TY - JOUR A1 - Ziebell, Philipp A1 - Rodrigues, Johannes A1 - Forster, André A1 - Sanguinetti, Joseph L. A1 - Allen, John JB. A1 - Hewig, Johannes T1 - Inhibition of midfrontal theta with transcranial ultrasound explains greater approach versus withdrawal behavior in humans JF - Brain Stimulation N2 - Highlights • Transcranial ultrasound neuromodulation/stimulation (TUS) is a growing field. • We conducted a double-blind sham-controlled within-subjects large sample TUS study. • Right prefrontal cortex TUS inhibits midfrontal theta electroencephalography (MFT). • TUS MFT inhibition explains greater approach versus withdrawal in a virtual T-maze. • This distinct TUS-MFT-behavior link merits future basic and applied research. Abstract Recent reviews highlighted low-intensity transcranial focused ultrasound (TUS) as a promising new tool for non-invasive neuromodulation in basic and applied sciences. Our preregistered double-blind within-subjects study (N = 152) utilized TUS targeting the right prefrontal cortex, which, in earlier work, was found to positively enhance self-reported global mood, decrease negative states of self-reported emotional conflict (anxiety/worrying), and modulate related midfrontal functional magnetic resonance imaging activity in affect regulation brain networks. To further explore TUS effects on objective physiological and behavioral variables, we used a virtual T-maze task that has been established in prior studies to measure motivational conflicts regarding whether participants execute approach versus withdrawal behavior (with free-choice responses via continuous joystick movements) while allowing to record related electroencephalographic data such as midfrontal theta activity (MFT). MFT, a reliable marker of conflict representation on a neuronal level, was of particular interest to us since it has repeatedly been shown to explain related behavior, with relatively low MFT typically preceding approach-like risky behavior and relatively high MFT typically preceding withdrawal-like risk aversion. Our central hypothesis is that TUS decreases MFT in T-maze conflict situations and thereby increases approach and reduces withdrawal. Results indicate that TUS led to significant MFT decreases, which significantly explained increases in approach behavior and decreases in withdrawal behavior. This study expands TUS evidence on a physiological and behavioral level with a large sample size of human subjects, suggesting the promise of further research based on this distinct TUS-MFT-behavior link to influence conflict monitoring and its behavioral consequences. Ultimately, this can serve as a foundation for future clinical work to establish TUS interventions for emotional and motivational mental health. KW - approach versus withdrawal KW - electroencephalography (EEG) KW - midfrontal theta (MFT) KW - right prefrontal cortex (PFC) KW - transcranial ultrasound neuromodulation/stimulation (TUS) KW - virtual reality Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-349890 VL - 16 IS - 5 ER - TY - JOUR A1 - Pfister, Roland A1 - Schwarz, Katharina A. A1 - Holzmann, Patricia A1 - Reis, Moritz A1 - Yogeeswaran, Kumar A1 - Kunde, Wilfried T1 - Headlines win elections: mere exposure to fictitious news media alters voting behavior JF - PloS One N2 - Repeatedly encountering a stimulus biases the observer’s affective response and evaluation of the stimuli. Here we provide evidence for a causal link between mere exposure to fictitious news reports and subsequent voting behavior. In four pre-registered online experiments, participants browsed through newspaper webpages and were tacitly exposed to names of fictitious politicians. Exposure predicted voting behavior in a subsequent mock election, with a consistent preference for frequent over infrequent names, except when news items were decidedly negative. Follow-up analyses indicated that mere media presence fuels implicit personality theories regarding a candidate’s vigor in political contexts. News outlets should therefore be mindful to cover political candidates as evenly as possible. KW - elections KW - Twitter KW - behavior KW - United States KW - India KW - metaanalysis KW - personality KW - political theory Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-349845 VL - 18 IS - 8 ER - TY - JOUR A1 - Krause, Lisa-Marie A1 - Herbort, Oliver T1 - Just visual context or part of the gesture? The role of arm orientation in bent pointing interpretation JF - Acta Psychologica N2 - Pointing gestures can take on different shapes. For example, people often point with a bent wrist at a referent that is occluded by another object. We hypothesized that while the extrapolation of the index finger is the most important visual cue in such bent pointing gestures, arm orientation is affecting interpretations as well. We tested two competing hypotheses. First, the arm could be processed as a less reliable but additional direction cue also indicating the referent. Consequently, the index finger extrapolation would be biased