Janine I. Rossato
Affiliations: | University of Edinburgh, Edinburgh, Scotland, United Kingdom |
Area:
Memory, LearningGoogle:
"Janine Rossato"Mean distance: 14.84 (cluster 36) | S | N | B | C | P |
Parents
Sign in to add mentorMartin Cammarota | post-doc | Brain Institute/UFRN | |
Richard G.M. Morris | post-doc | Edinburgh |
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Publications
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Radiske A, de Castro CM, Rossato JI, et al. (2023) Hippocampal CaMKII inhibition induces reactivation-dependent amnesia for extinction memory and causes fear relapse. Scientific Reports. 13: 21712 |
Rossato JI, Radiske A, Gonzalez MC, et al. (2023) NMDARs control object recognition memory destabilization and reconsolidation. Brain Research Bulletin |
Duszkiewicz AJ, Rossato JI, Moreno A, et al. (2023) Execution of new trajectories toward a stable goal without a functional hippocampus. Hippocampus |
Rossato JI, Radiske A, Gonzalez MC, et al. (2022) On the effect of hippocampal c-Jun N-terminal kinase inhibition on object recognition memory. Frontiers in Behavioral Neuroscience. 16: 1052124 |
Gonzalez MC, Radiske A, Rossato JI, et al. (2022) Optogenetic inactivation of the medial septum impairs long-term object recognition memory formation. Molecular Brain. 15: 50 |
Gonzalez MC, Radiske A, Conde-Ocazionez S, et al. (2022) Reactivation-dependent amnesia for object recognition memory is contingent on hippocampal theta-gamma coupling during recall. Learning & Memory (Cold Spring Harbor, N.Y.). 29: 1-6 |
Radiske A, Gonzalez MC, Rossato JI, et al. (2021) Avoidance memory requires CaMKII activity to persist after recall. Molecular Brain. 14: 167 |
Homberg JR, Adan RAH, Alenina N, et al. (2021) The continued need for animals to advance brain research. Neuron. 109: 2374-2379 |
Gonzalez MC, Rossato JI, Radiske A, et al. (2021) Dopamine controls whether new declarative information updates reactivated memories through reconsolidation. Proceedings of the National Academy of Sciences of the United States of America. 118 |
Samanta A, van Rongen LS, Rossato JI, et al. (2021) Sleep Leads to Brain-Wide Neural Changes Independent of Allocentric and Egocentric Spatial Training in Humans and Rats. Cerebral Cortex (New York, N.Y. : 1991) |