Paradigma allgemeine psychologie trial

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Eriksen-Flanker-Aufgabe

Publikationen Preprints Ruge, H. Initial neural representation of individual rules after first-time instruction. Unbiased analysis of item-specific multi-voxel activation patterns across learning. Frontiers in Neuroscience. Deterministic response strategies in a trial-and-error learning task.

PLoS Computational Biology, 14 11 , e Rapid instruction-based task learning RITL in schizophrenia. Journal of Abnormal Psychology. Ruge, H. On the efficiency of instruction-based rule encoding. Acta Psychologica, , Large-scale coupling dynamics of instructed reversal learning. Neuroimage, , When global rule reversal meets local task switching: The neural mechanisms of coordinated behavioral adaptation to instructed multi-level demand changes.

Human Brain Mapping, 39 2 , Habit strength is predicted by activity dynamics in goal-directed brain systems during training. Learning-Related Brain-Electrical Activity Dynamics Associated with the Subsequent Impact of Learnt Action-Outcome Associations. Frontiers in Human Neuroscience. DOI: Integration and segregation of large-scale brain networks during short-term task automatization.

Nature Communications, 7 , Ruge, H. Towards an understanding of the neural dynamics of intentional learning: Considering the timescale. The neural basis of integrating pre- and post-response information for goal-directed actions. Neuropsychologia , 80, Distinct contributions of lateral orbito-frontal cortex, striatum, and fronto-parietal network regions for rule encoding and control of memory-based implementation during instructed reversal learning.

Neuroimage , , Beck, S. Effects of Ginkgo biloba extract EGb R on cognitive control functions, mental activity of the prefrontal cortex and stress reactivity in elderly adults with subjective memory impairment - a randomized double-blind placebo-controlled trial.

Die implizite Aufmerksamkeitssteuerung des "kontextuellen Cueing"-Paradigma

Human Psychopharmacology-Clinical and Experimental , 31 3 , Neural mechanisms of goal-directed behavior: Outcome-based response selection is associated with increased functional coupling of the angular gyrus. Distinct fronto-striatal couplings reveal the double-faced nature of response-outcome relations in instruction-based learning.

Mohr, H. Sparse regularization techniques provide novel insights into outcome integration processes. Response selection difficulty modulates the behavioral impact of rapidly learnt action effects. Frontiers in Psychology. The Functional Neuroanatomy of Spontaneous Retrieval and Strategic Monitoring of Delayed Intentions. Neuropsychologia , 52, No anticipation without intention: Response—effect compatibility in effect-based and stimulus-based actions.

Acta Psychologica, 3 , Functional integration processes underlying the instruction-based learning of novel goal-directed behaviors. The many faces of preparatory control in task switching: reviewing a decade of fMRI research. Human Brain Mapping. Priming of visual cortex by temporal attention?

Eriksen-Flanker-Aufgabe

The effects of temporal predictability on stimulus -specific processing in early visual cortical areas. Psychology 3: Wolfensteller, U. Frontostriatal mechanisms in instruction-based learning as a hallmark of flexible goal-directed behavior. Psychology On the timescale of stimulus-based action-effect learning. Quarterly Journal of Experimental Psychology.

Advance preparation in task-switching: converging evidence from behavioral, brain activation and model-based approaches. Psychology, 1, Anticipating the consequences of action: An fMRI study of intention-based task preparation. Psychophysiology, 47, Rapid formation of pragmatic rule representations in the human brain during instruction-based learning. Cerebral Cortex, 20, Separating event-related BOLD components within trials: the partial-trial design revisited.

Neuroimage, 47, Attention, intention, and strategy in preparatory control.

Research Interests

Neuropsychologia , 47, Modification of response time variability in a decision-making task. Neuroreport , 19, Attentional set mixing: effects on target selection and selective response activation. Brain-electrical correlates of negative location priming under sustained and transient attentional context conditions. Journal of Psychophysiology. Advance preparation and stimulus-induced interference in cued task switching: further insights from BOLD fMRI.

Neuropsychologia, 43 3 , When the same response has different meanings: recoding the response meaning in the lateral prefrontal cortex. Neuroimage, 20 2 , Equivalence of cognitive processes in brain imaging and behavioral studies: evidence from task switching. Neuroimage, 20 1 , Event-related analysis for event types of fixed order and restricted spacing by temporal quantification of trial-averaged fMRI time courses.

J Magn Reson Imaging, 18 5 , Neural mechanisms of cognitive control in task switching: rules, representations, and preparation. In: The Neuroscience of Rule-Guided Behavior. Bunge and J. Wallis, Oxford University Press, Functional Neuroimaging of Executive Functions. Kingstone Eds. Spezialisierung zur Generalisierung: Anmerkungen zur funktionellen Neuroanatomie des ventralen frontolateralen Cortex.

Hacke, M. Hennerici, H. Diener, C. Felgenhauer, E. Busch Eds. Deutsche Gesellschaft fuer Neurologie. Neurologie Fortbildungsakademie der Jahrestagung der Deutschen Gesellschaft fuer Neurologie pp. Stuttgart: Thieme. Eine Analyse des raum-zeitlichen Musters neuronaler Aktivierung im Aufgabenwechselparadigma zur Untersuchung handlungssteuernder Prozesse Vol.

Leipzig: Max-Planck-Institut fuer Kognitions- und Neurowissenschaften. Eine elektrophysiologische Untersuchung inhibitorischer Mechanismen der Selektiven Aufmerksamkeit im Paradigma des Negative-Location-Priming. Diploma thesis. The neural basis of context-triggered outcome anticipation in goal-directed action. Presented at the 21st Annual Meeting of the Cognitive Neuroscience Society CNS , Boston, USA, April and the 20th Annual Meeting of the Organization of Human Brain Mapping OHBM.