towards the arm direction (assimilation effect). Second, the arm could be perceived as visual context of the index finger, leading to an interpretation that is repulsed from the arm direction (contrast effect). To differentiate between both, we conducted two experiments in which arm and finger orientation of a virtual pointer were independently manipulated. Participants were asked to determine the pointed-at location. As expected, participants based their interpretations on the extrapolation of the index finger. In line with the second hypothesis, the more the arm was oriented upwards, the lower the point was interpreted and vice versa. Thus, interpretation pattern indicated a contrast effect. Unexpectedly, gestures with aligned arm and index finger deviated from the general contrast effect and were interpreted linearly compared to bent gestures. In sum, the experiments show that interpretations of bent pointing gestures are not only based on the direction of the index finger but also depend on the arm orientation and its relationship to the index finger orientation. KW - pointing interpretation KW - non-verbal communication KW - bent pointing KW - contrast effect Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-349839 VL - 241 ER - TY - JOUR A1 - Wehrheim, Maren H. A1 - Faskowitz, Joshua A1 - Sporns, Olaf A1 - Fiebach, Christian J. A1 - Kaschube, Matthias A1 - Hilger, Kirsten T1 - Few temporally distributed brain connectivity states predict human cognitive abilities JF - NeuroImage N2 - Highlights • Brain connectivity states identified by cofluctuation strength. • CMEP as new method to robustly predict human traits from brain imaging data. • Network-identifying connectivity ‘events’ are not predictive of cognitive ability. • Sixteen temporally independent fMRI time frames allow for significant prediction. • Neuroimaging-based assessment of cognitive ability requires sufficient scan lengths. Abstract Human functional brain connectivity can be temporally decomposed into states of high and low cofluctuation, defined as coactivation of brain regions over time. Rare states of particularly high cofluctuation have been shown to reflect fundamentals of intrinsic functional network architecture and to be highly subject-specific. However, it is unclear whether such network-defining states also contribute to individual variations in cognitive abilities – which strongly rely on the interactions among distributed brain regions. By introducing CMEP, a new eigenvector-based prediction framework, we show that as few as 16 temporally separated time frames (< 1.5% of 10 min resting-state fMRI) can significantly predict individual differences in intelligence (N = 263, p < .001). Against previous expectations, individual's network-defining time frames of particularly high cofluctuation do not predict intelligence. Multiple functional brain networks contribute to the prediction, and all results replicate in an independent sample (N = 831). Our results suggest that although fundamentals of person-specific functional connectomes can be derived from few time frames of highest connectivity, temporally distributed information is necessary to extract information about cognitive abilities. This information is not restricted to specific connectivity states, like network-defining high-cofluctuation states, but rather reflected across the entire length of the brain connectivity time series. KW - functional connectivity KW - resting state KW - machine learning KW - predictive modeling KW - general cognitive ability Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-349874 VL - 277 ER - TY - JOUR A1 - Zillig, Anna-Lena A1 - Pauli, Paul A1 - Wieser, Matthias A1 - Reicherts, Philipp T1 - Better safe than sorry? - On the influence of learned safety on pain perception JF - PloS One N2 - The experience of threat was found to result—mostly—in increased pain, however it is still unclear whether the exact opposite, namely the feeling of safety may lead to a reduction of pain. To test this hypothesis, we conducted two between-subject experiments (N = 94; N = 87), investigating whether learned safety relative to a neutral control condition can reduce pain, while threat should lead to increased pain compared to a neutral condition. Therefore, participants first underwent either threat or safety conditioning, before entering an identical test phase, where the previously conditioned threat or safety cue and a newly introduced visual cue were presented simultaneously with heat pain stimuli. Methodological changes were performed in experiment 2 to prevent safety extinction and to facilitate conditioning in the first place: We included additional verbal instructions, increased the maximum length of the ISI and raised CS-US contingency in the threat group from 50% to 75%. In addition to pain ratings and ratings of the visual cues (threat, safety, arousal, valence, and contingency), in both experiments, we collected heart rate and skin conductance. Analysis of the cue ratings during acquisition indicate