuli are stored in working memory relative to a novel, non-associated stimuli. Participants completed a differential fear conditioning (...)
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  • The effect of spatial frequency information and visual similarity in threat detection.Xiaoqing Gao, Vanessa LoBue, Jennifer Irving & Teresa Harvey - 2017 - Cognition and Emotion 31 (5):912-922.
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  • Do Subliminal Fearful Facial Expressions Capture Attention?Diane Baier, Marleen Kempkes, Thomas Ditye & Ulrich Ansorge - 2022 - Frontiers in Psychology 13.
    In two experiments, we tested whether fearful facial expressions capture attention in an awareness-independent fashion. In Experiment 1, participants searched for a visible neutral face presented at one of two positions. Prior to the target, a backward-masked and, thus, invisible emotional or neutral face was presented as a cue, either at target position or away from the target position. If negative emotional faces capture attention in a stimulus-driven way, we would have expected a cueing effect: better performance where fearful or (...)
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