Asymptotic behavior of single graded response neuron model with a delayed self-connection (1996)
- Authors:
- USP affiliated authors: MALTA, CORACI PEREIRA - IF ; RAGAZZO, CLODOALDO GROTTA - IME
- Unidades: IF; IME
- Assunto: FÍSICA MATEMÁTICA
- Language: Inglês
- Imprenta:
-
ABNT
MALTA, Coraci Pereira et al. Asymptotic behavior of single graded response neuron model with a delayed self-connection. . São Paulo: Ifusp. Disponível em: http://publica-sbi.if.usp.br/PDFs/pd1201.pdf. Acesso em: 26 fev. 2026. , 1996 -
APA
Malta, C. P., Pakdaman, K., Vibert, J. F., Arino, O., & Ragazzo, C. G. (1996). Asymptotic behavior of single graded response neuron model with a delayed self-connection. São Paulo: Ifusp. Recuperado de http://publica-sbi.if.usp.br/PDFs/pd1201.pdf -
NLM
Malta CP, Pakdaman K, Vibert JF, Arino O, Ragazzo CG. Asymptotic behavior of single graded response neuron model with a delayed self-connection [Internet]. 1996 ;[citado 2026 fev. 26 ] Available from: http://publica-sbi.if.usp.br/PDFs/pd1201.pdf -
Vancouver
Malta CP, Pakdaman K, Vibert JF, Arino O, Ragazzo CG. Asymptotic behavior of single graded response neuron model with a delayed self-connection [Internet]. 1996 ;[citado 2026 fev. 26 ] Available from: http://publica-sbi.if.usp.br/PDFs/pd1201.pdf - Asymptotic behavior of irreducible excitatory networks of graded-response neurons
- Non-existence of superexponential solutions in a system of delay differential equations modeling a two-neuron network
- Dynamics of a two graded-response neuron network with delay: negative feedback
- Transient oscillations in continuous-time excitatory ring neural networks with delay
- Metastability for delayed differential equations
- Asymptotic behavior of irreducible excitatory networks of graded-response neurons
- Transient regime duration in continuous neural networks with delay
- Two important numbers in the Henon-Heiles dynamics
- Oscillations in continuous-time ring neural network models with and without delay
- Single graded-response neuron model with recurrent excitation: distributed delay
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