Spontaneous Excitability in the Morris--Lecar Model with Ion Channel Noise

From MaRDI portal
Publication:2940737

DOI10.1137/140971385zbMath1348.60142arXiv1406.2914OpenAlexW2963262263MaRDI QIDQ2940737

Jay M. Newby

Publication date: 20 January 2015

Published in: SIAM Journal on Applied Dynamical Systems (Search for Journal in Brave)

Full work available at URL: https://arxiv.org/abs/1406.2914




Related Items (18)

Exit versus escape for stochastic dynamical systems and application to the computation of the bursting time duration in neuronal networksStability of target waves in excitable media under electromagnetic induction and radiationStationary and Time-Dependent Molecular Distributions in Slow-Fast Feedback CircuitsLévy noise induced escape in the Morris-Lecar modelA variational method for analyzing limit cycle oscillations in stochastic hybrid systemsGlobal density equations for a population of actively switching particlesStochastic Sensitivity Analysis of Noise-Induced Mixed-Mode Oscillations in Morris--Lecar Neuron ModelStochastic Spiking-Bursting Excitability and Transition to Chaos in a Discrete-Time Neuron ModelStochastic hybrid systems in cellular neuroscienceStochastic switching in biology: from genotype to phenotypeStochastic transitions between in-phase and anti-phase synchronization in coupled map-based neural oscillatorsNoise induced escape in one-population and two-population stochastic neural networks with internal statesOn the Hamiltonian structure of large deviations in stochastic hybrid systemsStochastic Sensitivity and Method of Principal Directions in Excitability Analysis of the Hodgkin–Huxley ModelGeneralizing Parallel Replica Dynamics: Trajectory Fragments, Asynchronous Computing, and PDMPsCoherent spin states and stochastic hybrid path integralsHeavy-tailed distributions in a stochastic gene autoregulation modelConstruction of stochastic hybrid path integrals using operator methods






This page was built for publication: Spontaneous Excitability in the Morris--Lecar Model with Ion Channel Noise