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The emotion of surprise entails a complex of immediate responses, such as cognitive interruption, attention allocation to, and more systematic processing of the surprising stimulus. All these processes serve the ultimate function to increase processing depth and thus cognitively master the surprising stimulus. The present account introduces phasic negative affect as the underlying mechanism responsible for this switch in operating mode. Surprising stimuli are schema discrepant and thus entail cognitive disfluency, which elicits immediate negative affect. This affect in turn works like a phasic cognitive tuning switching the current processing mode from more automatic and heuristic to more systematic and reflective processing. Directly testing the initial elicitation of negative affect by surprising events, the present experiment presented high and low surprising neutral trivia statements to N = 28 participants while assessing their spontaneous facial expressions via facial electromyography. High compared to low surprising trivia elicited higher corrugator activity, indicative of negative affect and mental effort, while leaving zygomaticus (positive affect) and frontalis (cultural surprise expression) activity unaffected. Future research shall investigate the mediating role of negative affect in eliciting surprise-related outcomes.
In the last years, it has become general consensus that actions change our time perception. Performing an action to elicit a specific event seems to lead to a systematic underestimation of the interval between action and effect, a phenomenon termed temporal (or previously intentional) binding. Temporal binding has been closely associated with sense of agency, our perceived control over our actions and our environment, and because of its robust behavioral effects has indeed been widely utilized as an implicit correlate of sense of agency. The most robust and clear temporal binding effects are typically found via Libet clock paradigms. In the present study, we investigate a crucial methodological confound in these paradigms that provides an alternative explanation for temporal binding effects: a redirection of attentional resources in two-event sequences (as in classical operant conditions) versus singular events (as in classical baseline conditions). Our results indicate that binding effects in Libet clock paradigms may be based to a large degree on such attentional processes, irrespective of intention or action-effect sequences. Thus, these findings challenge many of the previously drawn conclusions and interpretations with regard to actions and time perception.
Respiratory sinus arrhythmia (RSA) is related to cardiac vagal outflow and the respiratory pattern. Prior infant studies have not systematically examined respiration rate and tidal volume influences on infant RSA or the extent to which infants' breathing is too fast to extract a valid RSA. We therefore monitored cardiac activity, respiration, and physical activity in 23 six-month old infants during a standardized laboratory stressor protocol. On average, 12.6% (range 0-58.2%) of analyzed breaths were too short for RSA extraction. Higher respiration rate was associated with lower RSA amplitude in most infants, and lower tidal volume was associated with lower RSA amplitude in some infants. RSA amplitude corrected for respiration rate and tidal volume influences showed theoretically expected strong reductions during stress, whereas performance of uncorrected RSA was less consistent. We conclude that stress-induced changes of peak-valley RSA and effects of variations in breathing patterns on RSA can be determined for a representative percentage of infant breaths. As expected, breathing substantially affects infant RSA and needs to be considered in studies of infant psychophysiology.
Humans spontaneously blink several times a minute. These blinks are strongly modulated during various cognitive task. However, the precise function of blinking and the reason for their modulation has not been fully understood. In the present work, I investigated the function of spontaneous blinks through various perceptual and cognitive tasks. Previous research has revealed that blinks rates decrease during some tasks but increase during others. When trying to understand these seemingly contradictory results, I observed that blink reduction occurs when one engages with an external input. For instance, a decrease has been observed due to the onset of a stimulus, sensory input processing and attention towards sensory input. However, for activities that do not involve such an engagement, e.g. imagination, daydreaming or creativity, the blink rate has been shown to increase. To follow up on the proposed hypothesis, I distinguished tasks that involve the processing of an external stimulus and tasks that involve disengagement.
In the first part of the project, I explored blinking during stimulus engagement. If the probability of blinking is low when engaging with the stimulus, then one should find a reduction in blinks specifically during the time period of processing but not during sensory input per se. To this end, in study 1, I tested the influence of task-relevant information duration on blink timing and additionally manipulated the overall sensory input using a visual and an auditory temporal simultaneity judgement task. The results showed that blinks were suppressed longer for longer periods of relevant information or in other words, blinks occurred at the end of relevant information processing for both the visual and the auditory modality. Since relevance is mediated through top-down processes, I argue that the reduction in blinks is a top-down driven suppression. In studies 2 and 3, I again investigated stimulus processing, but in this case, processing was triggered internally and not based on specific changes in the external input. To this end, I used bistable stimuli, in which the actual physical stimulus remains constant but their perception switches between different interpretations. Studies on the involvement of attention in such bistable perceptual changes indicate that the sensory input is reprocessed before the perceptual switch. The results revealed a reduction in eye blink rates before the report of perceptual switches. Importantly, I was able to decipher that the decrease was not caused by the perceptual switch or the behavioral response but likely started before the internal switch. Additionally, periods between a blink and a switch were longer than interblink intervals, indicating that blinks were followed by a period of stable percept. To conclude, the first part of the project revealed that there is a top-down driven blink suppression during the processing of an external stimulus.
