We construct a heuristic model of calcium oscillations in pancreatic acinar cells. The model is based on the two-state model of Sneyd et al. (Sneyd, J., A. LeBeau and D. Yule, 2000, Traveling waves of calcium in pancreatic acinar cells: model construction and bifurcation analysis, Physica D, in press) and is similar in spirit to the FitzHugh reduction of the Hodgkin-Huxley equations. The simpli¯ed model successfully reproduces the oscillatory behavior and wave behaviour of the more complex model. In particular, the simpli¯ed model provides an example of a simple, physiologically relevant model that has a T-point and an associated spiral branch of homoclinic orbits
Calcium signals in cells occur at multiple spatial scales and variable temporal duration. However, a...
Intercellular waves of calcium (Ca2+) are an important signalling mechanism in a wide variety of ce...
Calcium waves are a much studied and important physiological phenomenon in many cell types (e.g. ooc...
We construct a heuristic model of calcium oscillations in pancreatic acinar cells. The model is base...
AbstractWe use a mathematical model of calcium dynamics in pancreatic acinar cells to investigate ca...
We construct a minimal model of cytosolic free Ca2+ oscillations based on Ca2+ release via the inosi...
Calcium ions are an important second messenger in living cells. Indeed calcium signals in the form o...
AbstractWe construct a mathematical model of Ca2+ wave propagation in pancreatic and parotid acinar ...
We present a bidomain fire-diffuse-fire model that facilitates mathematical analysis of propagating ...
ABSTRACT We use a mathematical model of calcium dynamics in pancreatic acinar cells to investigate c...
The De Young Keizer model for intracellular calcium oscillations is based around a detailed descript...
In many cell types, asynchronous or synchronous oscillations in the concentration of intracellular f...
We study the models for calcium (Ca) dynamics developed in earlier studies, in each of which the key...
Following the experimental findings of Atwater et al. (In Biochemistry Biophysics of the Pancreatic-...
Changes in cellular calcium concentration control a wide range of physiological processes, from the ...
Calcium signals in cells occur at multiple spatial scales and variable temporal duration. However, a...
Intercellular waves of calcium (Ca2+) are an important signalling mechanism in a wide variety of ce...
Calcium waves are a much studied and important physiological phenomenon in many cell types (e.g. ooc...
We construct a heuristic model of calcium oscillations in pancreatic acinar cells. The model is base...
AbstractWe use a mathematical model of calcium dynamics in pancreatic acinar cells to investigate ca...
We construct a minimal model of cytosolic free Ca2+ oscillations based on Ca2+ release via the inosi...
Calcium ions are an important second messenger in living cells. Indeed calcium signals in the form o...
AbstractWe construct a mathematical model of Ca2+ wave propagation in pancreatic and parotid acinar ...
We present a bidomain fire-diffuse-fire model that facilitates mathematical analysis of propagating ...
ABSTRACT We use a mathematical model of calcium dynamics in pancreatic acinar cells to investigate c...
The De Young Keizer model for intracellular calcium oscillations is based around a detailed descript...
In many cell types, asynchronous or synchronous oscillations in the concentration of intracellular f...
We study the models for calcium (Ca) dynamics developed in earlier studies, in each of which the key...
Following the experimental findings of Atwater et al. (In Biochemistry Biophysics of the Pancreatic-...
Changes in cellular calcium concentration control a wide range of physiological processes, from the ...
Calcium signals in cells occur at multiple spatial scales and variable temporal duration. However, a...
Intercellular waves of calcium (Ca2+) are an important signalling mechanism in a wide variety of ce...
Calcium waves are a much studied and important physiological phenomenon in many cell types (e.g. ooc...