Title of article
Complex oscillations and waves of calcium in pancreatic acinar cells
Author/Authors
Simpson، نويسنده , , David and Kirk، نويسنده , , Vivien and Sneyd، نويسنده , , James، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2005
Pages
22
From page
303
To page
324
Abstract
We perform a bifurcation analysis of a model of Ca2+ wave propagation in the basal region of pancreatic acinar cells. The model we consider was first presented in Sneyd et al. [J. Sneyd, K. Tsaneva-Atanasova, J.I.E. Bruce, S.V. Straub, D.R. Giovannucci, D.I. Yule, A model of calcium waves in pancreatic and parotid acinar cells, Biophys. J. 85 (2003) 1392–1405], where a partial bifurcation analysis was given of the model in the absence of diffusion. We obtain more complete information about bifurcations of the diffusionless model via numerical studies, then analyse the spatially extended model by numerical investigation of the travelling wave equations and direct numerical solution of the model equations. We find solitary waves in the model equations arising from homoclinic bifurcations in the travelling wave equations. The solitary waves exist and appear to be stable for a significant interval of the primary bifurcation parameter (i.e., the concentration of inositol trisphosphate) but are eventually replaced by irregular spatio-temporal behaviour. The homoclinic bifurcations are related to a number of complicated mathematical structures in the travelling wave equations, including an anomalous homoclinic-Hopf bifurcation, heteroclinic bifurcations between an equilibrium and a periodic orbit, and homoclinic bifurcations of periodic orbits.
Keywords
Calcium waves , Pancreatic acinar cells , Homoclinic Bifurcation , Homoclinic-Hopf bifurcation , Travelling waves , Homoclinic bifurcation of a periodic orbit
Journal title
Physica D Nonlinear Phenomena
Serial Year
2005
Journal title
Physica D Nonlinear Phenomena
Record number
1725965
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