Calcium sparks in cardiac muscle cells occur when a cluster of Ca2+ channels open and release Ca2+ from an internal store. A simplified model of Ca2+ sparks has been developed to describe the dynamics of a cluster of channels, which is of the form of a continuous time Markov chain with nearest neighbour transitions and slowly varying jump functions. The chain displays metastability, whereby the probability distribution of the state of the system evolves exponentially slowly, with one of the metastable states occurring at the boundary. An asymptotic technique for analysing the Master equation (a differential-difference equation) associated with these Markov chains is developed using the WKB and projection methods. The method is used to re-de...
AbstractWe present a probability density approach to modeling localized Ca2+ influx via L-type Ca2+ ...
Markov chain models have played an important role in understanding the relationship between single c...
A major challenge in biology is to understand how molecular processes determine phenotypic features....
Calcium sparks in cardiac muscle cells occur when a cluster of Ca2+ channels open and release Ca2+ f...
Calcium sparks in cardiac muscle cells occur when a cluster of Ca2+ channels open and release Ca2+ f...
Localized calcium elevations known as calcium puffs or sparks are cellular signals arising from coop...
AbstractCalcium sparks are local regenerative releases of Ca2+ from a cluster of ryanodine receptors...
Localized cytosolic Ca2+ elevations known as puffs and sparks are important regulators of cellular f...
Background: Since the discovery of Ca2+ sparks and their stochastic behaviour in cardiac myocytes, ...
Mathematical models of calcium release sites derived from Markov chain models of intracellular calci...
The development of modeling structures at the channel level that can integrate subcellular and cell ...
Contraction of cardiac cells is initiated by an increase in the level of intracellular calcium conce...
We present a minimal whole cell model that accounts for both local and global aspects of Ca signalin...
AbstractWe present a model that provides a unified framework for studying Ca2+ sparks and Ca2+ waves...
Calcium ions are an important second messenger in living cells. Indeed calcium signals in the form o...
AbstractWe present a probability density approach to modeling localized Ca2+ influx via L-type Ca2+ ...
Markov chain models have played an important role in understanding the relationship between single c...
A major challenge in biology is to understand how molecular processes determine phenotypic features....
Calcium sparks in cardiac muscle cells occur when a cluster of Ca2+ channels open and release Ca2+ f...
Calcium sparks in cardiac muscle cells occur when a cluster of Ca2+ channels open and release Ca2+ f...
Localized calcium elevations known as calcium puffs or sparks are cellular signals arising from coop...
AbstractCalcium sparks are local regenerative releases of Ca2+ from a cluster of ryanodine receptors...
Localized cytosolic Ca2+ elevations known as puffs and sparks are important regulators of cellular f...
Background: Since the discovery of Ca2+ sparks and their stochastic behaviour in cardiac myocytes, ...
Mathematical models of calcium release sites derived from Markov chain models of intracellular calci...
The development of modeling structures at the channel level that can integrate subcellular and cell ...
Contraction of cardiac cells is initiated by an increase in the level of intracellular calcium conce...
We present a minimal whole cell model that accounts for both local and global aspects of Ca signalin...
AbstractWe present a model that provides a unified framework for studying Ca2+ sparks and Ca2+ waves...
Calcium ions are an important second messenger in living cells. Indeed calcium signals in the form o...
AbstractWe present a probability density approach to modeling localized Ca2+ influx via L-type Ca2+ ...
Markov chain models have played an important role in understanding the relationship between single c...
A major challenge in biology is to understand how molecular processes determine phenotypic features....