<--- Back to Details
First PageDocument Content
Neuroscience / Computational neuroscience / Neural networks / Neurophysiology / Artificial neural networks / Hebbian theory / Synaptic weight / Chemical synapse / Synaptic plasticity / Biological neural network / Biological neuron model / Spike-timing-dependent plasticity
Date: 2012-07-05 22:51:04
Neuroscience
Computational neuroscience
Neural networks
Neurophysiology
Artificial neural networks
Hebbian theory
Synaptic weight
Chemical synapse
Synaptic plasticity
Biological neural network
Biological neuron model
Spike-timing-dependent plasticity

From Modulated Hebbian Plasticity to Simple Behavior Learning through Noise and Weight Saturation Preprint accepted for publication in Neural Networksdoi: j.neunetAndrea Soltoggioa, Kenneth O

Add to Reading List

Source URL: eplex.cs.ucf.edu

Download Document from Source Website

File Size: 1,01 MB

Share Document on Facebook

Similar Documents

LETTER  Communicated by Friedrich Sommer A Sparse Generative Model of V1 Simple Cells with Intrinsic Plasticity

LETTER Communicated by Friedrich Sommer A Sparse Generative Model of V1 Simple Cells with Intrinsic Plasticity

DocID: 1rhHL - View Document

Simplified Rules and Theoretical Analysis for Information Bottleneck Optimization and PCA with Spiking Neurons Lars Buesing, Wolfgang Maass Institute for Theoretical Computer Science

Simplified Rules and Theoretical Analysis for Information Bottleneck Optimization and PCA with Spiking Neurons Lars Buesing, Wolfgang Maass Institute for Theoretical Computer Science

DocID: 1qLpp - View Document

Bayesian Computation Emerges in Generic Cortical Microcircuits through Spike-Timing-Dependent Plasticity Bernhard Nessler1*, Michael Pfeiffer1,2, Lars Buesing1, Wolfgang Maass1 1 Institute for Theoretical Computer Scienc

Bayesian Computation Emerges in Generic Cortical Microcircuits through Spike-Timing-Dependent Plasticity Bernhard Nessler1*, Michael Pfeiffer1,2, Lars Buesing1, Wolfgang Maass1 1 Institute for Theoretical Computer Scienc

DocID: 1qxnF - View Document

ARTICLE  Communicated by Erkki Oja Synergies Between Intrinsic and Synaptic Plasticity Mechanisms

ARTICLE Communicated by Erkki Oja Synergies Between Intrinsic and Synaptic Plasticity Mechanisms

DocID: 1qfHE - View Document

Fully Autonomous Real-Time Autoencoder-Augmented Hebbian Learning through the Collection of Novel Experiences To appear in: Proc. of the Fifteenth International Conference on the Synthesis and Simulation of Living System

Fully Autonomous Real-Time Autoencoder-Augmented Hebbian Learning through the Collection of Novel Experiences To appear in: Proc. of the Fifteenth International Conference on the Synthesis and Simulation of Living System

DocID: 1q58r - View Document