Bursting electrical behavior is commonly observed in a variety of nerve and endocrine cells, including that in electrically coupled \u3b2\u2010cells located in intact pancreatic islets. However, individual \u3b2\u2010cells usually display either spiking or very fast bursting behavior, and the difference between isolated and coupled cells has been suggested to be due to stochastic fluctuations of the plasma membrane ion channels, which are supposed to have a stronger effect on single cells than on cells situated in clusters (the channel sharing hypothesis). This effect of noise has previously been studied using numerical simulations. We show here how the application of two recent methods allows an analytic treatment of the stochastic effects...
AbstractGlucose triggers bursting activity in pancreatic islets, which mediates the Ca2+ uptake that...
The influence of intrinsic channel noise on the spontaneous spiking activity of poisoned excitable m...
Understanding how heterogeneous cellular responses emerge from cell-to-cell variations in expression...
Bursting electrical behavior is commonly observed in a variety of nerve and endocrine cells, includi...
To study why pancreatic beta-cells prefer to burst as a multi-cellular complex, we have formulated a...
AbstractUnlike isolated β-cells, which usually produce continuous spikes or fast and irregular burst...
Pancreatic beta-cells show bursting electrical activity with a wide range of burst periods ranging f...
Pancreatic beta-cells in an intact Islet of Langerhans exhibit bursting electrical behavior. The Cha...
Pancreatic \u3b2-cells show multiple intrinsic modes of oscillation with bursting electrical activit...
Pancreatic β-cells exhibit bursting electrical activity, which is correlated with insulin secretion....
Pancreatic beta-cells coupled by gap junctions in sufficiently large clusters exhibit regular electr...
Previous mathematical modeling of beta cell electrical activity has involved single cells or, recent...
This is the final version. Available on open access from Public Library of Science via the DOI in th...
Electrical bursting oscillations of mammalian pancreatic beta-cells are synchronous among cells with...
From our everyday life, we know that our hearts beat with a rhythm which is not perfectly periodic....
AbstractGlucose triggers bursting activity in pancreatic islets, which mediates the Ca2+ uptake that...
The influence of intrinsic channel noise on the spontaneous spiking activity of poisoned excitable m...
Understanding how heterogeneous cellular responses emerge from cell-to-cell variations in expression...
Bursting electrical behavior is commonly observed in a variety of nerve and endocrine cells, includi...
To study why pancreatic beta-cells prefer to burst as a multi-cellular complex, we have formulated a...
AbstractUnlike isolated β-cells, which usually produce continuous spikes or fast and irregular burst...
Pancreatic beta-cells show bursting electrical activity with a wide range of burst periods ranging f...
Pancreatic beta-cells in an intact Islet of Langerhans exhibit bursting electrical behavior. The Cha...
Pancreatic \u3b2-cells show multiple intrinsic modes of oscillation with bursting electrical activit...
Pancreatic β-cells exhibit bursting electrical activity, which is correlated with insulin secretion....
Pancreatic beta-cells coupled by gap junctions in sufficiently large clusters exhibit regular electr...
Previous mathematical modeling of beta cell electrical activity has involved single cells or, recent...
This is the final version. Available on open access from Public Library of Science via the DOI in th...
Electrical bursting oscillations of mammalian pancreatic beta-cells are synchronous among cells with...
From our everyday life, we know that our hearts beat with a rhythm which is not perfectly periodic....
AbstractGlucose triggers bursting activity in pancreatic islets, which mediates the Ca2+ uptake that...
The influence of intrinsic channel noise on the spontaneous spiking activity of poisoned excitable m...
Understanding how heterogeneous cellular responses emerge from cell-to-cell variations in expression...