|
Volumn 70, Issue 2, 2004, Pages 16-
|
Random walks for spike-timing-dependent plasticity
|
Author keywords
[No Author keywords available]
|
Indexed keywords
APPROXIMATION THEORY;
BIOELECTRIC PHENOMENA;
COMPUTER SIMULATION;
DIFFERENTIAL EQUATIONS;
EQUATIONS OF MOTION;
FOURIER TRANSFORMS;
FUNCTIONS;
MATHEMATICAL MODELS;
MONTE CARLO METHODS;
NUMERICAL METHODS;
ELECTRIC ORGAN DISCHARGE (EOD);
LEARNING DYNAMICS;
RANDOM WALK METHODS;
SPIKE TIMING DEPENDENT PLASTICITY (STDP);
NEURAL NETWORKS;
ACTION POTENTIAL;
ANIMAL;
ARTICLE;
BIOLOGICAL MODEL;
BIOPHYSICS;
ELECTRIC FISH;
ELECTRIC ORGAN;
ELECTROPHYSIOLOGY;
GANGLION;
METHODOLOGY;
MONTE CARLO METHOD;
NERVE CELL NETWORK;
NERVE CELL PLASTICITY;
PATHOLOGY;
PHYSIOLOGY;
STATISTICAL MODEL;
SYNAPSE;
TIME;
ACTION POTENTIALS;
ANIMALS;
BIOPHYSICS;
ELECTRIC FISH;
ELECTRIC ORGAN;
ELECTROPHYSIOLOGY;
GANGLIA;
MODELS, BIOLOGICAL;
MODELS, NEUROLOGICAL;
MODELS, STATISTICAL;
MONTE CARLO METHOD;
NERVE NET;
NEURONAL PLASTICITY;
SYNAPSES;
TIME FACTORS;
|
EID: 37649027503
PISSN: 1063651X
EISSN: None
Source Type: Journal
DOI: 10.1103/PhysRevE.70.021916 Document Type: Article |
Times cited : (5)
|
References (32)
|