• DocumentCode
    1473282
  • Title

    Geometrical aspects of the interindividual variability of multilead ECG recordings

  • Author

    Hoekema, Rudi ; Uijen, Gérard J H ; Van Oosterom, Adriaan

  • Author_Institution
    Exp. Cardiol., Univ. Hospital Nijmegen, Netherlands
  • Volume
    48
  • Issue
    5
  • fYear
    2001
  • fDate
    5/1/2001 12:00:00 AM
  • Firstpage
    551
  • Lastpage
    559
  • Abstract
    The ECG as measured from healthy subjects shows a considerable interindividual variability. This variability is caused by geometrical as well as by physiological factors. In this study, the relative contribution of the geometrical factors is estimated. In addition a method aimed at correcting for these factors is described. First, a measure (RV) for quantifying the overall variability is presented, and for healthy individuals its value is estimated as 0.52. Next, based on a simulation study using the individual (heart-lung-torso) geometry of 25 subjects, the variability caused by geometrical factors is estimated as 0.40, indicating that in healthy subjects the RV for healthy individuals resulting from electrophysiology is of the order of 0.33. In an evaluation of the correction procedure, applied to realistic, simulated body surface potentials, it is shown that RV caused by geometrical factors can be reduced from 0.40 to 0.06. When applying the correction procedure to measured ECG data no reduction of the RV value could be demonstrated. These results indicate that the involved procedure of the inverse computation of a cardiac equivalent source, at the present time, is of insufficient quality to cash in on the substantial reduction of RV values from 0.52 down to 0.33 that might be obtainable.
  • Keywords
    electrocardiography; inverse problems; medical signal processing; waveform analysis; QRS interval; cardiac equivalent source; correction procedure; geometrical factors; interindividual variability; inverse computation; multilead ECG recordings; pericardial potentials; relative contribution; simulated body surface potentials; thorax properties; waveform analysis; Biomedical measurements; Cardiology; Electrocardiography; Electrodes; Geometry; Heart; Hospitals; Medical diagnostic imaging; Ribs; Solid modeling; Body Surface Potential Mapping; Humans; Models, Cardiovascular; Reproducibility of Results; Signal Processing, Computer-Assisted;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/10.918594
  • Filename
    918594