Alle Publikationen
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2017
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(2017): A lesion model of envy and Schadenfreude. Legal, deservingness and moral dimensions as revealed by neurodegeneration. In: Brain : a journal of neurology 140 (12), S. 3357-3377. DOI: 10.1093/brain/awx269
DOI: http://www.ncbi.nlm.nih.gov/pubmed/29112719 Abstract: The study of moral emotions (i.e. Schadenfreude and envy) is critical to understand the ecological complexity of everyday interactions between cognitive, affective, and social cognition processes. Most previous studies in this area have used correlational imaging techniques and framed Schadenfreude and envy as unified and monolithic emotional domains. Here, we profit from a relevant neurodegeneration model to disentangle the brain regions engaged in three dimensions of Schadenfreude and envy: deservingness, morality, and legality. We tested a group of patients with behavioural variant frontotemporal dementia (bvFTD), patients with Alzheimer's disease, as a contrastive neurodegeneration model, and healthy controls on a novel task highlighting each of these dimensions in scenarios eliciting Schadenfreude and envy. Compared with the Alzheimer's disease and control groups, patients with bvFTD obtained significantly higher scores on all dimensions for both emotions. Correlational analyses revealed an association between envy and Schadenfreude scores and greater deficits in social cognition, inhibitory control, and behaviour disturbances in bvFTD patients. Brain anatomy findings (restricted to bvFTD and controls) confirmed the partially dissociable nature of the moral emotions' experiences and highlighted the importance of socio-moral brain areas in processing those emotions. In all subjects, an association emerged between Schadenfreude and the ventral striatum, and between envy and the anterior cingulate cortex. In addition, the results supported an association between scores for moral and legal transgression and the morphology of areas implicated in emotional appraisal, including the amygdala and the parahippocampus. By contrast, bvFTD patients exhibited a negative association between increased Schadenfreude and envy across dimensions and critical regions supporting social-value rewards and social-moral processes (dorsolateral prefrontal cortex, angular gyrus and precuneus). Together, this study provides lesion-based evidence for the multidimensional nature of the emotional experiences of envy and Schadenfreude. Our results offer new insights into the mechanisms subsuming complex emotions and moral cognition in neurodegeneration. Moreover, this study presents the exacerbation of envy and Schadenfreude as a new potential hallmark of bvFTD that could impact in diagnosis and progression. zitiert von: 3
Keywords: Aged, Alzheimer’s Disease, Amygdala, BRAIN, Case-Control Studies, Diagnostic Imaging, Emotions, Emotionsforschung, Female, Gyrus Cinguli, Hippocampus, Humans, Male, Middle Aged, Moral, Morals, Neurowissenschaften, Parietal Lobe, Physiopathology, Prefrontal Cortex, PSYCHOLOGY, Social Behavior, Ventral Striatum 2016
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Absher, John R.; Cloutier, Jasmin (Hg.) (2016): Neuroimaging personality, social cognition, and character. Amsterdam, Netherlands: Elsevier
DOI: https://doi.org/10.1016/B978-0-12-800935-2.00012-9 Abstract: Learning new, and regulating existing, emotional responses are two intimately connected survival functions that enable us to flexibly adapt in a constantly changing world. Basic and clinical research has long documented the behavioral effects of these functions in humans and other animals. Here, we survey recent developments in the research on the transmission of emotionally relevant information. In particular, we discuss experiments using behavioral and neurobiological methods to examine how fear and safety information is transmitted between individuals through observation. We discuss how these findings can be understood in light of studies of empathy and mental state attributions and present a simple neurobiological model of emotional learning and regulation that is compatible with empirical evidence in psychology and neuroscience. We close by outlining a few outstanding challenges for future research on social learning and regulation.
