• DocumentCode
    1256278
  • Title

    Conduction Velocity Restitution of the Human Atrium—An Efficient Measurement Protocol for Clinical Electrophysiological Studies

  • Author

    Weber, Frank M. ; Luik, Armin ; Schilling, Christopher ; Seemann, Gunnar ; Krueger, Martin W. ; Lorenz, Cristian ; Schmitt, Claus ; Dössel, Olaf

  • Author_Institution
    Inst. of Biomed. Eng., Karlsruhe Inst. of Technol. (KIT), Karlsruhe, Germany
  • Volume
    58
  • Issue
    9
  • fYear
    2011
  • Firstpage
    2648
  • Lastpage
    2655
  • Abstract
    Conduction velocity (CV) and CV restitution are important substrate parameters for understanding atrial arrhythmias. The aim of this work is to (i) present a simple but feasible method to measure CV restitution in-vivo using standard circular catheters, and (ii) validate its feasibility with data measured during incremental pacing. From five patients undergoing catheter ablation, we analyzed eight datasets from sinus rhythm and incremental pacing sequences. Every wavefront was measured with a circular catheter and the electrograms were analyzed with a cosine-fit method that calculated the local CV. For each pacing cycle length, the mean local CV was determined. Furthermore, changes in global CV were estimated from the time delay between pacing stimulus and wavefront arrival. Comparing local and global CV between pacing at 500 and 300 ms, we found significant changes in seven of eight pacing sequences. On average, local CV decreased by 20 ± 15% and global CV by 17 ± 13%. The method allows for in-vivo measurements of absolute CV and CV restitution during standard clinical procedures. Such data may provide valuable insights into mechanisms of atrial arrhythmias. This is important both for improving cardiac models and also for clinical applications, such as characterizing arrhythmogenic substrates during sinus rhythm.
  • Keywords
    bioelectric phenomena; biomedical measurement; blood vessels; cardiovascular system; catheters; data analysis; electroencephalography; medical disorders; medical signal processing; atrial arrhythmias; cardiac models; catheter ablation; circular catheters; clinical electrophysiological analysis; cosine-fit method; datasets; in-vivo conduction velocity restitution; incremental pacing sequences; intracardiac electrograms; measurement protocol; sinus rhythm; wavefront; Catheters; Delay effects; Humans; Protocols; Rhythm; Strontium; Substrates; Arrhythmia; atrial fibrillation; conduction velocity; intracardiac electrograms; restitution; Aged; Atrial Fibrillation; Cardiac Pacing, Artificial; Catheter Ablation; Electrocardiography; Heart; Heart Atria; Heart Conduction System; Humans; Middle Aged; Reproducibility of Results; Tachycardia; Wavelet Analysis;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/TBME.2011.2160453
  • Filename
    5928391