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  3. Mechanisms of intrinsic beating variability in cardiac cell cultures and model pacemaker networks

Mechanisms of intrinsic beating variability in cardiac cell cultures and model pacemaker networks

Details
Publisher DOI
10.1529/biophysj.106.091892
PubMed ID
17325022
Abstract
Heart rate variability (HRV) exhibits fluctuations characterized by a power law behavior of its power spectrum. The interpretation of this nonlinear HRV behavior, resulting from interactions between extracardiac regulatory mechanisms, could be clinically useful. However, the involvement of intrinsic variations of pacemaker rate in HRV has scarcely been investigated. We examined beating variability in spontaneously active incubating cultures of neonatal rat ventricular myocytes using microelectrode arrays. In networks of mathematical model pacemaker cells, we evaluated the variability induced by the stochastic gating of transmembrane currents and of calcium release channels and by the dynamic turnover of ion channels. In the cultures, spontaneous activity originated from a mobile focus. Both the beat-to-beat movement of the focus and beat rate variability exhibited a power law behavior. In the model networks, stochastic fluctuations in transmembrane currents and stochastic gating of calcium release channels did not reproduce the spatiotemporal patterns observed in vitro. In contrast, long-term correlations produced by the turnover of ion channels induced variability patterns with a power law behavior similar to those observed experimentally. Therefore, phenomena leading to long-term correlated variations in pacemaker cellular function may, in conjunction with extracardiac regulatory mechanisms, contribute to the nonlinear characteristics of HRV.
Date Issued
2007
Publication Type
Article
Language(s)
en
Author(s)
Ponard, Julien G C
Kondratyev, Aleksandar  
Institut für Physiologie  
Kucera, Jan  orcid-logo
Institut für Physiologie  
Additional Credits
Institut für Physiologie  
Journal
Biophysical journal
Publisher
Biophysical Society
ISSN
0006-3495
ISBN
17325022
Access(Rights)
metadata.only
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