Building oscillations bottom up: elemental time scales of intracellular calcium dynamics

We analyze the elemental time scale of intracellular calcium dynamics. It is determined by the time course of Ca2+ puffs, which represent the fundamental quantum of Ca2+ release from intracellular storage compartments. Since Ca2+ puffs are truly random, we propose a novel master equation and corresp...

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Main Authors: Thul, Ruediger, Falcke, Martin
Other Authors: Schimansky-Geier, Lutz
Format: Book Section
Published: World Scientific 2007
Online Access:https://eprints.nottingham.ac.uk/1764/
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author Thul, Ruediger
Falcke, Martin
author2 Schimansky-Geier, Lutz
author_facet Schimansky-Geier, Lutz
Thul, Ruediger
Falcke, Martin
author_sort Thul, Ruediger
building Nottingham Research Data Repository
collection Online Access
description We analyze the elemental time scale of intracellular calcium dynamics. It is determined by the time course of Ca2+ puffs, which represent the fundamental quantum of Ca2+ release from intracellular storage compartments. Since Ca2+ puffs are truly random, we propose a novel master equation and corresponding Fokker-Planck equations. Our results demonstrate that puff initiation can be mapped to an escape process. The stochastic fraction of puff periods is identified with mean first passage times. We find that the discrete character of release sites represents a necessary condition for puff initiation. A continuous modeling of the number of open channels does not allow Ca2+ puffs in the relevant part of the parameter space.
first_indexed 2025-11-14T18:16:19Z
format Book Section
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institution University of Nottingham Malaysia Campus
institution_category Local University
last_indexed 2025-11-14T18:16:19Z
publishDate 2007
publisher World Scientific
recordtype eprints
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spelling nottingham-17642020-05-04T20:28:33Z https://eprints.nottingham.ac.uk/1764/ Building oscillations bottom up: elemental time scales of intracellular calcium dynamics Thul, Ruediger Falcke, Martin We analyze the elemental time scale of intracellular calcium dynamics. It is determined by the time course of Ca2+ puffs, which represent the fundamental quantum of Ca2+ release from intracellular storage compartments. Since Ca2+ puffs are truly random, we propose a novel master equation and corresponding Fokker-Planck equations. Our results demonstrate that puff initiation can be mapped to an escape process. The stochastic fraction of puff periods is identified with mean first passage times. We find that the discrete character of release sites represents a necessary condition for puff initiation. A continuous modeling of the number of open channels does not allow Ca2+ puffs in the relevant part of the parameter space. World Scientific Schimansky-Geier, Lutz Fiedler, Bernold Kurths, Jürgen Schöll, Eckehard 2007-01 Book Section PeerReviewed Thul, Ruediger and Falcke, Martin (2007) Building oscillations bottom up: elemental time scales of intracellular calcium dynamics. In: Analysis and control of complex nonlinear processes in physics, chemistry and biology. World Scientific lecture notes in complex systems (5). World Scientific, River Edge, NJ, pp. 293-324. ISBN 9789812705839 http://www.worldscientific.com/doi/abs/10.1142/9789812706911_0011 doi:10.1142/9789812706911_0011 doi:10.1142/9789812706911_0011
spellingShingle Thul, Ruediger
Falcke, Martin
Building oscillations bottom up: elemental time scales of intracellular calcium dynamics
title Building oscillations bottom up: elemental time scales of intracellular calcium dynamics
title_full Building oscillations bottom up: elemental time scales of intracellular calcium dynamics
title_fullStr Building oscillations bottom up: elemental time scales of intracellular calcium dynamics
title_full_unstemmed Building oscillations bottom up: elemental time scales of intracellular calcium dynamics
title_short Building oscillations bottom up: elemental time scales of intracellular calcium dynamics
title_sort building oscillations bottom up: elemental time scales of intracellular calcium dynamics
url https://eprints.nottingham.ac.uk/1764/
https://eprints.nottingham.ac.uk/1764/
https://eprints.nottingham.ac.uk/1764/