Craig A. Atencio

Affiliations: 
University of California, San Francisco, San Francisco, CA 
Area:
Auditory system
Website:
http://www.keck.ucsf.edu/~craig
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"Craig Atencio"
Mean distance: 13.87 (cluster 17)
 
SNBCP
Cross-listing: CSD Tree

Parents

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H Steven Colburn research assistant 1997-1998 Boston University
Bertrand Delgutte research assistant 1998-2000 Harvard, MIT
Christoph E. Schreiner grad student 2007 UCSF
 (Laminar organization of spectrotemporal receptive fields in the primary auditory cortex of the cat.)
Christoph E. Schreiner post-doc 2007- UCSF
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Publications

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Homma NY, Hullett PW, Atencio CA, et al. (2020) Auditory Cortical Plasticity Dependent on Environmental Noise Statistics. Cell Reports. 30: 4445-4458.e5
Kim KX, Atencio CA, Schreiner CE. (2020) Stimulus dependent transformations between synaptic and spiking receptive fields in auditory cortex. Nature Communications. 11: 1102
Shih JY, Yuan K, Atencio CA, et al. (2020) Distinct Manifestations of Cooperative, Multidimensional Stimulus Representations in Different Auditory Forebrain Stations. Cerebral Cortex (New York, N.Y. : 1991)
See JZ, Atencio CA, Sohal VS, et al. (2018) Coordinated neuronal ensembles in primary auditory cortical columns. Elife. 7
Atencio CA, Sharpee TO. (2017) Multidimensional receptive field processing by cat primary auditory cortical neurons. Neuroscience
Cheung SW, Atencio CA, Levy ERJ, et al. (2017) Anisomorphic Cortical Reorganization in Asymmetric Sensorineural Hearing Loss. Journal of Neurophysiology. jn.00119.2017
Atencio CA, Shen V, Schreiner CE. (2016) Synchrony, connectivity, and functional similarity in auditory midbrain local circuits. Neuroscience
Atencio CA, Schreiner CE. (2016) Functional congruity in local auditory cortical microcircuits. Neuroscience. 316: 402-419
Atencio CA, Shih JY, Schreiner CE, et al. (2014) Primary auditory cortical responses to electrical stimulation of the thalamus. Journal of Neurophysiology. 111: 1077-87
Atencio CA, Schreiner CE. (2013) Auditory cortical local subnetworks are characterized by sharply synchronous activity. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 18503-14
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