Harel Z. Shouval
Orcid: 0000-0003-2799-1337
  According to our database1,
  Harel Z. Shouval
  authored at least 21 papers
  between 1991 and 2022.
  
  
Collaborative distances:
Collaborative distances:
Timeline
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Bibliography
  2022
Active intrinsic conductances in recurrent networks allow for long-lasting transients and sustained activity with realistic firing rates as well as robust plasticity.
    
  
    J. Comput. Neurosci., 2022
    
  
  2021
    Frontiers Comput. Neurosci., 2021
    
  
  2015
    J. Comput. Neurosci., 2015
    
  
  2012
    BMC Syst. Biol., 2012
    
  
  2011
A single spiking neuron that can represent interval timing: analysis, plasticity and multi-stability.
    
  
    J. Comput. Neurosci., 2011
    
  
A network of spiking neurons that can represent interval timing: mean field analysis.
    
  
    J. Comput. Neurosci., 2011
    
  
  2010
    Frontiers Comput. Neurosci., 2010
    
  
  2009
  2007
  2006
    Neurocomputing, 2006
    
  
A Biophysical Basis for the Inter-spike Interaction of Spike-timing-dependent Plasticity.
    
  
    Biol. Cybern., 2006
    
  
  2003
Calcium as the associative signal for a model of Hebbian plasticity: application to multi-input environments.
    
  
    Neurocomputing, 2003
    
  
  2002
    Biol. Cybern., 2002
    
  
    Proceedings of the Advances in Neural Information Processing Systems 15 [Neural Information Processing Systems, 2002
    
  
  2000
    Neural Comput., 2000
    
  
  1999
    Neurocomputing, 1999
    
  
  1998
Classification of underwater mammals using feature extraction based on time-frequency analysis and BCM theory.
    
  
    IEEE Trans. Signal Process., 1998
    
  
  1997
Receptive Field Formation in Natural Scene Environments: Comparison of Single Cell Learning Rules.
    
  
    Proceedings of the Advances in Neural Information Processing Systems 10, 1997
    
  
  1996
Effect of Binocular Cortical Misalignment on Ocular Dominance and Orientation Selectivity.
    
  
    Neural Comput., 1996
    
  
Organization of receptive fields in networks with Hebbian learning: the connection between synaptic and phenomenological models.
    
  
    Biol. Cybern., 1996
    
  
  1991