2013
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(2013): Why are you looking like that? How the context influences evaluation and processing of human faces. In: Social cognitive and affective neuroscience 8 (4), S. 438-445. DOI: 10.1093/scan/nss013
DOI: http://www.ncbi.nlm.nih.gov/pubmed/22287265 Abstract: Perception and evaluation of facial expressions are known to be heavily modulated by emotional features of contextual information. Such contextual effects, however, might also be driven by non-emotional aspects of contextual information, an interaction of emotional and non-emotional factors, and by the observers' inherent traits. Therefore, we sought to assess whether contextual information about self-reference in addition to information about valence influences the evaluation and neural processing of neutral faces. Furthermore, we investigated whether social anxiety moderates these effects. In the present functional magnetic resonance imaging (fMRI) study, participants viewed neutral facial expressions preceded by a contextual sentence conveying either positive or negative evaluations about the participant or about somebody else. Contextual influences were reflected in rating and fMRI measures, with strong effects of self-reference on brain activity in the medial prefrontal cortex and right fusiform gyrus. Additionally, social anxiety strongly affected the response to faces conveying negative, self-related evaluations as revealed by the participants' rating patterns and brain activity in cortical midline structures and regions of interest in the left and right middle frontal gyrus. These results suggest that face perception and processing are highly individual processes influenced by emotional and non-emotional aspects of contextual information and further modulated by individual personality traits. zitiert von 56
Keywords: Affective Valence, Amygdala, Brain Mapping, Brain/physiology, Cerebral Blood Flow, Context, Emotions/physiology, Face Perception, Face/physiology, Facial Expression, FACIAL EXPRESSIONS, Female, Functional Magnetic Resonance Imaging, Fusiform Gyrus, Humans, Magnetic Resonance Imaging/methods, Male, Neuroanatomy, Neurowissenschaften, Pattern Recognition, Visual/physiology, Perception/physiology, Personality Traits, Photic Stimulation/methods, Self Reference, social anxiety 2012
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(2012): Interplay of oxytocin, vasopressin, and sex hormones in the regulation of social recognition. In: Behavioral neuroscience 126 (1), S. 97-109. DOI: 10.1037/a0026464
DOI: http://www.ncbi.nlm.nih.gov/pubmed/22141469 Abstract: Social Recognition is a fundamental skill that forms the basis of behaviors essential to the proper functioning of pair or group living in most social species. We review here various neurobiological and genetic studies that point to an interplay of oxytocin (OT), arginine-vasopressin (AVP), and the gonadal hormones, estrogens and testosterone, in the mediation of social recognition. Results of a number of studies have shown that OT and its actions at the medial amygdala seem to be essential for social recognition in both sexes. Estrogens facilitate social recognition, possibly by regulating OT production in the hypothalamus and the OT receptors at the medial amygdala. Estrogens also affect social recognition on a rapid time scale, likely through nongenomic actions. The mechanisms of these rapid effects are currently unknown but available evidence points at the hippocampus as the possible site of action. Male rodents seem to be more dependent on AVP acting at the level of the lateral septum for social recognition than female rodents. Results of various studies suggest that testosterone and its metabolites (including estradiol) influence social recognition in males primarily through the AVP V1a receptor. Overall, it appears that gonadal hormone modulation of OT and AVP regulates and fine tunes social recognition and those behaviors that depend upon it (e.g., social bonds, social hierarchies) in a sex specific manner. This points at an important role for these neuroendocrine systems in the regulation of the sex differences that are evident in social behavior and of sociality as a whole.
Keywords: Amygdala, Animals, behaviour, Biologische Marker, Erinnerung, Erkennen von Personen und Situationen, Female, Gonadal Steroid Hormones, hierarchy, Hormone, Hormonhaushalt, Male, Metabolism, Neurobiologie, Neuroscientific social cognition, Oxytocin, physiology, RECOGNITION, Social Behavior, Social recognition, Sozialpsychologie, Status, Vasopressins, Wiedererkennen -
(2012): The social brain in psychiatric and neurological disorders. In: Trends in cognitive sciences 16 (11), S. 559-572. DOI: 10.1016/j.tics.2012.09.006
DOI: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3606817 Abstract: Psychiatric and neurological disorders have historically provided key insights into the structure-function relationships that subserve human social cognition and behavior, informing the concept of the 'social brain'. In this review, we take stock of the current status of this concept, retaining a focus on disorders that impact social behavior. We discuss how the social brain, social cognition, and social behavior are interdependent, and emphasize the important role of development and compensation. We suggest that the social brain, and its dysfunction and recovery, must be understood not in terms of specific structures, but rather in terms of their interaction in large-scale networks.
