Kenneth D. Miller

Affiliations: 
Columbia University, New York, NY 
Area:
Computation & Theory
Website:
http://neurotheory.columbia.edu/~ken/
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"Kenneth Miller"
Mean distance: 12.45 (cluster 17)
 
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Andrew Kayser grad student UCSF
Anton E. Krukowski grad student 2000 UCSF
Thomas Z. Lauritzen grad student 1998-2003 UCSF
Brendan K. Murphy grad student 2007 UCSF
Daniel B. Rubin grad student 2012 Columbia
Avi Ziskind grad student 2013 Columbia
Aylin Cimenser post-doc Columbia
Robert C. Liu post-doc UCSF
Tatyana Sharpee post-doc UCSF
Hiroki Sugihara post-doc UCSF
Taro Toyoizumi post-doc RIKEN BSI
Todd W. Troyer post-doc UCSF
Stephanie E. Palmer post-doc 2001-2003 UCSF
Xaq Pitkow post-doc 2006-2009 Columbia
Yashar Ahmadian post-doc 2011-2014 Columbia
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Publications

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Ahmadian Y, Miller KD. (2021) What is the dynamical regime of cerebral cortex? Neuron
Keller AJ, Dipoppa M, Roth MM, et al. (2020) A Disinhibitory Circuit for Contextual Modulation in Primary Visual Cortex. Neuron
Lindsay GW, Miller KD. (2018) How biological attention mechanisms improve task performance in a large-scale visual system model. Elife. 7
Hennequin G, Ahmadian Y, Rubin DB, et al. (2018) The Dynamical Regime of Sensory Cortex: Stable Dynamics around a Single Stimulus-Tuned Attractor Account for Patterns of Noise Variability. Neuron. 98: 846-860.e5
Lindsay GW, Miller KD. (2018) Author response: How biological attention mechanisms improve task performance in a large-scale visual system model Elife
Wei X, Miller K. (2018) Modelling network mechanisms for maintaining neural population homeostasis in visual adaptation Journal of Vision. 18: 752
Liu LD, Miller KD, Pack CC. (2017) A unifying motif for spatial and directional surround suppression. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Zhang W, Falkner AL, Krishna BS, et al. (2016) Coupling between One-Dimensional Networks Reconciles Conflicting Dynamics in LIP and Reveals Its Recurrent Circuitry. Neuron
Kuchibhotla KV, Gill JV, Lindsay GW, et al. (2016) Parallel processing by cortical inhibition enables context-dependent behavior. Nature Neuroscience
Miller KD. (2016) Canonical computations of cerebral cortex. Current Opinion in Neurobiology. 37: 75-84
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