successful threat and safety induction, however results of the test phase, when also heat pain was administered, demonstrate rapid safety extinction in both experiments. Results suggest rather small modulation of subjective and physiological pain responses following threat or safety cues relative to the neutral condition. However, exploratory analysis revealed reduced pain ratings in later trials of the experiment in the safety group compared to the threat group in both studies, suggesting different temporal dynamics for threat and safety learning and extinction, respectively. Perspective: The present results demonstrate the challenge to maintain safety in the presence of acute pain and suggest more research on the interaction of affective learning mechanism and pain processing. KW - pain KW - pain sensation KW - functional electrical stimulation KW - heart rate KW - sensory cues KW - learning KW - emotions KW - behavioral conditioning Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-349905 VL - 18 IS - 11 ER - TY - JOUR A1 - Gutzeit, Julian A1 - Weller, Lisa A1 - Muth, Felicitas A1 - Kürten, Jens A1 - Huestegge, Lynn T1 - Eye did this! Sense of agency in eye movements JF - Acta Psychologica N2 - This study investigates the sense of agency (SoA) for saccades with implicit and explicit agency measures. In two eye tracking experiments, participants moved their eyes towards on-screen stimuli that subsequently changed color. Participants then either reproduced the temporal interval between saccade and color-change (Experiment 1) or reported the time points of these events with an auditory Libet clock (Experiment 2) to measure temporal binding effects as implicit indices of SoA. Participants were either made to believe to exert control over the color change or not (agency manipulation). Explicit ratings indicated that the manipulation of causal beliefs and hence agency was successful. However, temporal binding was only evident for caused effects, and only when a sufficiently sensitive procedure was used (auditory Libet clock). This suggests a feebler connection between temporal binding and SoA than previously proposed. The results also provide evidence for a relatively fast acquisition of sense of agency for previously never experienced types of action-effect associations. This indicates that the underlying processes of action control may be rooted in more intricate and adaptable cognitive models than previously thought. Oculomotor SoA as addressed in the present study presumably represents an important cognitive foundation of gaze-based social interaction (social sense of agency) or gaze-based human-machine interaction scenarios. Public significance statement: In this study, sense of agency for eye movements in the non-social domain is investigated in detail, using both explicit and implicit measures. Therefore, it offers novel and specific insights into comprehending sense of agency concerning effects induced by eye movements, as well as broader insights into agency pertaining to entirely newly acquired types of action-effect associations. Oculomotor sense of agency presumably represents an important cognitive foundation of gaze-based social interaction (social agency) or gaze-based human-machine interaction scenarios. Due to peculiarities of the oculomotor domain such as the varying degree of volitional control, eye movements could provide new information regarding more general theories of sense of agency in future research. KW - perception and action KW - sense of agency KW - temporal binding KW - saccades KW - oculomotor control Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-349819 VL - 243 ER - TY - JOUR A1 - Strobach, Tilo A1 - Kürten, Jens A1 - Huestegge, Lynn T1 - Benefits of repeated alternations - task-specific vs. task-general sequential adjustments of dual-task order control JF - Acta Psychologica N2 - An important cognitive requirement in multitasking is the decision of how multiple tasks should be temporally scheduled (task order control). Specifically, task order switches (vs. repetitions) yield performance costs (i.e., task-order switch costs), suggesting that task order scheduling is a vital part of configuring a task set. Recently, it has been shown that this process takes specific task-related characteristics into account: task order switches were easier when switching to a preferred (vs. non-preferred) task order. Here, we ask whether another determinant of task order control, namely the phenomenon that a task order switch in a previous trial facilitates a task order switch in a current trial (i.e., a sequential modulation of task order switch effect) also takes task-specific characteristics into account. Based on three experiments involving task order switches between a preferred (dominant oculomotor task prior to non-dominant manual/pedal task) and a non-preferred (vice versa) order, we replicated the finding that task order switching (in Trial N) is facilitated after a previous switch (vs. repetition in Trial N - 1) in task