• DocumentCode
    1036694
  • Title

    Computer modeling of ventricular rhythm during atrial fibrillation and ventricular pacing

  • Author

    Jie Lian ; Mussig, D. ; Lang, V.

  • Author_Institution
    Micro Syst. Eng., Lake Oswego, OR
  • Volume
    53
  • Issue
    8
  • fYear
    2006
  • Firstpage
    1512
  • Lastpage
    1520
  • Abstract
    We propose a unified atrial fibrillation (AF)-ventricular pacing (VP) (AF-VP) model to demonstrate the effects of VP on the ventricular rhythm during atrial fibrillation AF. In this model, the AV junction (AVJ) is treated as a lumped structure characterized by refractoriness and automaticity. Bombarded by random AF impulses, the AVJ can also be invaded by the VP-induced retrograde wave. The model includes bidirectional conduction delays in the AVJ and ventricle. Both refractory period and conduction delay of the AVJ are dependent upon its recovery time. The electrotonic modulation by blocked impulses is also considered in the model. Our simulations show that, with proper parameter settings, the present model can account for most principal statistical properties of the RR intervals during AF. We further demonstrate that the AV conduction property and the ventricular rate in AF depend on both AF rate and the degree of electrotonic modulation in the AVJ. Finally, we show that multilevel interactions between AF and VP can generate various patterns of ventricular rhythm that are consistent with previous experimental observations
  • Keywords
    bioelectric phenomena; cardiology; physiological models; statistical analysis; RR intervals; atrial fibrillation; automaticity; bidirectional conduction delays; blocked impulses; electrotonic modulation; refractoriness; statistical properties; ventricular pacing; ventricular rhythm; Atrial fibrillation; Delay effects; Heart rate; Hemodynamics; Lakes; Pacemakers; Predictive models; Resonant frequency; Rhythm; Systems engineering and theory; AV conduction; AV junction; Atrial fibrillation; RR interval; concealed conduction; electrotonic modulation; refractory period; ventricular pacing; Action Potentials; Animals; Atrial Fibrillation; Cardiac Pacing, Artificial; Computer Simulation; Heart Atria; Heart Conduction System; Heart Ventricles; Humans; Models, Cardiovascular; Therapy, Computer-Assisted; Treatment Outcome; Ventricular Fibrillation;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/TBME.2006.876627
  • Filename
    1658145