The dynamics of intracellular Ca²⁺ is driven by random events called Ca²⁺ puffs, in which Ca²⁺ is liberated from intracellular stores. We show that the emergence of Ca²⁺ puffs can be mapped to an escape process. The mean first passage times that correspond to the stochastic fraction of puff periods are computed from a novel master equation and two Fokker-Planck equations. Our results demonstrate that the mathematical modeling of Ca²⁺ puffs has to account for the discrete character of the Ca²⁺ release sites and does not permit a continuous description of the number of open channels
I model the behavior of intracellular Ca2 release with high buffer concentrations. The model uses a...
The intracellular release of calcium from the endoplasmic reticulum is controlled by ion channels. T...
peer reviewedUsually, the occurrence of random cell behavior is appointed to small copy numbers of m...
The dynamics of intracellular Ca²⁺ is driven by random events called Ca²⁺ puffs, in which Ca²⁺ is lib...
The dynamics of intracellular Ca(2+) is driven by random events called Ca(2+) puffs, in which Ca(2+)...
The dynamics of intracellular Ca2 is driven by random events called Ca2 puffs, in which Ca2 is li...
AbstractI present a stochastic model for intracellular Ca2+ oscillations. The model starts from stoc...
AbstractCa2+ oscillations have been considered to obey deterministic dynamics for almost two decades...
I present a stochastic model for intracellular Ca(2+) oscillations. The model starts from stochastic...
I present a stochastic model for intracellular Ca2 oscillations. The model starts from stochastic b...
We investigate key characteristics of Ca²⁺ puffs in deterministic and stochastic frameworks that all...
Ca2 release channels open and close randomly because of random binding and dissociation of Ca2 and...
Usually, the occurrence of random cell behavior is appointed to small copy numbers of molecules invo...
Usually, the occurrence of random cell behavior is appointed to small copy numbers of molecules invo...
AbstractI model the behavior of intracellular Ca2+ release with high buffer concentrations. The mode...
I model the behavior of intracellular Ca2 release with high buffer concentrations. The model uses a...
The intracellular release of calcium from the endoplasmic reticulum is controlled by ion channels. T...
peer reviewedUsually, the occurrence of random cell behavior is appointed to small copy numbers of m...
The dynamics of intracellular Ca²⁺ is driven by random events called Ca²⁺ puffs, in which Ca²⁺ is lib...
The dynamics of intracellular Ca(2+) is driven by random events called Ca(2+) puffs, in which Ca(2+)...
The dynamics of intracellular Ca2 is driven by random events called Ca2 puffs, in which Ca2 is li...
AbstractI present a stochastic model for intracellular Ca2+ oscillations. The model starts from stoc...
AbstractCa2+ oscillations have been considered to obey deterministic dynamics for almost two decades...
I present a stochastic model for intracellular Ca(2+) oscillations. The model starts from stochastic...
I present a stochastic model for intracellular Ca2 oscillations. The model starts from stochastic b...
We investigate key characteristics of Ca²⁺ puffs in deterministic and stochastic frameworks that all...
Ca2 release channels open and close randomly because of random binding and dissociation of Ca2 and...
Usually, the occurrence of random cell behavior is appointed to small copy numbers of molecules invo...
Usually, the occurrence of random cell behavior is appointed to small copy numbers of molecules invo...
AbstractI model the behavior of intracellular Ca2+ release with high buffer concentrations. The mode...
I model the behavior of intracellular Ca2 release with high buffer concentrations. The model uses a...
The intracellular release of calcium from the endoplasmic reticulum is controlled by ion channels. T...
peer reviewedUsually, the occurrence of random cell behavior is appointed to small copy numbers of m...