In the second part of the project, I extended the idea of blinks marking the disengagement from external processing and tested if blinking is associated with better performance during internally directed processes. Specifically, I investigated divergent thinking, an aspect of creativity, and the link between performance and blink rates as well as the effect of motor restriction. While I could show that motor restriction was the main factor influencing divergent thinking, the relationship between eye blink rates and creative output also depended on restriction. Results showed that higher blink rates were associated with better performance during free movement, but only between subjects. In other words, subjects who had overall higher blink rates scored better in the task, but when they were allowed to sit or walk freely. Within a single subject, trial with higher blink rates were not associated with better performance. Therefore, possibly, people who are able to disengage easily, as indicated by an overall high blink rate, perform better in divergent thinking tasks. However, the link between blink rate and internal tasks is not clear at this point. Indeed, a more complex measurement of blink behavior might be necessary to understand the relationship.
In the final part of the project, I aimed to further understand the function of blinks through their neural correlates. I extracted the blink-related neural activity in the primary visual cortex (V1) of existing recordings of three rhesus monkeys during different sensory processing states. I analyzed spike related multi-unit responses, frequency dependent power changes, local field potentials and laminar distribution of activity while the animal watched a movie compared to when it was shown a blank screen. The results showed a difference in blink-related neural activity dependent on the processing state. This difference suggests a state dependent function of blinks.
Taken altogether, the work presented in this thesis suggests that eye blinks have an important function during cognitive and perceptual processes. Blinks seem to facilitate a disengagement from the external world and are therefore suppressed during intended processing of external stimuli.
In our current obesogenic environment, exposure to visual food-cues can easily lead to craving and overeating because short-term, pleasurable effects of food intake dominate over the anticipated long-term adverse effects such as weight gain and associated health problems. Here we contrasted these two conditions during food-cue presentation while acquiring event-related potentials (ERPs) and subjective craving ratings. Female participants (n = 25) were presented with either high-calorie (HC) or low-calorie (LC) food images under instructions to imagine either immediate (NOW) or long-term effects (LATER) of consumption. On subjective ratings for HC foods, the LATER perspective reduced cravings as compared to the NOW perspective. For LC foods, by contrast, craving increased under the LATER perspective. Early ERPs (occipital N1, 150-200 ms) were sensitive to food type but not to perspective. Late ERPs (late positive potential, LPP, 350-550 ms) were larger in the HC-LATER condition than in all other conditions, possibly indicating that a cognitive focus on negative long-term consequences induced negative arousal. This enhancement for HC-LATER attenuated to the level of the LC conditions during the later slow wave (550-3000 ms), but amplitude in the HC-NOW condition was larger than in all other conditions, possibly due to a delayed appetitive response. Across all conditions, LPP amplitudes were positively correlated with self-reported emotional eating. In sum, results reveal that regulation effects are secondary to an early attentional analysis of food type and dynamically evolve over time. Adopting a long-term perspective on eating might promote a healthier food choice across a range of food types.
Worauf achtet der Fahrer? Steuerung der Aufmerksamkeit beim Fahren mit visuellen Nebenaufgaben
(2009)
