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Spike-frequency adaptation separates transient communication signals from background oscillations

, , and . J Neurosci, 25 (9): 2312--21 (March 2005)
DOI: 10.1523/JNEUROSCI.4795-04.2005

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Spike-Frequency Adaptation., and . Encyclopedia of Computational Neuroscience, Springer, (2014)Information filtering by synchronous spikes in a neural population., , and . J. Comput. Neurosci., 34 (2): 285-301 (2013)Least Informative Dimensions., , , and . NIPS, page 413-421. (2013)Timescale-Invariant Representation of Acoustic Communication Signals by a Bursting Neuron, , , , , and . J Neurosci, 29 (8): 2575--2580 (February 2009)Erratum to: Information filtering by synchronous spikes in a neural population., , and . J. Comput. Neurosci., 39 (1): 105-106 (2015)Spike-frequency adaptation generates intensity invariance in a primary auditory interneuron, and . J Comp Neurosci, 24 (2): 113--36 (April 2008)From response to stimulus: adaptive sampling in sensory physiology, , , and . Curr Op Neurobiol, 17 (4): 430--6 (August 2007)Spike-frequency adaptation separates transient communication signals from background oscillations, , and . J Neurosci, 25 (9): 2312--21 (March 2005)GFE - Graphical Finite State Machine Editor for Parallel Execution., and . ICEC, volume 4740 of Lecture Notes in Computer Science, page 401-406. Springer, (2007)A Universal Model for Spike-Frequency Adaptation., and . Neural Comput., 15 (11): 2523-2564 (2003)