On the long time behaviour of single stochastic Hodgkin-Huxley neurons with constant signal, and a construction of circuits of interacting neurons showing self-organized rhythmic oscillations
Abstract:The stochastic Hodgkin-Huxley neurons considered in this paper replace
time-constant deterministic input $a dt$ of the classical deterministic model
by increments $\vartheta dt + dX_t$ of a stochastic process: $X$ is
Ornstein-Uhlenbeck with volatility $\sigma>0$ and backdriving force $\tau>0$,
and we call $\vartheta>0$ the signal. We have ergodicity and strong laws of
large numbers for various functionals of the process, and characterize 'quiet
behaviour' and 'regular spiking' as events whose probabil… Show more
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