Dagmar Zeithamova, PhD

Affiliations: 
2014- Psychology University of Oregon, Eugene, OR, United States 
Website:
http://cognem.uoregon.edu/
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"Dagmar Zeithamova"
Mean distance: 15.34 (cluster 15)
 
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Publications

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Frank LE, Bowman CR, Zeithamova D. (2019) Differential Functional Connectivity along the Long Axis of the Hippocampus Aligns with Differential Role in Memory Specificity and Generalization. Journal of Cognitive Neuroscience. 1-18
Frank LE, Preston AR, Zeithamova D. (2019) Functional connectivity between memory and reward centers across task and rest track memory sensitivity to reward. Cognitive, Affective & Behavioral Neuroscience
Zeithamova D, Gelman BD, Frank L, et al. (2018) Abstract representation of prospective reward in the hippocampus. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Spalding KN, Schlichting ML, Zeithamova D, et al. (2018) Ventromedial prefrontal cortex is necessary for normal associative inference and memory integration. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Bowman CR, Zeithamova D. (2018) Abstract memory representations in the ventromedial prefrontal cortex and hippocampus support concept generalization. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Zeithamova D, Preston AR. (2017) Temporal Proximity Promotes Integration of Overlapping Events. Journal of Cognitive Neuroscience. 1-13
Zeithamova D, Manthuruthil C, Preston AR. (2016) Repetition suppression in the medial temporal lobe and midbrain is altered by event overlap. Hippocampus
Schlichting ML, Zeithamova D, Preston AR. (2014) CA1 subfield contributions to memory integration and inference. Hippocampus. 24: 1248-60
Wolosin SM, Zeithamova D, Preston AR. (2013) Distributed hippocampal patterns that discriminate reward context are associated with enhanced associative binding. Journal of Experimental Psychology. General. 142: 1264-76
Zeithamova D, Dominick AL, Preston AR. (2012) Hippocampal and ventral medial prefrontal activation during retrieval-mediated learning supports novel inference. Neuron. 75: 168-79
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