Die Arbeit befasst sich mit der Steuerung der Aufmerksamkeit während visueller Nebenaufgaben beim Fahren. Es wird angenommen, dass für die visuelle Wahrnehmung beim Fahren drei Prozesse zur Steuerung der Aufmerksamkeit beitragen. (1) Über top-down Prozesse wird die Aufmerksamkeit auf für die aktuelle Handlung besonders relevante Situationsbestandteile gelenkt. (2) Explorative Wahrnehmung dient dazu, ein umfassenderes Situationsmodell zu entwickeln, das neben aktuell handlungssteuernden Situationsbestandteilen auch andere, potentiell aufgabenrelevante Ob¬jekte zu einem umfassenderen Abbild der Situation integriert. (3) Saliente Reize können über bottom-up Aktivierung die Aufmerksamkeit auf sich ziehen. Es ist bekannt, dass Fahrer während der Bearbeitung visueller Zweitaufgaben mit ihrem Blick und damit mit ihrer Aufmerksamkeit wiederholt zwischen Fahr- und Nebenaufgabe wechseln. Grundlage der experimentellen Arbeiten ist die Idee, dass hierbei die Ausrichtung der Aufmerksamkeit in der Fahraufgabe über top-down Prozesse gesteuert wird und auf einem mentalen Abbild der Situation basiert. Vor dem Beginn der Nebenaufgabe fokussiert der Fahrer auf die Fahrsituation, bewertet sie und entwickelt eine Antizipation der zukünftigen Situationsentwicklung. Das entstehende Situationsmodell entscheidet darüber, wie viel Aufmerksamkeit während der Nebenaufgabe auf die Fahraufgabe verwendet wird, und welche Situationsbestandteile durch die Blicke zur Straße kontrolliert werden. Der Fahrer lenkt über top-down Prozesse seine Aufmerksamkeit auf als relevant für die Situationsentwicklung bewertete Objekte. Andere Objekte, sowie eine von der aktuellen Fahraufgabe unabhängige, explorative Wahrnehmung der Fahrsituation werden während der Nebenaufgabe vernachlässigt. Aus der Literatur ergeben sich außerdem Hinweise darauf, dass eine reizbasierte bottom-up Ausrichtung der Aufmerksamkeit während visueller Ablenkung zumindest eingeschränkt, wenn nicht sogar zeitweise vollständig unterdrückt ist. Die durchgeführten experimentellen Arbeiten finden in der Fahrsimulation Belege für die angenommen top-down Steuerung der Aufmerksamkeit während visueller Nebenaufgaben beim Fahren. Es werden zwei unterschiedliche Messansätze verwendet. Studie 1 und 2 greifen auf die Analyse des Blickverhaltens zurück. In diesen beiden Studien absolvieren die Testfahrer längere, anspruchsvolle Fahrten, während denen visuelle Nebenaufgaben bearbeitet werden. Es ergeben sich Hinweise auf eine tiefere visuelle Verarbeitung der Fahrszene direkt vor dem Beginn der Nebenaufgabe. Während der Bearbeitung der visuellen Nebenaufgaben passen die Fahrer ihre Aufmerksamkeitsverteilung an die Erfordernisse der Fahrsituation an: In anspruchsvollen Fahrsituationen wird häufiger und länger auf die Straße geblickt als in weniger beanspruchenden Situationen. Es finden sich außerdem Hinweise dafür, dass spezifische Fahrfehler mit einer fehlerhaften Ausrichtung der Aufmerksamkeit in der Fahrsituation in Zusammenhang stehen. Studie 3 und 4 verwenden das Phänomen der Change Blindness als Indikator für die Ausrichtung der Aufmerksamkeit. Im Rahmen von Fahrten mit kontrollierten Situationsbedingungen wird die Hypothese untersucht, dass während der Bearbeitung visueller Nebenaufgabe die fahrbezogene Aufmerksamkeit auf fahrrelevante Situationsbestandteile gelenkt wird. Die Testfahrer nähern sich wiederholt Kreuzungen an. Während der Anfahrten wird über Okklusion ein Blickverhalten vorgegeben, das dem bei der Bearbeitung visueller Nebenaufgaben ähnelt. Die Fahrer sollen mit Tastendruck reagieren, wenn sie plötzliche Änderungen bemerken. Die Änderungen können sowohl relevante als auch irrelevante Fahrzeuge betreffen. Die Ergebnisse zeigen eine schlechte Entdeckungsleistung für Änderungen an irrelevanten Fahrzeugen. Änderungen an relevanten Objekten werden dagegen so gut wie immer bemerkt. Ob die Änderung durch Okklusion maskiert wird oder ob sie stattfindet, während die Fahrer die Straße sehen, hat keinen eindeutigen Ein¬fluss auf die Entdeckungsleistung. Dies kann ein Hinweis darauf sein, dass in der untersuchten Doppelaufgabensituation keine bottom-up Ausrichtung der Aufmerksamkeit erfolgt. Die angenommene top-down gesteuerte Beschränkung der Aufmerksamkeit auf als relevant bewertete Bestandteile der Fahrsituation hat Konsequenzen für die Analyse von Verkehrsunfällen. Unfälle infolge von visueller Ablenkung durch selbst initiierte Zweitaufgaben sind dann besonders wahrscheinlich, wenn das Situationsmodell des Fahrers falsch oder ungenau ist. Dies kann beispielsweise geschehen, wenn ein peripheres, nicht beachtetes Objekt plötzlich relevant wird und eine Reaktion des Fahrers erforderlich macht. In Übereinstimmung mit Befunden zur Gefahrenwahrnehmung sind besonders Fahranfänger aufgrund ihrer noch nicht ausreichend entwickelten mentalen Modellen anfällig für Fehleinschätzungen von Fahrsituationen. Dies führt bei Ablenkung durch Nebenaufgaben zu einer erhöhten Unfallgefährdung.