order. There was no substantial evidence in favor of a significant difference when switching to the preferred vs. non-preferred order and in the analyses of the dominant oculomotor task and the non-dominant manual task. This indicates different mechanisms underlying the control of immediate task order configuration (indexed by task order switch costs) and the sequential modulation of these costs based on the task order transition type in the previous trial. KW - dual tasking KW - task coordination KW - task control KW - task-order control KW - adjustment Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-349868 VL - 236 ER - TY - JOUR A1 - Bellinger, Daniel A1 - Wehrmann, Kristin A1 - Rohde, Anna A1 - Schuppert, Maria A1 - Störk, Stefan A1 - Flohr-Jost, Michael A1 - Gall, Dominik A1 - Pauli, Paul A1 - Deckert, Jürgen A1 - Herrmann, Martin J. A1 - Erhardt-Lehmann, Angelika T1 - The application of virtual reality exposure versus relaxation training in music performance anxiety: a randomized controlled study JF - BMC Psychiatry N2 - Background Performance anxiety is the most frequently reported anxiety disorder among professional musicians. Typical symptoms are - on a physical level - the consequences of an increase in sympathetic tone with cardiac stress, such as acceleration of heartbeat, increase in blood pressure, increased respiratory rate and tremor up to nausea or flush reactions. These symptoms can cause emotional distress, a reduced musical and artistical performance up to an impaired functioning. While anxiety disorders are preferably treated using cognitive-behavioral therapy with exposure, this approach is rather difficult for treating music performance anxiety since the presence of a public or professional jury is required and not easily available. The use of virtual reality (VR) could therefore display an alternative. So far, no therapy studies on music performance anxiety applying virtual reality exposure therapy have investigated the therapy outcome including cardiovascular changes as outcome parameters. Methods This mono-center, prospective, randomized and controlled clinical trial has a pre-post design with a follow-up period of 6 months. 46 professional and semi-professional musicians will be recruited and allocated randomly to an VR exposure group or a control group receiving progressive muscle relaxation training. Both groups will be treated over 4 single sessions. Music performance anxiety will be diagnosed based on a clinical interview using ICD-10 and DSM-5 criteria for specific phobia or social anxiety. A behavioral assessment test is conducted three times (pre, post, follow-up) in VR through an audition in a concert hall. Primary outcomes are the changes in music performance anxiety measured by the German Bühnenangstfragebogen and the cardiovascular reactivity reflected by heart rate variability (HRV). Secondary outcomes are changes in blood pressure, stress parameters such as cortisol in the blood and saliva, neuropeptides, and DNA-methylation. Discussion The trial investigates the effect of VR exposure in musicians with performance anxiety compared to a relaxation technique on anxiety symptoms and corresponding cardiovascular parameters. We expect a reduction of anxiety but also a consecutive improvement of HRV with cardiovascular protective effects. Trial registration This study was registered on clinicaltrials.gov. (ClinicalTrials.gov Number: NCT05735860) KW - music performance anxiety KW - virtual reality exposure therapy KW - progressive muscle relaxation KW - heart rate variability Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-357833 VL - 23 ER - TY - THES A1 - Pollerhoff, Lena Katharina T1 - Age differences in prosociality across the adult lifespan: Insights from self-reports, experimental paradigms, and meta-analyses T1 - Altersunterschiede in Prosozialität über die erwachsene Lebensspanne hinweg: Erkenntnisse aus Selbstberichten, experimentellen Paradigmen und Meta-Analysen N2 - Human prosociality, encompassing generosity, cooperation, and volunteering, holds a vital role in our daily lives. Over the last decades, the question of whether prosociality undergoes changes over the adult lifespan has gained increased research attention. Earlier studies suggested increased prosociality in older compared to younger individuals. However, recent meta-analyses revealed that this age effect might be heterogeneous and modest. Moreover, the contributing factors and mechanisms behind these age-related variations remain to be identified. To unravel age-related differences in prosociality, the first study of this dissertation employed a meta-analytical approach to summarize existing findings and provide insight into their heterogeneity by exploring linear and quadratic age effects on self-reported and behavioral prosociality. Additionally, two empirical research studies investigated whether these age-related differences in prosociality were observed in real life, assessed through ecological momentary assessment (Study 2), and in a