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PMID: 8897964 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

A model of the action potential and underlying membrane currents in a rabbit atrial cell.

The American journal of physiology ·Vol. 271 ·No. 4 Pt 2 ·1996-10-00 ·Pages H1666-96

Lindblad DS, Murphey CR, Clark JW, Giles WR

Abstract

We have developed a mathematical model of the rabbit atrial myocyte and have used it in an examination of the ionic basis of the atrial action potential. Available biophysical data have been incorporated into the model to quantify the specific ultrastructural morphology, intracellular ion buffering, and time- and voltage-dependent currents and transport mechanisms of the rabbit atrial cell. When possible, mathematical expressions describing ionic currents identified in rabbit atrium are based on whole cell voltage-clamp data from enzymatically isolated rabbit atrial myocytes. This membrane model is coupled to equations describing Na+, K+, and Ca2+ homeostasis, including the uptake and release of Ca2+ by the sarcoplasmic reticulum and Ca2+ buffering. The resulting formulation can accurately simulate the whole cell voltage-clamp data on which it is based and provides fits to a family of rabbit atrial cell action potentials obtained at 35 degrees C over a range of stimulus rates (0.2-3.0 Hz). The model is utilized to provide a qualitative prediction of the intracellular Ca2+ concentration transient during the action potential and to illustrate the interactions between membrane currents that underlie repolarization in the rabbit atrial myocyte.

MeSH Terms
Action Potentials Animals Atrial Function Calcium/metabolism Computer Simulation Electrolytes/metabolism Homeostasis Membrane Potentials Models, Cardiovascular Myocardium/cytology,ultrastructure Patch-Clamp Techniques Rabbits Refractory Period, Electrophysiological Sarcolemma/physiology
Chemicals
Electrolytes Calcium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Lindblad D S
Department of Electrical and Computer Engineering, Rice University, Houston 77251-1892, USA.
Murphey C R
Clark J W
Giles W R
Article Info
Journal
The American journal of physiology
Abbr.
Am J Physiol
ISSN
0002-9513
Published
1996-10-00
Pages
H1666-96
Language
English
Region
United States
NLM ID
0370511
Subset
IM
Grants
NLM NIH HHS · T15LM07093 · United States
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