Input response of neural network model with lognormally distributed synaptic weights

Y Nagano, R Karakida, N Watanabe… - Journal of the Physical …, 2016 - journals.jps.jp
Neural assemblies in the cortical microcircuit can sustain irregular spiking activity without
external inputs. On the other hand, neurons exhibit rich evoked activities driven by sensory …

Input response of neural network model with lognormally distributed synaptic weights

Y Nagano, R Karakida, N Watanabe… - Journal of the …, 2016 - keio.elsevierpure.com
抄録 Neural assemblies in the cortical microcircuit can sustain irregular spiking activity
without external inputs. On the other hand, neurons exhibit rich evoked activities driven by …

[引用][C] Input Response of Neural Network Model with Lognormally Distributed Synaptic Weights

Y Nagano, R Karakida, N Watanabe… - Journal of the Physical …, 2016 - cir.nii.ac.jp

[PDF][PDF] Input Response of Neural Network Model with Lognormally Distributed Synaptic Weights

Y Nagano, R Karakida, N Watanabe… - Journal of the Physical …, 2016 - academia.edu
accepted May 9, 2016; published online June 6, 2016) Neural assemblies in the cortical
microcircuit can sustain irregular spiking activity without external inputs. On the other hand …

Input Response of Neural Network Model with Lognormally Distributed Synaptic Weights

Y Nagano, R Karakida, N Watanabe… - Journal of the …, 2016 - ui.adsabs.harvard.edu
Neural assemblies in the cortical microcircuit can sustain irregular spiking activity without
external inputs. On the other hand, neurons exhibit rich evoked activities driven by sensory …

Input response of neural network model with lognormally distributed synaptic weights

Y Nagano, R Karakida, N Watanabe… - Journal of the …, 2016 - keio.elsevierpure.com
Neural assemblies in the cortical microcircuit can sustain irregular spiking activity without
external inputs. On the other hand, neurons exhibit rich evoked activities driven by sensory …