The present study explored the origin of perceptual changes repeatedly observed in the context of actions. In Experiment 1, participants tried to hit a circular target with a stylus movement under restricted feedback conditions. We measured the perception of target size during action planning and observed larger estimates for larger movement distances. In Experiment 2, we then tested the hypothesis that this action specific influence on perception is due to changes in the allocation of spatial attention. For this purpose, we replaced the hitting task by conditions of focused and distributed attention and measured the perception of the former target stimulus. The results revealed changes in the perceived stimulus size very similar to those observed in Experiment 1. These results indicate that action's effects on perception root in changes of spatial attention.
Endogenous Testosterone and Exogenous Oxytocin Modulate Attentional Processing of Infant Faces
(2016)
Evidence indicates that hormones modulate the intensity of maternal care. Oxytocin is known for its positive influence on maternal behavior and its important role for childbirth. In contrast, testosterone promotes egocentric choices and reduces empathy. Further, testosterone decreases during parenthood which could be an adaptation to increased parental investment. The present study investigated the interaction between testosterone and oxytocin in attentional control and their influence on attention to baby schema in women. Higher endogenous testosterone was expected to decrease selective attention to child portraits in a face-in-the-crowd-paradigm, while oxytocin was expected to counteract this effect. As predicted, women with higher salivary testosterone were slower in orienting attention to infant targets in the context of adult distractors. Interestingly, reaction times to infant and adult stimuli decreased after oxytocin administration, but only in women with high endogenous testosterone. These results suggest that oxytocin may counteract the adverse effects of testosterone on a central aspect of social behavior and maternal caretaking.
Studies with the retro-cue paradigm have shown that validly cueing objects in visual working memory long after encoding can still benefit performance on subsequent change detection tasks. With regard to the effects of invalid cues, the literature is less clear. Some studies reported costs, others did not. We here revisit two recent studies that made interesting suggestions concerning invalid retro-cues: One study suggested that costs only occur for larger set sizes, and another study suggested that inclusion of invalid retro-cues diminishes the retro-cue benefit. New data from one experiment and a reanalysis of published data are provided to address these conclusions. The new data clearly show costs (and benefits) that were independent of set size, and the reanalysis suggests no influence of the inclusion of invalid retro-cues on the retro-cue benefit. Thus, previous interpretations may be taken with some caution at present.
Cognitive views of the psychopathology of anxiety propose that attentional biases toward threatening information play a substantial role in the disorders’ etiology and maintenance. For healthy subjects, converging evidence show that threatening stimuli attract attention and lead to enhanced activation in visual processing areas. It is assumed that this preferential processing of threat occurs at a preattentive level and is followed by fast attentional engagement. High-anxious individuals show augmented tendencies to selectively attend toward fear-relevant cues (Mathews, 1990) and exhibit elevated neural processing of threatening cues compared to non-anxious individuals (Dilger et al., 2003). Regarding attentional biases in high-anxious subjects, it remains unanswered up to now whether initial engagement of attention toward threat or difficulties to disengage from threat is an underlying mechanism. Furthermore, little is known whether the preferential (attentive) processing of threatening cues does influence perceptional outcomes of anxious subjects. In order to directly study separate components of attentional bias the first study of this dissertation was a combined reaction time and eye-tracking experiment. Twenty one spider phobic patients and 21 control participants were instructed to search for a neutral target while ignoring task-irrelevant abrupt-onset distractor circles which contained either a small picture of a spider (phobic), a flower (non-phobic, but similar to spiders in shape), a mushroom (non-phobic, and not similar to spiders in shape), or small circles with no picture. As expected, patients’ reaction times to targets were longer on trials with spider distractors. However, analyses of eye movements revealed that this was not due to attentional capture by spider distractors; patients more often fixated on all distractors with pictures. Instead, reaction times were delayed by longer fixation durations on spider distractors. This result does not support automatic capture of attention by phobic cues but suggests that phobic patients fail to disengage attention from spiders. To assess whether preferential processing of phobic cues differentially affects visual perception in phobic patients compared to healthy controls, the second study of this dissertation used a binocular rivalry paradigm, where two incompatible pictures were presented to each eye. These pictures cannot be merged to a meaningful percept and temporarily, one picture predominates in conscious perception whereas the other is suppressed. 23 spider phobic patients and 20 non-anxious control participants were shown standardized pictures of spiders or flowers, each paired with a neutral pattern under conditions of binocular rivalry. Their task was to continuously indicate the predominant percept by key presses. Analyses show that spider phobic patients perceived the spider picture more often and longer as dominant compared to non-anxious control participants. Thus, predominance of phobic cues in binocular rivalry provides evidence that preferential processing of fear-relevant cues in the visual system actually leads to superior perception. In combination both studies support the notion that phobic patients process phobic cues preferentially within the visual system resulting in enhanced attention and perception. At early stages of visual processing, this is mainly reflected by delayed attentional disengagement and across time, preferential processing leads to improved perception of threat cues.