Jeffry S. Isaacson

Affiliations: 
University of California, San Diego, La Jolla, CA 
Area:
neural circuits, olfactory system
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"Jeffry Isaacson"
Mean distance: 12.28 (cluster 6)
 
SNBCP

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Hanxiong Zhang research assistant 2016-2017 UCSD Neurosciences
Pei-Ann Lin grad student 2017- UCSD
Tenaya M. Rodewald grad student 2003 UCSD
Gabe J. Murphy grad student 2004 UCSD
Alfonso junior Apicella grad student 2005-2006 UCSD
Daniel P. Darcy grad student 2007 UCSD
Aaron G. Blankenship grad student 2009 UCSD
Bassam V. Atallah grad student 2006-2010 UCSD Neurosciences
Cindy Poo grad student 2011 UCSD
Caleb C. Stokes grad student 2011 UCSD
Nicholas Edwards post-doc 2016- UCSD
Bernard J. Slater post-doc 2016- UCSD
Kevin Franks post-doc 2003-2005 UCSD
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Publications

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Kato HK, Gillet SN, Isaacson JS. (2015) Flexible Sensory Representations in Auditory Cortex Driven by Behavioral Relevance. Neuron
Sturgill JF, Isaacson JS. (2015) Somatostatin cells regulate sensory response fidelity via subtractive inhibition in olfactory cortex. Nature Neuroscience. 18: 531-5
Boyd AM, Kato HK, Komiyama T, et al. (2015) Broadcasting of cortical activity to the olfactory bulb. Cell Reports. 10: 1032-9
Stokes CC, Teeter CM, Isaacson JS. (2014) Single dendrite-targeting interneurons generate branch-specific inhibition. Frontiers in Neural Circuits. 8: 139
Kato HK, Gillet SN, Peters AJ, et al. (2013) Parvalbumin-expressing interneurons linearly control olfactory bulb output. Neuron. 80: 1218-31
Boyd AM, Sturgill JF, Poo C, et al. (2012) Cortical feedback control of olfactory bulb circuits. Neuron. 76: 1161-74
Kato HK, Chu MW, Isaacson JS, et al. (2012) Dynamic sensory representations in the olfactory bulb: modulation by wakefulness and experience. Neuron. 76: 962-75
Isaacson JS, Scanziani M. (2011) How inhibition shapes cortical activity. Neuron. 72: 231-43
Poo C, Isaacson JS. (2011) A major role for intracortical circuits in the strength and tuning of odor-evoked excitation in olfactory cortex. Neuron. 72: 41-8
Yuan Q, Isaacson JS, Scanziani M. (2011) Linking neuronal ensembles by associative synaptic plasticity. Plos One. 6: e20486
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