We study information flow in morphologically different hippocampal pyramidal neurons during learning and memory. Follow our science, social activities and more.
Big team effort, introducing a live reporter for excitable axonal domains. With @jenkins_paul , @Neuronenkeks , @JMaxJanssen , @JanGrundemann , @ElisaDEste and many others. Thank you!
https://t.co/h0znCBbWLX
We are thrilled that our latest study is out in @ScienceMagazine: different information processing in neurons with an axon-carrying dendrite (#AcD cells)! 1/13
Our data imply that inhibition can induce rapid (millisecond) switches between two different functional networks: one comprising all cells and one exclusively made by AcD cells. 12/13
Thrilled that our study on the role of inhibition in hippocampal coding is out in @CellReports! With @acnavasolive, who worked with me here in NY last summer, and including some exciting observations with @LMPrida🧵(1/12)
https://t.co/YrljMwA3HC
Tomorrow (Tuesday) @FENSorg: Nadja Sharkov, Niko Stevens and Alex Hodapp presenting their projects on the function of hippocampal axon-carrying dendrite cells. Drop by and check out their posters at poster session 05 (S05-406, S05-412, and S05-414). #FENS2022
Delighted to share our new paper on high-resolution optogenetics to probe subthreshold dynamics and to unmask place fields! Huge thanks to the co-authors, my family in the Buzsáki lab, and colleges. Here’s is a thread to save you the 10 min it takes to read a @Science paper 😊
We show that enriched environment changes excitation/inhibition ratio in CA1 pyramidal cells. As a consequence, firing precision during sharp wave-ripple complexes is reduced.