Cargando…

Mathematical analysis of complex cellular activity

This book contains two review articles on mathematical physiology that deal with closely related topics but were written and can be read independently. The first article reviews the basic theory of calcium oscillations (common to almost all cell types), including spatio-temporal behaviors such as wa...

Descripción completa

Detalles Bibliográficos
Autores principales: Bertram, Richard, Tabak, Joel, Teka, Wondimu, Vo, Theodore, Wechselberger, Martin, Kirk, Vivien, Sneyd, James
Lenguaje:eng
Publicado: Springer 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-319-18114-1
http://cds.cern.ch/record/2112933
_version_ 1780948985108758528
author Bertram, Richard
Tabak, Joel
Teka, Wondimu
Vo, Theodore
Wechselberger, Martin
Kirk, Vivien
Sneyd, James
author_facet Bertram, Richard
Tabak, Joel
Teka, Wondimu
Vo, Theodore
Wechselberger, Martin
Kirk, Vivien
Sneyd, James
author_sort Bertram, Richard
collection CERN
description This book contains two review articles on mathematical physiology that deal with closely related topics but were written and can be read independently. The first article reviews the basic theory of calcium oscillations (common to almost all cell types), including spatio-temporal behaviors such as waves. The second article uses, and expands on, much of this basic theory to show how the interaction of cytosolic calcium oscillators with membrane ion channels can result in highly complex patterns of electrical spiking. Through these examples one can see clearly how multiple oscillatory processes interact within a cell, and how mathematical methods can be used to understand such interactions better. The two reviews provide excellent examples of how mathematics and physiology can learn from each other, and work jointly towards a better understanding of complex cellular processes. Review 1: Richard Bertram, Joel Tabak, Wondimu Teka, Theodore Vo, Martin Wechselberger: Geometric Singular Perturbation Analysis of Bursting Oscillations in Pituitary Cells Review 2: Vivien Kirk, James Sneyd: The Nonlinear Dynamics of Calcium.
id cern-2112933
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
publisher Springer
record_format invenio
spelling cern-21129332021-04-21T20:00:28Zdoi:10.1007/978-3-319-18114-1http://cds.cern.ch/record/2112933engBertram, RichardTabak, JoelTeka, WondimuVo, TheodoreWechselberger, MartinKirk, VivienSneyd, JamesMathematical analysis of complex cellular activityMathematical Physics and MathematicsThis book contains two review articles on mathematical physiology that deal with closely related topics but were written and can be read independently. The first article reviews the basic theory of calcium oscillations (common to almost all cell types), including spatio-temporal behaviors such as waves. The second article uses, and expands on, much of this basic theory to show how the interaction of cytosolic calcium oscillators with membrane ion channels can result in highly complex patterns of electrical spiking. Through these examples one can see clearly how multiple oscillatory processes interact within a cell, and how mathematical methods can be used to understand such interactions better. The two reviews provide excellent examples of how mathematics and physiology can learn from each other, and work jointly towards a better understanding of complex cellular processes. Review 1: Richard Bertram, Joel Tabak, Wondimu Teka, Theodore Vo, Martin Wechselberger: Geometric Singular Perturbation Analysis of Bursting Oscillations in Pituitary Cells Review 2: Vivien Kirk, James Sneyd: The Nonlinear Dynamics of Calcium.Springeroai:cds.cern.ch:21129332015
spellingShingle Mathematical Physics and Mathematics
Bertram, Richard
Tabak, Joel
Teka, Wondimu
Vo, Theodore
Wechselberger, Martin
Kirk, Vivien
Sneyd, James
Mathematical analysis of complex cellular activity
title Mathematical analysis of complex cellular activity
title_full Mathematical analysis of complex cellular activity
title_fullStr Mathematical analysis of complex cellular activity
title_full_unstemmed Mathematical analysis of complex cellular activity
title_short Mathematical analysis of complex cellular activity
title_sort mathematical analysis of complex cellular activity
topic Mathematical Physics and Mathematics
url https://dx.doi.org/10.1007/978-3-319-18114-1
http://cds.cern.ch/record/2112933
work_keys_str_mv AT bertramrichard mathematicalanalysisofcomplexcellularactivity
AT tabakjoel mathematicalanalysisofcomplexcellularactivity
AT tekawondimu mathematicalanalysisofcomplexcellularactivity
AT votheodore mathematicalanalysisofcomplexcellularactivity
AT wechselbergermartin mathematicalanalysisofcomplexcellularactivity
AT kirkvivien mathematicalanalysisofcomplexcellularactivity
AT sneydjames mathematicalanalysisofcomplexcellularactivity