controlled laboratory setting by applying a modified dictator game (Study 3). Throughout these three studies, potential underlying behavioral and computational mechanisms were explored. The outcome of the meta-analysis (Study 1) revealed small linear age effects on prosociality and significant age group differences between younger and older adults, with higher levels of prosociality in older adults. Explorative evidence emerged in favor of a quadratic age effect on behavioral prosociality, indicating the highest levels in midlife. Additionally, heightened prosocial behavior among middle-aged adults was observed compared to younger adults, whereas no significant differences in prosocial behavior were noted between middle-aged and older adults. Situational and contextual features, such as the setting of the study and specific paradigm characteristics, moderated the age-prosociality relationship, highlighting the importance of the (social) context when studying prosociality. For Study 2, no significant age effect on real-life prosocial behavior was observed. However, evidence for a significant linear and quadratic age effect on experiencing empathy in real life emerged, indicating a midlife peak. Additionally, across all age groups, the link between an opportunity to empathize and age significantly predicted real-life prosocial behavior. This effect, indicating higher levels of prosocial behavior when there was a situation possibly evoking empathy, was most pronounced in midlife. Study 3 presented age differences in how older and younger adults integrate values related to monetary gains for self and others to make a potential prosocial decision. Younger individuals effectively combined both values in a multiplicative fashion, enhancing decision-making efficiency. Older adults showed an additive effect of values for self and other and displayed increased decision-making efficiency when considering the values separately. However, among older adults, individuals with better inhibitory control were better able to integrate information about both values in their decisions. Taken together, the findings of this dissertation offer new insights into the multi-faceted nature of prosociality across adulthood and the mechanisms that help explain these age-related disparities. While this dissertation observed increasing prosociality across the adult lifespan, it also questions the assumption that older adults are inherently more prosocial. The studies highlight midlife as a potential peak period in social development but also emphasize the importance of the (social) context and that different operationalizations might capture distinct facets of prosociality. This underpins the need for a comprehensive framework to understand age effects of prosociality better and guide potential interventions. N2 - Menschliche Prosozialität beinhaltet Verhaltensweisen wie Großzügigkeit, Kooperation und freiwilliges Engagement und spielt eine entscheidende Rolle in unserem täglichen Leben. In den letzten Jahrzehnten hat die Frage, ob sich Prosozialität über die erwachsene Lebensspanne hinweg verändert, zunehmende Bedeutung in der Forschung erfahren. Frühere Studien zeigten eine erhöhte Prosozialität bei älteren im Vergleich zu jüngeren Erwachsenen. Meta-Analysen zeigten jedoch, dass dieser Alterseffekt heterogen und geringfügig sein könnte. Zusätzlich sind die Faktoren und Mechanismen, die zu diesen altersbedingten Veränderungen beitragen, noch wenig verstanden. Um die altersbedingten Unterschiede in Prosozialität besser zu charakterisieren, wurde in der ersten Studie dieser Dissertation ein meta-analytischer Ansatz verfolgt, um vorhandene Forschungsergebnisse systematisch zusammenzufassen und Einblicke in die zugrundeliegende Heterogenität zu erhalten. Hierfür wurden lineare und quadratische Alterseffekte auf selbstberichtete und verhaltensbezogene Prosozialität untersucht. Zusätzlich untersuchten zwei empirische Studien, ob diese altersbedingten Unterschiede in prosozialem Verhalten auch im realen Leben durch „ecological momentary assessment“ (wiederholte Selbstberichte im Alltag; Studie 2) und in einer kontrollierten Laboruntersuchung mittels eines modifizierten Diktator-Spiels (Studie 3) beobachtbar sind. Im Rahmen dieser drei Studien wurden zudem potenzielle zugrundeliegende Verhaltens- und komputationale Mechanismen untersucht. Die Ergebnisse der Meta-Analyse (Studie 1) zeigten einen geringfügigen linearen Anstieg von Prosozialität über das erwachsene Alter hinweg und signifikante Unterschiede zwischen jüngeren und älteren Erwachsenen, wobei ältere Erwachsene prosozialer waren. Zusätzlich zeigte eine explorative Analyse einen quadratischen Effekt von Alter auf prosoziales Verhalten, mit den höchsten Werten im mittleren Erwachsenenalter. Darüber hinaus verhielten sich mittelalte Erwachsene prosozialer im Vergleich zu jüngeren Erwachsenen, während keine signifikanten Unterschiede zwischen mittelalten und älteren Erwachsenen gefunden wurden. Situative und kontextuelle Merkmale, wie beispielsweise