2011
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(2011): Emotion in the brain: of low roads, high roads and roads less travelled. In: Nature Reviews Neuroscience 12 (7). DOI: 10.1038/nrn2920-c1
2010
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(2010): Emotion processing and the amygdala: from a 'low road' to 'many roads' of evaluating biological significance. In: Nature reviews. Neuroscience 11 (11), S. 773-783. DOI: 10.1038/nrn2920
DOI: https://doi.org/10.1038/nrn2920 Abstract: A subcortical pathway through the superior colliculus and pulvinar to the amygdala is commonly assumed to mediate the non-conscious processing of affective visual stimuli. We review anatomical and physiological data that argue against the notion that such a pathway plays a prominent part in processing affective visual stimuli in humans. Instead, we propose that the primary role of the amygdala in visual processing, like that of the pulvinar, is to coordinate the function of cortical networks during evaluation of the biological significance of affective visual stimuli. Under this revised framework, the cortex has a more important role in emotion processing than is traditionally assumed.
2009
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(2009): The social brain: neural basis of social knowledge. In: Annual review of psychology 60, S. 693-716. DOI: 10.1146/annurev.psych.60.110707.163514
DOI: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2588649 Abstract: Social cognition in humans is distinguished by psychological processes that allow us to make inferences about what is going on inside other people-their intentions, feelings, and thoughts. Some of these processes likely account for aspects of human social behavior that are unique, such as our culture and civilization. Most schemes divide social information processing into those processes that are relatively automatic and driven by the stimuli, versus those that are more deliberative and controlled, and sensitive to context and strategy. These distinctions are reflected in the neural structures that underlie social cognition, where there is a recent wealth of data primarily from functional neuroimaging. Here I provide a broad survey of the key abilities, processes, and ways in which to relate these to data from cognitive neuroscience.
2007
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(2007): Language as context for the perception of emotion. In: Trends in cognitive sciences 11 (8), S. 327-332. DOI: 10.1016/j.tics.2007.06.003
DOI: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2225544 Abstract: In the blink of an eye, people can easily see emotion in another person's face. This fact leads many to assume that emotion perception is given and proceeds independently of conceptual processes such as language. In this paper we suggest otherwise and offer the hypothesis that language functions as a context in emotion perception. We review a variety of evidence consistent with the language-as-context view and then discuss how a linguistically relative approach to emotion perception allows for intriguing and generative questions about the extent to which language shapes the sensory processing involved in seeing emotion in another person's face.
2006
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(2006): Towards the neurobiology of emotional body language. In: Nature reviews. Neuroscience 7 (3), S. 242-249. DOI: 10.1038/nrn1872
DOI: http://www.ncbi.nlm.nih.gov/pubmed/16495945 Abstract: People's faces show fear in many different circumstances. However, when people are terrified, as well as showing emotion, they run for cover. When we see a bodily expression of emotion, we immediately know what specific action is associated with a particular emotion, leaving little need for interpretation of the signal, as is the case for facial expressions. Research on emotional body language is rapidly emerging as a new field in cognitive and affective neuroscience. This article reviews how whole-body signals are automatically perceived and understood, and their role in emotional communication and decision-making.
Keywords: Amygdala, Angst, Animals, Biological, Brain Mapping, dominance, Emotions, entscheiden, Facial Expression, Functional Laterality, Gestik, Humans, Kinesics, Körperhaltung, Mimik, MODELS, Neurobiologie, Neurobiology, Neurowissenschaften, Nonverbale Kommunikation, physiology, Social Perception 1979
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(1979): Radiotelemetered activity from the amygdala during social interactions in the monkey. In: Experimental neurology 66 (1), S. 88-96
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