DocumentCode :
2318024
Title :
A novel mathematical model of the electrical action potential in a canine Purkinje fiber cell
Author :
Stewart, P. ; Aslanidi, Ov ; Zhang, H.
Author_Institution :
Univ. of Manchester, Manchester
fYear :
2007
fDate :
Sept. 30 2007-Oct. 3 2007
Firstpage :
363
Lastpage :
366
Abstract :
Purkinje fiber (PF) cells exhibit action potential (AP) morphology and duration markedly different to those of ventricle myocytes. In order to study heterogeneity at the Purkinje-ventricular junction (PVJ), we construct a new AP model for the canine PF cell based on detailed experimental data of ion channel characteristics obtained by voltage clamp techniques. Single-cell PF model is incorporated into a 1D transmural strand model, which is used to simulate the AP conduction through the PVJ under physiological and short QT syndrome (SQTS) conditions. Simulations produced the APD dispersion patterns and pseudo-ECGs consistent with experimental data under physiological conditions. Incorporating changes to the activation kinetics and time constants of the IKs channel associated with the KCNQ1 gene mutation resulted in the shortened QT interval characteristic of SQTS.
Keywords :
bioelectric phenomena; cellular transport; electrocardiography; 1D transmural strand model; APD dispersion pattern; KCNQ1 gene mutation; Purkinje-ventricular junction; action potential duration; action potential morphology; canine Purkinje fiber cell; electrical action potential mathematical model; ion channel characteristics; pseudo-ECG; short QT syndrome; shortened QT interval characteristic; single cell PF model; ventricle myocytes; voltage clamp techniques; Biomembranes; Clamps; Electric potential; Genetic mutations; Indium tin oxide; Mathematical model; Morphology; Steady-state; Voice mail; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computers in Cardiology, 2007
Conference_Location :
Durham, NC
ISSN :
0276-6547
Print_ISBN :
978-1-4244-2533-4
Electronic_ISBN :
0276-6547
Type :
conf
DOI :
10.1109/CIC.2007.4745497
Filename :
4745497
Link To Document :
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