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Markov models for ion channels: versatility versus identifiability and speed.

Abstract:
Markov models (MMs) represent a generalization of Hodgkin-Huxley models. They provide a versatile structure for modelling single channel data, gating currents, state-dependent drug interaction data, exchanger and pump dynamics, etc. This paper uses examples from cardiac electrophysiology to discuss aspects related to parameter estimation. (i) Parameter unidentifiability (found in 9 out of 13 of the considered models) results in an inability to determine the correct layout of a model, contradicting the idea that model structure and parameters provide insights into underlying molecular processes. (ii) The information content of experimental voltage step clamp data is discussed, and a short but sufficient protocol for parameter estimation is presented. (iii) MMs have been associated with high computational cost (owing to their large number of state variables), presenting an obstacle for multicellular whole organ simulations as well as parameter estimation. It is shown that the stiffness of models increases computation time more than the number of states. (iv) Algorithms and software programs are provided for steady-state analysis, analytical solutions for voltage steps and numerical derivation of parameter identifiability. The results provide a new standard for ion channel modelling to further the automation of model development, the validation process and the predictive power of these models.
Publication status:
Published

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Publisher copy:
10.1098/rsta.2008.0301

Authors


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Institution:
University of Oxford
Division:
MSD
Department:
Physiology Anatomy & Genetics
Role:
Author


Journal:
Philosophical transactions. Series A, Mathematical, physical, and engineering sciences More from this journal
Volume:
367
Issue:
1896
Pages:
2161-2179
Publication date:
2009-06-01
DOI:
EISSN:
1471-2962
ISSN:
1364-503X


Language:
English
Keywords:
Pubs id:
pubs:237146
UUID:
uuid:749edabf-1167-48dd-8519-a8ff3715807a
Local pid:
pubs:237146
Source identifiers:
237146
Deposit date:
2013-11-16

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