The influence of the a-current on the dynamics of an oscillator-follower inhibitory network
Document Type
Article
Publication Date
12-1-2009
Abstract
The transient potassium A-current is present in almost all neurons and plays an essential role in determining the timing and frequency of action potential generation. We use a three-variable mathematical model to examine the role of the A-current in a rhythmic inhibitory network, as is common in central pattern generation. We focus on a feed-forward architecture consisting of an oscillator neuron inhibiting a follower neuron. We use separation of time scales to demonstrate that the trajectory of the follower neuron within each cycle can be tracked by analyzing the dynamics on a two-dimensional slow manifold that is determined by the two slow model variables: the recovery variable and the inactivation of the A-current. The steady-state trajectory, however, requires tracking the slow variables across multiple cycles. We show that tracking the slow variables, under simplifying assumptions, leads to a one-dimensional map of the unit interval with at most a single discontinuity depending on gA, the maximal conductance of the A-current, or other model parameters. We demonstrate that, as the value of gA is varied, the trajectory of the follower neuron goes through a set of bifurcations to produce n:m periodic solutions, where the follower neuron becomes active m times for each n cycles of the oscillator. Using a generalized Pascal triangle, each n:m trajectory can be constructed as a combination of solutions from a higher level of the triangle. © 2009 Society for Industrial and Applied Mathematics.
Identifier
77950877192 (Scopus)
Publication Title
SIAM Journal on Applied Dynamical Systems
External Full Text Location
https://doi.org/10.1137/090760994
e-ISSN
15360040
First Page
1564
Last Page
1590
Issue
4
Volume
8
Recommended Citation
Zhang, Yu; Bose, Amitabha; and Nadim, Farzan, "The influence of the a-current on the dynamics of an oscillator-follower inhibitory network" (2009). Faculty Publications. 11775.
https://digitalcommons.njit.edu/fac_pubs/11775
