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Volumn 32-33, Issue , 2000, Pages 219-224
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Escape rate models for noisy integrate-and-fire neurons
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Author keywords
Diffusion approximation; Escape noise; Hazard; Integrate and fire neuron; Interspike interval distribution
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Indexed keywords
APPROXIMATION THEORY;
BIOELECTRIC POTENTIALS;
CELL MEMBRANES;
INTEGRAL EQUATIONS;
INTEGRATION;
MATHEMATICAL MODELS;
OPTIMIZATION;
PROBABILITY DENSITY FUNCTION;
DIFFUSION APPROXIMATION;
ESCAPE NOISE;
INTEGRATE AND FIRE NEURON;
INTERSPIKE INTERVAL DISTRIBUTION;
NEURAL NETWORKS;
ANALYTIC METHOD;
ARTICLE;
CONTROLLED STUDY;
DENSITY;
MATHEMATICAL MODEL;
NERVE CELL MEMBRANE POTENTIAL;
NERVE CONDUCTION;
NOISE;
PRIORITY JOURNAL;
SPIKE;
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EID: 0033929686
PISSN: 09252312
EISSN: None
Source Type: Journal
DOI: 10.1016/S0925-2312(00)00167-3 Document Type: Article |
Times cited : (15)
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References (12)
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