Cytosolic calcium oscillations occur in a wide variety of cells and are involved in different cellular functions. We describe these calcium oscillations by a mathematical model based on the putative electrophysiological properties of the endoplasmic reticulum (ER) membrane. The salient features of our membrane model are calcium-dependent calcium channels and calcium pumps in the ER membrane, constant entry of calcium into the cytosol, calcium dependent removal from the cytosol, and buffering by cytoplasmic calcium binding proteins. Numerical integration of the model allows us to study the fluctuations in the cytosolic calcium concentration, the ER membrane potential, and the concentration of free calcium binding sites on a calcium binding p...
AbstractBrief changes in the cytosolic and intra-organellar Ca2+ concentration serve as specific sig...
AbstractContrary to intuitive expectations, overexpression of sarco-endoplasmic reticulum (ER) Ca2+ ...
Ca2+ plays a vital role in muscle mechanics, cardiac electrophysiology, secretion, hair cells, and a...
A minimal model is presented to explain changes in frequency, shape, and amplitude of Ca2+ oscillati...
The external stimulation of many cells by a hormone, for example, often leads to an oscillating cyto...
AbstractMany cells use oscillations in calcium concentration to transmit messages. The oscillations ...
In this paper, a dynamic model of cytosolic calcium concentration ([Ca2+]Cyt) oscillations is establ...
This review provides a comparative overview of recent developments in the modelling of cellular calc...
In many electrically nonexcitable cells, the release of calcium from internal stores is followed by ...
Changes in cellular Ca2+ concentration control a wide range of physiological processes, from the sub...
AbstractWe propose here a unitary approach to the luminal and cytosolic control of calcium release. ...
ABSTRACT We propose here a unitary approach to the luminal and cytosolic control of calcium release....
AbstractI model the behavior of intracellular Ca2+ release with high buffer concentrations. The mode...
This review provides a comparative overview of recent developments in the modelling of cellular calc...
AbstractPhysiological regulation of Ca2+ release from the endoplasmic reticulum (ER) is critical for...
AbstractBrief changes in the cytosolic and intra-organellar Ca2+ concentration serve as specific sig...
AbstractContrary to intuitive expectations, overexpression of sarco-endoplasmic reticulum (ER) Ca2+ ...
Ca2+ plays a vital role in muscle mechanics, cardiac electrophysiology, secretion, hair cells, and a...
A minimal model is presented to explain changes in frequency, shape, and amplitude of Ca2+ oscillati...
The external stimulation of many cells by a hormone, for example, often leads to an oscillating cyto...
AbstractMany cells use oscillations in calcium concentration to transmit messages. The oscillations ...
In this paper, a dynamic model of cytosolic calcium concentration ([Ca2+]Cyt) oscillations is establ...
This review provides a comparative overview of recent developments in the modelling of cellular calc...
In many electrically nonexcitable cells, the release of calcium from internal stores is followed by ...
Changes in cellular Ca2+ concentration control a wide range of physiological processes, from the sub...
AbstractWe propose here a unitary approach to the luminal and cytosolic control of calcium release. ...
ABSTRACT We propose here a unitary approach to the luminal and cytosolic control of calcium release....
AbstractI model the behavior of intracellular Ca2+ release with high buffer concentrations. The mode...
This review provides a comparative overview of recent developments in the modelling of cellular calc...
AbstractPhysiological regulation of Ca2+ release from the endoplasmic reticulum (ER) is critical for...
AbstractBrief changes in the cytosolic and intra-organellar Ca2+ concentration serve as specific sig...
AbstractContrary to intuitive expectations, overexpression of sarco-endoplasmic reticulum (ER) Ca2+ ...
Ca2+ plays a vital role in muscle mechanics, cardiac electrophysiology, secretion, hair cells, and a...