das Setting der Studie und bestimmte Merkmale des Paradigmas, moderierten den Zusammenhang zwischen Alter und Prosozialität und heben damit die Bedeutung des (sozialen) Kontextes bei der Untersuchung von Prosozialität hervor. Studie 2 konnte keinen signifikanten Zusammenhang zwischen Alter und prosozialem Verhalten im realen Leben finden. Es zeigte sich jedoch ein signifikanter linearer und quadratischer Alterseffekt auf das Erleben von Empathie im realen Leben, mit den höchsten Werten im mittelern Erwachsenenalter. Zudem zeigte sich, dass der Zusammenhang zwischen der Möglichkeit, in einer Situation Empathie zu empfinden, und dem Alter das Ausmaß an prosozialem Verhalten im realen Leben vorhersagte. Dieser Effekt, d.h. ein höheres Maß an prosozialem Verhalten in Situationen, die Empathie auslösen, war am stärksten im mittleren Erwachsenenalter ausgeprägt. In Studie 3 hingegen wurden Altersunterschiede in der Art und Weise beobachtet, wie ältere und jüngere Erwachsene die Werte potenzieller Gewinne für sich selbst versus für eine andere Person berücksichtigen, um eine mögliche prosoziale Entscheidung zu treffen. Jüngere Erwachsene kombinierten beide Werte auf multiplikative Weise, was zu einer erhöhten Entscheidungseffizienz führte. Ältere Erwachsene zeigten hingegen einen additiven Effekt der Werte für sich selbst und die andere Person auf ihre Entscheidungen und waren effizienter in ihrer Entscheidungsfindung, wenn sie die Werte separat betrachteten. Eine stärkere inhibitorische Kontrolle ermöglichte es älteren Erwachsenen, Informationen beider Werte in ihre Entscheidungsprozesse einzubeziehen. Die Ergebnisse dieser Dissertation liefern wertvolle Erkenntnisse zur vielschichtigen Natur der Prosozialität über die erwachsene Lebensspanne hinweg sowie zu den Mechanismen, die diese altersbedingten Unterschiede erklären können. Obwohl die Ergebnisse eine Zunahme an Prosozialität mit dem Alter stützen, hinterfragen sie auch die Annahme, dass ältere Erwachsene grundsätzlich prosozialer sind. Die einzelnen Studien setzen die Lebensmitte als möglichen Höhepunkt der sozialen Entwicklung in den Fokus, betonen aber auch die Bedeutung des (sozialen) Kontexts sowie die Tatsache, dass unterschiedliche Operationalisierungen möglicherweise unterschiedliche Facetten der Prosozialität erfassen. Dies hebt die Notwendigkeit einer umfassenden Übersichtsarbeit hervor, um Alterseffekte von Prosozialität besser verstehen und mögliche Interventionen erarbeiten zu können. KW - Altersunterschied KW - prosocial behavior KW - adult development KW - prosociality KW - older adults KW - Lebenslauf KW - Metaanalyse KW - prosocial Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-359445 ER - TY - THES A1 - Chen, Xinyu T1 - How natural walking changes occipital alpha oscillations and concurrently modulates cognitive processes T1 - Die Auswirkungen natürlichen Gehens auf okzipitale Alpha-Oszillationen bei gleichzeitiger Modulation kognitiver Prozesse N2 - Humans actively interact with the world through a wide range of body movements. To understand human cognition in its natural state, we need to incorporate ecologically relevant body movement into our account. One fundamental body movement during daily life is natural walking. Despite its ubiquity, the impact of natural walking on brain activity and cognition has remained a realm underexplored. In electrophysiology, previous studies have shown a robust reduction of ongoing alpha power in the parieto-occipital cortex during body movements. However, what causes the reduction of ongoing alpha, namely whether this is due to body movement or prevalent sensory input changes, was unknown. To clarify this, study 1 was performed to test if the alpha reduction is dependent on visual input. I compared the resting state alpha power during natural walking and standing, in both light and darkness. The results showed that natural walking led to decreased alpha activity over the occipital cortex compared to standing, regardless of the lighting condition. This suggests that the movement-induced modulation of occipital alpha activity is not driven by visual input changes during walking. I argue that the observed alpha power reduction reflects a change in the state of the subject based on disinhibition induced by walking. Accordingly, natural walking might enhance visual processing and other cognitive processes that involve occipital cortical activity. I first tested this hypothesis in vision. Study 2 was performed to examine the possible effects of natural walking across visual processing stages by assessing various neural markers during different movement states. The findings revealed an amplified early visual response, while a later visual response remain unaffected. A follow-up study 3 replicated the walking-induced enhancement of the early visual evoked potential and showed that the enhancement was dependent on specific stimulus-related parameters (eccentricity, laterality, distractor presence). Importantly, the results provided evidence that the