• DocumentCode
    1195217
  • Title

    Time-varying analysis methods and models for the respiratory and cardiac system coupling in graded exercise

  • Author

    Meste, Olivier ; Khaddoumi, Balkine ; Blain, Gregory ; Bermon, Stephane

  • Author_Institution
    Univ. of Nice, Sophia Antipolis, France
  • Volume
    52
  • Issue
    11
  • fYear
    2005
  • Firstpage
    1921
  • Lastpage
    1930
  • Abstract
    The analysis of heart period series is a difficult task especially under graded exercise conditions. From all the information present in these series, we are the most interested in the coupling between respiratory and cardiac systems, known as respiratory sinus arrythmia. In this paper, we show that precise patterns concerning the respiratory frequency can be extracted from the heart period series. An evolutive model is introduced in order to achieve tracking of the main respiratory-related frequencies and their time-varying amplitudes. Since respiration acts to modulate the sinus rhythm, we relate the frequencies and amplitudes to this modulation by analyzing in detail its nonlinear transformation giving the heart period signal. This analysis is performed assuming stationary conditions but also in the realistic case where the mean heart period, the amplitude, and the frequency of the respiration are time-varying. Since this paper is devoted to the theoretical and complete presentation of the method used in a physiological study published elsewhere, the capabilities of our method will be illustrated in a realistic simulated case.
  • Keywords
    cardiology; evolutionary computation; medical signal processing; physiological models; pneumodynamics; cardiac system; graded exercise; heart period series; respiration; respiratory frequency; respiratory sinus arrythmia; respiratory system; sinus rhythm; time-varying analysis; Amplitude modulation; Data mining; Frequency estimation; Heart rate variability; Performance analysis; Resonance light scattering; Rhythm; Signal analysis; Time series analysis; Time varying systems; Amplitude estimation; exercise conditions; frequency estimation; heart rate variability; poles tracking; Adult; Algorithms; Biological Clocks; Computer Simulation; Diagnosis, Computer-Assisted; Electrocardiography; Exercise Test; Exertion; Feedback; Heart Rate; Humans; Male; Models, Biological; Oscillometry; Pulmonary Ventilation; Respiratory Mechanics; Time Factors;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/TBME.2005.856257
  • Filename
    1519601