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Re-evaluation of learned information in Drosophila

Author

Listed:
  • Johannes Felsenberg

    (Centre for Neural Circuits and Behaviour, The University of Oxford, Tinsley Building)

  • Oliver Barnstedt

    (Centre for Neural Circuits and Behaviour, The University of Oxford, Tinsley Building)

  • Paola Cognigni

    (Centre for Neural Circuits and Behaviour, The University of Oxford, Tinsley Building)

  • Suewei Lin

    (Centre for Neural Circuits and Behaviour, The University of Oxford, Tinsley Building
    †Present address: Institute of Molecular Biology, Academica Sinica, Taipei 115, Taiwan.)

  • Scott Waddell

    (Centre for Neural Circuits and Behaviour, The University of Oxford, Tinsley Building)

Abstract

Depending on prediction accuracy at the time of memory recall, specific mushroom body output neurons drive different combinations of dopaminergic neurons to extinguish or reconsolidate appetitive memory in Drosophila.

Suggested Citation

  • Johannes Felsenberg & Oliver Barnstedt & Paola Cognigni & Suewei Lin & Scott Waddell, 2017. "Re-evaluation of learned information in Drosophila," Nature, Nature, vol. 544(7649), pages 240-244, April.
  • Handle: RePEc:nat:nature:v:544:y:2017:i:7649:d:10.1038_nature21716
    DOI: 10.1038/nature21716
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    Cited by:

    1. Sanne Ten Oever & Alexander T. Sack & Carina R. Oehrn & Nikolai Axmacher, 2021. "An engram of intentionally forgotten information," Nature Communications, Nature, vol. 12(1), pages 1-14, December.
    2. Oliver Barnstedt & Petra Mocellin & Stefan Remy, 2024. "A hippocampus-accumbens code guides goal-directed appetitive behavior," Nature Communications, Nature, vol. 15(1), pages 1-20, December.

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