paper

Interdependence of sodium and potassium gating variables in the Hodgkin-Huxley model

arXiv:2402.16711

Abstract

We explore the relationship between sodium (Na) and potassium (K) gating variables in the 4-dimensional (4D) Hodgkin-Huxley (HH) electrophysiology model, and reducing its complexity by deriving new 3D and 2D models that maintain the dynamic properties of the original model. The new 3D and 2D models are grounded in the relationship between the gating variables and of the 4D HH model, where depends of the input external stimulus, indicating an interdependence between the dynamics of Na and K transmembrane voltage-gated channels. The presence of Na/K-ATPase pumps along the axon may explain this interdependence. We derive the corresponding cable equations for the two new HH-type models and demonstrate that the action potential propagates along the axon at a speed given by , where , , and are constants independent of the local stimulus intensity, is the diffusion coefficient of the electric signal along the axon, is the axon transmembrane capacitance, and is the axon conducting resistivity.

8 pages, 12 figures