enhanced early visual responses are indeed linked to the modulation of ongoing occipital alpha power. Walking also modulated the stimulus-induced alpha power. Specifically, it showed that when the target appeared in the fovea area without a distractor, walking exhibited a significantly reduced modulation of alpha power, and showed the largest difference to standing condition. This effect of eccentricity indicates that during later visual processing stages, the visual input in the fovea area is less processed than in peripheral areas while walking. The two visual studies showed that walking leads to an enhancement in temporally early visual processes which can be predicted by the walking-induced change in ongoing alpha oscillation likely marking disinhibition. However, while walking affects neural markers of early sensory processes, it does not necessarily lead to a change in the behavioural outcome of a sensory task. The two visual studies suggested that the behavioural outcome seems to be mainly based on later processing stages. To test the effects of walking outside the visual domain, I turned to audition in study 4. I investigated the influence of walking in a particular path vs. simply stepping on auditory processing. Specifically, the study tested whether enhanced processing due to natural walking can be found in primary auditory brain activity and whether the processing preferences are dependent on the walking path. In addition, I tested whether the changed spatial processing that was reported in previous visual studies can be seen in the auditory domain. The results showed enhanced sensory processing due to walking in the auditory domain, which was again linked to the modulation of occipital alpha oscillation. The auditory processing was further dependent on the walking path. Additionally, enhanced peripheral sensory processing, as found in vision, was also present in audition. The findings outside vision supported the idea of natural walking affecting cognition in a rather general way. Therefore in my study 5, I examined the effect of natural walking on higher cognitive processing, namely divergent thinking, and its correlation with the modulation of ongoing alpha oscillation. I analyzed alpha oscillations and behavioural performance during restricted and unrestricted movement conditions while subjects completed a Guilford's alternate uses test. The results showed that natural walking, as well as missing body restriction, reduces the occipital alpha ongoing power independent of the task phase which goes along with higher test scores. The occipital alpha power reduction can therefore be an indicator of a changed state that allows improved higher cognitive processes. In summary, the research presented in this thesis highlights that natural walking can change different processes in the visual and auditory domain as well as higher cognitive processes. The effect can be attributed to the movement of natural walking itself rather than to changes in sensory input during walking. The results further indicate that the walking-induced modulation of ongoing occipital alpha oscillations drives the cognitive effects. We therefore suggest that walking changes the inhibitory state which can influence awareness and attention. Such a mechanism could facilitate an adaptive enhancement in cognitive processes and thereby optimize movement-related behaviour such as navigation. N2 - Menschen interagieren aktiv mit der Welt durch eine breite Palette von Körperbewegungen. Um die menschliche Kognition in ihrem natürlichen Zustand zu verstehen, müssen wir ökologisch relevante Körperbewegungen in unsere Betrachtung einbeziehen. Eine grundlegende Körperbewegung im täglichen Leben ist das natürliche Gehen. Trotz seiner Allgegenwärtigkeit ist die Auswirkung des natürlichen Gehens auf die Gehirnaktivität und die Kognition weitgehend unerforscht geblieben. In der Elektrophysiologie haben frühere Studien eine robuste Reduktion der laufenden Alpha-Leistung im parieto-okzipitalen Cortex während Körperbewegungen gezeigt. Es war jedoch unbekannt, was die Reduktion des laufenden Alpha verursacht, nämlich ob dies auf Körperbewegung oder vorherrschende sensorische Eingangsänderungen zurückzuführen ist. Um dies zu klären, wurde Studie 1 durchgeführt, um zu testen, ob die Alpha-Reduktion von visuellem Input abhängig ist. Ich verglich die Alpha-Leistung im Ruhezustand beim natürlichen Gehen und Stehen, sowohl bei Licht als auch im Dunkeln. Die Ergebnisse zeigten, dass natürliches Gehen zu einer verminderten Alpha-Aktivität über dem okzipitalen Cortex im Vergleich zum Stehen führte, unabhängig von den Lichtverhältnissen. Dies legt nahe, dass die bewegungsinduzierte Modulation der okzipitalen Alpha-Aktivität nicht durch visuelle Veränderungen während des Gehens verursacht wird. Ich argumentiere, dass die beobachtete Reduktion der Alpha-Leistung eine Veränderung des Zustands der Versuchsperson aufgrund der durch das Gehen induzierten Hemmung widerspiegelt. Natürliches Gehen könnte daher die