We propose a generalization of the neurotransmitter release model proposed in Rodrigues et al. (2016). We increase the complexity of the underlying slow–fast system by considering a degree-four polynomial as parametrization of the critical manifold. We focus on the possible transient and asymptotic dynamics, exploiting the so-called entry–exit function to describe slow parts of the dynamics. We provide extensive numerical simulations, complemented by numerical bifurcation analysis.
Slow–fast dynamics in a neurotransmitter release model: Delayed response to a time-dependent input signal / Sensi, M.; Desroches, M.; Rodrigues, S.. - In: PHYSICA D-NONLINEAR PHENOMENA. - ISSN 0167-2789. - 455:(2023), pp. 1-12. [10.1016/j.physd.2023.133887]
Slow–fast dynamics in a neurotransmitter release model: Delayed response to a time-dependent input signal
Sensi M.;
2023
Abstract
We propose a generalization of the neurotransmitter release model proposed in Rodrigues et al. (2016). We increase the complexity of the underlying slow–fast system by considering a degree-four polynomial as parametrization of the critical manifold. We focus on the possible transient and asymptotic dynamics, exploiting the so-called entry–exit function to describe slow parts of the dynamics. We provide extensive numerical simulations, complemented by numerical bifurcation analysis.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2993460