Alle Publikationen
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2017
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(2017): Perceived differences in social status between speaker and listener affect the speaker's vocal characteristics. In: PLoS one 12 (6). DOI: 10.1371/journal.pone.0179407
DOI: http://www.ncbi.nlm.nih.gov/pubmed/28614413 Abstract: Non-verbal behaviours, including voice characteristics during speech, are an important way to communicate social status. Research suggests that individuals can obtain high social status through dominance (using force and intimidation) or through prestige (by being knowledgeable and skilful). However, little is known regarding differences in the vocal behaviour of men and women in response to dominant and prestigious individuals. Here, we tested within-subject differences in vocal parameters of interviewees during simulated job interviews with dominant, prestigious, and neutral employers (targets), while responding to questions which were classified as introductory, personal, and interpersonal. We found that vocal modulations were apparent between responses to the neutral and high-status targets, with participants, especially those who perceived themselves as low in dominance, increasing fundamental frequency (F0) in response to the dominant and prestigious targets relative to the neutral target. Self-perceived prestige, however, was less related to contextual vocal modulations than self-perceived dominance. Finally, we found that differences in the context of the interview questions participants were asked to respond to (introductory, personal, interpersonal), also affected their vocal parameters, being more prominent in responses to personal and interpersonal questions. Overall, our results suggest that people adjust their vocal parameters according to the perceived social status of the listener as well as their own self-perceived social status.
Keywords: Acoustic Stimulation, Adolescent, Adult, Auditory Perception/physiology, Diagnostic Self Evaluation, Female, fundamental frequency, Humans, Interviews as Topic/methods, Macht, Male, Middle Aged, Social Class, Social Perception, Socioeconomic Factors, Soziale Dominanz, Speech Acoustics, Speech/physiology, Status / biologische Marker, Stimme, Stimme / Prosodie, Voice/physiology, Young Adult 2014
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(2014): How does the extraction of local and global auditory regularities vary with context?. In: PLoS one 9 (9). DOI: 10.1371/journal.pone.0107227
DOI: http://www.ncbi.nlm.nih.gov/pubmed/25197987 Abstract: How does the human brain extract regularities from its environment? There is evidence that short range or 'local' regularities (within seconds) are automatically detected by the brain while long range or 'global' regularities (over tens of seconds or more) require conscious awareness. In the present experiment, we asked whether participants' attention was needed to acquire such auditory regularities, to detect their violation or both. We designed a paradigm in which participants listened to predictable sounds. Subjects could be distracted by a visual task at two moments: when they were first exposed to a regularity or when they detected violations of this regularity. MEG recordings revealed that early brain responses (100-130 ms) to violations of short range regularities were unaffected by visual distraction and driven essentially by local transitional probabilities. Based on global workspace theory and prior results, we expected that visual distraction would eliminate the long range global effect, but unexpectedly, we found the contrary, i.e. late brain responses (300-600 ms) to violations of long range regularities on audio-visual trials but not on auditory only trials. Further analyses showed that, in fact, visual distraction was incomplete and that auditory and visual stimuli interfered in both directions. Our results show that conscious, attentive subjects can learn the long range dependencies present in auditory stimuli even while performing a visual task on synchronous visual stimuli. Furthermore, they acquire a complex regularity and end up making different predictions for the very same stimulus depending on the context (i.e. absence or presence of visual stimuli). These results suggest that while short-range regularity detection is driven by local transitional probabilities between stimuli, the human brain detects and stores long-range regularities in a highly flexible, context dependent manner.
2011
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(2011): Learning of timing patterns and the development of temporal expectations. In: Psychological research 75 (3), S. 243-258. DOI: 10.1007/s00426-010-0302-7
DOI: http://www.ncbi.nlm.nih.gov/pubmed/20683612 Abstract: The present study investigated the learning of a culturally unfamiliar musical rhythm, leading to the development of temporal expectations, and it explored the potential for generalization across tempi and tasks. With that aim, we adapted the serial reaction time task to examine the learning of temporal structures by an indirect method. The temporal pattern employed was based on a complex interval ratio (2:3) and compared to one based on a simple interval ratio (1:2). In the exposure phase, non-musician participants performed a two-choice speeded discrimination task that required responding by key press to each event of the simple or complex auditory pattern. Participants were not informed about the temporal regularities; their task solely concerned the discrimination task. During exposure (Experiments 1-3), response times decreased over time for both temporal patterns, but particularly for the events following the longer interval of the more complex 2:3 pattern. Exposure further influenced performance in subsequent testing phases, notably the precision of tap timing in a production task (Experiment 2) and temporal expectations in a perception task (Experiment 3). Our findings promote the new paradigm introduced here as a method to investigate the learning of temporal structures. zitiert von 23
2004
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(2004): Thinking the voice: neural correlates of voice perception. In: Trends in cognitive sciences 8 (3), S. 129-135. DOI: 10.1016/j.tics.2004.01.008
DOI: https://doi.org/10.1016/j.tics.2004.01.008 Abstract: The human voice is the carrier of speech, but also an "auditory face" that conveys important affective and identity information. Little is known about the neural bases of our abilities to perceive such paralinguistic information in voice. Results from recent neuroimaging studies suggest that the different types of vocal information could be processed in partially dissociated functional pathways, and support a neurocognitive model of voice perception largely similar to that proposed for face perception.
Keywords: Auditory Perception/physiology, Brain Mapping, Cerebral Cortex/physiology, Concept Formation/physiology, Humans, Image Processing, Computer-Assisted, Imaging, Three-Dimensional, Interpersonal Relations, Magnetic Resonance Imaging, Positron-Emission Tomography, Sound Spectrography, Speech Acoustics, Speech Perception/physiology, VOICE
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