17 found
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  1.  40
    Sensory load incurs conceptual processing costs.Nicolas Vermeulen, Olivier Corneille & Paula M. Niedenthal - 2008 - Cognition 109 (2):287-294.
  2.  18
    Switching Between Sensory and Affective Systems Incurs Processing Costs.Nicolas Vermeulen, Paula M. Niedenthal & Olivier Luminet - 2007 - Cognitive Science 31 (1):183-192.
    Recent models of the conceptual system hold that concepts are grounded in simulations of actual experiences with instances of those concepts in sensory-motor systems (e.g., Barsalou, 1999, 2003; Solomon & Barsalou, 2001). Studies supportive of such a viewhave shown that verifying a property of a concept in one modality, and then switching to verify a property of a different concept in a different modality generates temporal processing costs similar to the cost of switching modalities in perception. In addition to non-emotional (...)
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  3.  25
    Switching Between Sensory and Affective Systems Incurs Processing Costs.Nicolas Vermeulen, Paula M. Niedenthal & Olivier Luminet - 2007 - Cognitive Science 31 (1):183-192.
    Recent models of the conceptual system hold that concepts are grounded in simulations of actual experiences with instances of those concepts in sensory-motor systems (e.g., Barsalou, 1999, 2003; Solomon & Barsalou, 2001). Studies supportive of such a viewhave shown that verifying a property of a concept in one modality, and then switching to verify a property of a different concept in a different modality generates temporal processing costs similar to the cost of switching modalities in perception. In addition to non-emotional (...)
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  4.  12
    Alexithymia and the automatic processing of affective information: Evidence from the affective priming paradigm.Nicolas Vermeulen, Olivier Luminet & Olivier Corneille - 2006 - Cognition and Emotion 20 (1):64-91.
    In Study 1, we examined the moderating impact of alexithymia (i.e., a difficulty identifying and describing feelings to other people and an externally oriented cognitive style) on the automatic processing of affective information. The affective priming paradigm was used, and lower priming effects for high alexithymia scorers were observed when congruent (incongruent) pairs involving nonverbal primes (angry face) and verbal target were presented. The results held after controlling for participants' negative affectivity. The same effects were replicated in Studies 2 and (...)
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  5.  22
    “Passion” versus “patience”: the effects of valence and arousal on constructive word recognition.Anne Kever, Delphine Grynberg, Arnaud Szmalec, Eleonore Smalle & Nicolas Vermeulen - 2019 - Cognition and Emotion 33 (6):1302-1309.
    ABSTRACTAccumulating evidence suggests that emotional information is often recognised faster than neutral information. Several studies examined the effects of valence and arousal on word recognition, but yielded partially diverging results. Here, we used two alternative versions of a constructive recognition paradigm in which a target word is hidden by a visual mask that gradually disappears, to investigate whether the emotional properties of words influence their speed of recognition. Participants were instructed either to classify the incrementally appearing word as emotional or (...)
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  6.  54
    Categorical perception of anger is disrupted in alexithymia: Evidence from a visual ERP study.Nicolas Vermeulen, Olivier Luminet, Mariana Cordovil de Sousa & Salvatore Campanella - 2008 - Cognition and Emotion 22 (6):1052-1067.
    High and low alexithymia scorers were confronted with a modified visual oddball task that allowed the study of categorical perception of emotional expressions on faces. Participants had to quickly detect a deviant (rare) morphed face that shared or did not share the same emotional expression as the frequent one. Expected categorical perception effects, which were also neurophysiologically indexed, showed that rare stimuli were detected faster if they depicted a different emotional expression compared to rare stimuli depicting the same emotional expression (...)
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  7.  8
    Switching Between Sensory and Affective SystemsIncurs Processing Costs.Nicolas Vermeulen, Paula M. Niedenthal & Olivier Luminet - 2007 - Cognitive Science: A Multidisciplinary Journal 30 (1):183-192.
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  8.  40
    Neural computation as a tool to differentiate perceptual from emotional processes: The case of anger superiority effect.Martial Mermillod, Nicolas Vermeulen, Daniel Lundqvist & Paula M. Niedenthal - 2009 - Cognition 110 (3):346-357.
  9.  21
    Unintended embodiment of concepts into percepts: Sensory activation boosts attention for same-modality concepts in the attentional blink paradigm.Nicolas Vermeulen, Martial Mermillod, Jimmy Godefroid & Olivier Corneille - 2009 - Cognition 112 (3):467-472.
  10.  9
    Congruent bodily arousal promotes the constructive recognition of emotional words.Anne Kever, Delphine Grynberg & Nicolas Vermeulen - 2017 - Consciousness and Cognition 53:81-88.
  11.  12
    Alexithymia and the automatic processing of affective information: Evidence from the affective priming paradigm.Nicolas Vermeulen, Olivier Luminet & Olivier Corneille - 2006 - Cognition and Emotion 20 (1):64-91.
    In Study 1, we examined the moderating impact of alexithymia (i.e., a difficulty identifying and describing feelings to other people and an externally oriented cognitive style) on the automatic processing of affective information. The affective priming paradigm was used, and lower priming effects for high alexithymia scorers were observed when congruent (incongruent) pairs involving nonverbal primes (angry face) and verbal target were presented. The results held after controlling for participants' negative affectivity. The same effects were replicated in Studies 2 and (...)
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  12.  25
    Re-thinking the causes, processes, and consequences of simulation.Betty Chang & Nicolas Vermeulen - 2010 - Behavioral and Brain Sciences 33 (6):441-442.
    We argue that the meaning of smiles is interpreted from physical/contextual cues, and simulation may simply reinforce the information derived from these cues. We suggest that, contrary to the claim of the SIMS model, positive and negative smiles may invoke similar simulation processes. Finally, we provide alternative explanations for the role of eye contact in the processing of smiles.
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  13.  34
    Distress Response to the Failure to an Insoluble Anagrams Task: Maladaptive Emotion Regulation Strategies in Binge Drinking Students.Marie Poncin, Nicolas Vermeulen & Philippe de Timary - 2017 - Frontiers in Psychology 8.
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  14.  15
    Editorial: Dynamics of Sensorimotor Interactions in Embodied Cognition.Guillaume T. Vallet, Lionel Brunel, Benoit Riou & Nicolas Vermeulen - 2015 - Frontiers in Psychology 6.
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  15.  8
    Alexithymia disrupts verbal short-term memory.Nicolas Vermeulen - 2021 - Cognition and Emotion 35 (3):559-568.
    ABSTRACTWhile some research has now started to suggest that there are long-term memory deficits in alexithymia, short-term memory in alexithymia remained largely unexplored. This study...
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  16.  15
    On the systematic social role of expressed emotions: An embodied perspective.Nicolas Vermeulen - 2009 - Behavioral and Brain Sciences 32 (5):405-406.
    Vigil suggests that expressed emotions are inherently learned and triggered in social contexts. A strict reading of this account is not consistent with the findings that individuals, even those who are congenitally blind, do express emotions in the absence of an audience. Rather, grounded cognition suggests that facial expressions might also be an embodied support used to represent emotional information.
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  17.  19
    Second-person social neuroscience: Connections to past and future theories, methods, and findings.Nicolas Vermeulen, Gordy Pleyers & Martial Mermillod - 2013 - Behavioral and Brain Sciences 36 (4):440-441.
    We argue that Schilbach et al. have neglected an important part of the social neuroscience literature involving participants in social interactions. We also clarify some part of the models the authors discussed superficially. We finally propose that social neuroscience should take into consideration the effect of being observed and the complexity of the task as potentially influencing factors.
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