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van der Meer, M.

Publications and source records attributed to van der Meer, M..

2 recordsLinked to original sources

Reward revaluation biases hippocampal sequence content away from the preferred outcome

Internally generated sequences of place cell activity can depict spatial trajectories to reward locations, suggesting a role in model-based behavioral control. A largely separate literature emphasizes reward revaluation as the litmus test for such control, yet the content of hippocampal sequences under revaluation conditions is unknown. We report that the content of sharp wave-ripple hippocampal sequences is biased away from the preferred outcome following reward revaluation, challenging the idea that such sequences reflect recent experience or trajectories toward a goal.\n\nAcknowledgmentsWe thank Nancy Gibson, Martin Ryan and Jean Flanagan for animal care and MinChing Kuo, Julia Espinosa and Eric Carmichael for technical assistance. We thank Elyot Grant for developing the SWR detection method used for the main analyses in this paper. This work was supported by the University of Waterloo and Dartmouth College (start-up funds to MvdM), and the Netherlands Organization for Scientific Research (NWO, grant 863.10.013 to MvdM).\n\nAuthor contributionsAAC performed experiments and pre-processed the data. AAC, YT and MvdM wrote analysis code. AAC and MvdM performed data analysis. MvdM wrote the paper with comments from AAC and YT.\n\nConflict of InterestThe authors declare no competing financial interests.

neuroscience

Persistent coding of outcome-predictive cue features in the rat nucleus accumbens

The nucleus accumbens (NAc) is important for learning from feedback, and for biasing and invigorating behavior in response to cues that predict motivationally relevant outcomes. NAc encodes outcome-related cue features such as the magnitude and identity of reward. However, little is known about how features of cues themselves are encoded. We designed a decision making task where rats learned multiple sets of outcome-predictive cues, and recorded single-unit activity in the NAc during performance. We found that coding of cue identity and location occurred alongside coding of expected outcome. Furthermore, this coding persisted both during a delay period, after the rat made a decision and was waiting for an outcome, and after the outcome was revealed. Encoding of cue features in the NAc may enable contextual modulation of ongoing behavior, and provide an eligibility trace of outcome-predictive stimuli for updating stimulus-outcome associations to inform future behavior.

neuroscience