Alfonso Renart
Affiliations: | CMBN | Rutgers University, New Brunswick, New Brunswick, NJ, United States |
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"Alfonso Renart"Mean distance: 13.91 (cluster 17) | S | N | B | C | P |
Parents
Sign in to add mentorNestor Parga | grad student | 1996-2001 | Universidad Autónoma de Madrid, Spain |
Kenneth D. Harris | post-doc | Rutgers, New Brunswick | |
Xiao-Jing Wang | post-doc | 2000-2003 | Boston University, Brandeis University |
Children
Sign in to add traineeTor Stensola | post-doc | 2014- | Norwegian University of Science and Technology |
Davide Reato | post-doc | 2016- | Champalimaud Centre for the Unknown |
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Publications
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Steinfeld R, Tacão-Monteiro A, Renart A. (2024) Differential representation of sensory information and behavioral choice across layers of the mouse auditory cortex. Current Biology : Cb. 34: 2200-2211.e6 |
Reato D, Steinfeld R, Tacão-Monteiro A, et al. (2023) Response outcome gates the effect of spontaneous cortical state fluctuations on perceptual decisions. Elife. 12 |
Steinmetz NA, Aydin C, Lebedeva A, et al. (2021) Neuropixels 2.0: A miniaturized high-density probe for stable, long-term brain recordings. Science (New York, N.Y.). 372 |
Cazettes F, Reato D, Morais JP, et al. (2020) Phasic Activation of Dorsal Raphe Serotonergic Neurons Increases Pupil Size. Current Biology : Cb |
Pardo-Vazquez JL, Castiñeiras-de Saa JR, Valente M, et al. (2019) The mechanistic foundation of Weber's law. Nature Neuroscience |
Kobak D, Pardo-Vazquez JL, Valente M, et al. (2019) State-dependent geometry of population activity in rat auditory cortex. Elife. 8 |
Kobak D, Pardo-Vazquez JL, Valente M, et al. (2019) Author response: State-dependent geometry of population activity in rat auditory cortex Elife |
Wimmer K, Compte A, Roxin A, et al. (2015) Sensory integration dynamics in a hierarchical network explains choice probabilities in cortical area MT. Nature Communications. 6: 6177 |
Renart A. (2014) Bringing the dynamics of movement under control. Neuron. 82: 1193-5 |
Renart A. (2013) Recurrent networks learn to tell time. Nature Neuroscience. 16: 772-4 |