visuelle Verarbeitung und andere kognitive Prozesse, die die Aktivität des okzipitalen Cortex umfassen, verstärken. Ich habe diese Hypothese zuerst im Bereich der Vision getestet. Studie 2 wurde durchgeführt, um die möglichen Auswirkungen des natürlichen Gehens auf verschiedene neurale Marker in verschiedenen Bewegungszuständen zu untersuchen. Die Ergebnisse zeigten eine verstärkte frühe visuelle Reaktion, während eine spätere visuelle Reaktion unverändert blieb. Eine Nachfolgestudie 3 replizierte die durch das Gehen induzierte Verstärkung des frühen visuellen ereigniskorrelierten Potenzials und zeigte, dass die Verstärkung von spezifischen stimuliabhängigen Parametern abhängig war (Exzentrizität, Lateralität, Vorhandensein von Störreizen). Die Ergebnisse lieferten wichtige Hinweise darauf,dass die verstärkten frühen visuellen Reaktionen tatsächlich mit der Modulation der laufenden Alpha-Leistung im okzipitalen Cortex zusammenhängen. Das Gehen modulierte auch die stimuliinduzierte Alpha-Leistung. Insbesondere zeigte sich, dass bei Erscheinen des Ziels im fovealen Bereich ohne Störreiz das Gehen eine signifikant reduzierte Modulation der Alpha-Leistung aufwies und den größten Unterschied zum Stehzustand zeigte. Dieser Exzentrizitätseffekt deutet darauf hin, dass während späterer visueller Verarbeitungsstadien die visuelle Eingabe im Fovealbereich weniger verarbeitet wird als in peripheren Bereichen während des Gehens. Die beiden visuellen Studien zeigten, dass Gehen zu einer Verstärkung früher visueller Prozesse führt, die durch die durch das Gehen verursachte Veränderung der laufenden Alpha-Oszillation wahrscheinlich markiert werden. Allerdings beeinflusst Gehen zwar neuronale Marker früher sensorischer Prozesse, führt aber nicht zwangsläufig zu einer Veränderung des Verhaltensergebnisses einer sensorischen Aufgabe. Die beiden visuellen Studien legen nahe, dass das Verhaltensergebnis hauptsächlich auf späteren Verarbeitungsstadien beruht. Um die Auswirkungen des Gehens außerhalb des visuellen Bereichs zu testen, wandte ich mich in Studie 4 der Auditierung zu. Ich untersuchte den Einfluss des Gehens auf einen bestimmten Pfad im Vergleich zum einfachen Schritt auf die auditive Verarbeitung. Die Studie testete speziell, ob eine verbesserte Verarbeitung aufgrund des natürlichen Gehens in der primären auditorischen Hirnaktivität gefunden werden kann und ob die Verarbeitungspräferenzen vom Gehpfad abhängen. Darüber hinaus habe ich getestet, ob die in früheren visuellen Studien berichtete veränderte räumliche Verarbeitung auch im auditiven Bereich beobachtet werden kann. Die Ergebnisse zeigten eine verbesserte sensorische Verarbeitung aufgrund des Gehens im auditiven Bereich, die erneut mit der Modulation der okzipitalen Alpha-Oszillation in Verbindung stand. Die auditive Verarbeitung war auch vom Gehpfad abhängig. Darüber hinaus wurde eine verbesserte periphere sensorische Verarbeitung, wie sie in der Vision gefunden wurde, auch in der Auditierung beobachtet. Die außerhalb des visuellen Bereichs gefundenen Ergebnisse unterstützen die Idee, dass natürliches Gehen die Kognition auf eher allgemeine Weise beeinflusst. Daher habe ich in meiner Studie 5 die Wirkung des natürlichen Gehens auf höhere kognitive Prozesse untersucht, nämlich das divergente Denken, und seine Korrelation mit der Modulation der laufenden Alpha-Oszillation. Ich analysierte Alpha-Oszillationen und Verhaltensleistungen während eingeschränkter und uneingeschränkter Bewegungsbedingungen, während Versuchspersonen einen Guilford-Test für alternative Verwendungsmöglichkeiten absolvierten. Die Ergebnisse zeigten, dass natürliches Gehen sowie das Fehlen von Körperbeschränkungen die laufende Alpha-Leistung im okzipitalen Bereich unabhängig von der Aufgabenphase reduziert, was mit höheren Testergebnissen einhergeht. Die Reduktion der okzipitalen Alpha-Leistung kann daher ein Indikator für einen veränderten Zustand sein, der eine Verbesserung der höheren kognitiven Prozesse ermöglicht. Zusammenfassend hebt die in dieser Arbeit präsentierte Forschung hervor, dass natürliches Gehen verschiedene Prozesse im visuellen und auditiven Bereich sowie höhere kognitive Prozesse verändern kann. Die Wirkung kann auf die Bewegung des natürlichen Gehens selbst zurückgeführt werden, und nicht auf Veränderungen im sensorischen Input während des Gehens. Die Ergebnisse deuten weiterhin darauf hin, dass die durch das Gehen verursachte Modulation laufender Alpha-Oszillationen im okzipitalen Bereich die kognitiven Effekte antreibt. Daher schlagen wir vor, dass Gehen den hemmenden Zustand verändert, der das Bewusstsein und die Aufmerksamkeit beeinflussen kann. Ein solcher Mechanismus könnte eine adaptive Verbesserung in kognitiven Prozessen fördern und somit verhaltensbezogene Bewegungen wie die Navigation optimieren. KW - Walking KW - Alpha power KW - Mobie EEG KW - Body movement KW - Cognitive processing KW - Natural walking KW - Kognition KW - Cognition KW - Alpha Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-352958 ER -