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R Hahnloser

Showing results (41-50 of 57) with videos related to

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Science Advances|March 27, 2024
Learning the sound inventory of a complex vocal skill via an intrinsic rewardHazem Toutounji, Anja T Zai, Ofer Tchernichovski, et al.
Plos Biology|October 17, 2008
Rapid interhemispheric switching during vocal production in a songbirdClaude Z H Wang, Joshua A Herbst, Georg B Keller, et al.
Nature Communications|November 24, 2020
Sensory substitution reveals a manipulation biasAnja T Zai, Sophie Cavé-Lopez, Manon Rolland, et al.
Peerj|November 17, 2025
Multimodal system for recording individual-level behaviors in songbird groupsLinus Rüttimann, Yuhang Wang, Jörg Rychen, et al.
Frontiers in Psychology|February 21, 2025
Visually-guided compensation of deafening-induced song deteriorationManon Rolland, Anja T Zai, Richard H R Hahnloser, et al.
Neuron|May 20, 2016
Rhythmic Continuous-Time Coding in the Songbird Analog of Vocal Motor CortexGalen F Lynch, Tatsuo S Okubo, Alexander Hanuschkin, et al.
Scientific Reports|May 28, 2021
A system for controlling vocal communication networksJ Rychen, D I Rodrigues, T Tomka, et al.
Nature Communications|November 2, 2017
Songbirds work around computational complexity by learning song vocabulary independently of sequenceDina Lipkind, Anja T Zai, Alexander Hanuschkin, et al.
Nature Methods|September 29, 2014
Reconstruction of vocal interactions in a group of small songbirdsVictor N Anisimov, Joshua A Herbst, Andrei N Abramchuk, et al.
Journal of Neural Engineering|January 11, 2017
A lightweight feedback-controlled microdrive for chronic neural recordingsA Jovalekic, S Cavé-Lopez, A Canopoli, et al.
Pageof 6

Showing results (41-50 of 57) with videos related to

Sort By:
Pageof 6
Science Advances|March 27, 2024
Learning the sound inventory of a complex vocal skill via an intrinsic rewardHazem Toutounji, Anja T Zai, Ofer Tchernichovski, et al.
Plos Biology|October 17, 2008
Rapid interhemispheric switching during vocal production in a songbirdClaude Z H Wang, Joshua A Herbst, Georg B Keller, et al.
Nature Communications|November 24, 2020
Sensory substitution reveals a manipulation biasAnja T Zai, Sophie Cavé-Lopez, Manon Rolland, et al.
Peerj|November 17, 2025
Multimodal system for recording individual-level behaviors in songbird groupsLinus Rüttimann, Yuhang Wang, Jörg Rychen, et al.
Frontiers in Psychology|February 21, 2025
Visually-guided compensation of deafening-induced song deteriorationManon Rolland, Anja T Zai, Richard H R Hahnloser, et al.
Neuron|May 20, 2016
Rhythmic Continuous-Time Coding in the Songbird Analog of Vocal Motor CortexGalen F Lynch, Tatsuo S Okubo, Alexander Hanuschkin, et al.
Scientific Reports|May 28, 2021
A system for controlling vocal communication networksJ Rychen, D I Rodrigues, T Tomka, et al.
Nature Communications|November 2, 2017
Songbirds work around computational complexity by learning song vocabulary independently of sequenceDina Lipkind, Anja T Zai, Alexander Hanuschkin, et al.
Nature Methods|September 29, 2014
Reconstruction of vocal interactions in a group of small songbirdsVictor N Anisimov, Joshua A Herbst, Andrei N Abramchuk, et al.
Journal of Neural Engineering|January 11, 2017
A lightweight feedback-controlled microdrive for chronic neural recordingsA Jovalekic, S Cavé-Lopez, A Canopoli, et al.
Pageof 6