Simulating the effects of serum potassium on the ECG

Computing in Cardiology(2012)

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摘要
The O'Hara et al. ventricular cell model was used to quantify cell and tissue electrical characteristics under altered extracellular serum potassium ([K+]o) levels. The cell model was incorporated into a heterogeneous 1D bidomain virtual strand description where pseudo-ECG was computed. In multiple simulations, the effects of [K+]o on CV and ECG T wave were quantified. Further, heterogeneous inter-cellular coupling was simulated to elicit the augmented action potential dispersion in human ventricles observed experimentally. An increase of [K+]o reduced APD90 and increased cellular alternans propensity. In 1D simulations, CV was reduced due to both increased and reduced [K+]o. ECG T wave amplitude and absolute value of repolarization slope reduced with increasing [K+]o. There is a close correlation between ECG and [K+]o which could be used in non-invasive diagnostic methods.
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关键词
bioelectric potentials,biological tissues,biomembrane transport,electrocardiography,ecg,augmented action potential dispersion,cell electrical characteristics,extracellular serum potassium,heterogeneous 1d bidomain virtual strand description,human ventricles,tissue electrical characteristics,ventricular cell model
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