Increasing sensitivity in the measurement of heart rate variability: The method of non-stationary RR time-frequency analysis

  • Authors:
  • D. Melkonian;A. Korner;R. Meares;H. Bahramali

  • Affiliations:
  • Western Clinical School, University of Sydney, 5 Fleet Street, North Parramatta, NSW 2151, Australia;Western Clinical School, University of Sydney, 5 Fleet Street, North Parramatta, NSW 2151, Australia;Western Clinical School, University of Sydney, 5 Fleet Street, North Parramatta, NSW 2151, Australia;Bioemotec, Sydney, NSW 2006, Australia

  • Venue:
  • Computer Methods and Programs in Biomedicine
  • Year:
  • 2012

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Abstract

A novel method of the time-frequency analysis of non-stationary heart rate variability (HRV) is developed which introduces the fragmentary spectrum as a measure that brings together the frequency content, timing and duration of HRV segments. The fragmentary spectrum is calculated by the similar basis function algorithm. This numerical tool of the time to frequency and frequency to time Fourier transformations accepts both uniform and non-uniform sampling intervals, and is applicable to signal segments of arbitrary length. Once the fragmentary spectrum is calculated, the inverse transform recovers the original signal and reveals accuracy of spectral estimates. Numerical experiments show that discontinuities at the boundaries of the succession of inter-beat intervals can cause unacceptable distortions of the spectral estimates. We have developed a measure that we call the ''RR deltagram'' as a form of the HRV data that minimises spectral errors. The analysis of the experimental HRV data from real-life and controlled breathing conditions suggests transient oscillatory components as functionally meaningful elements of highly complex and irregular patterns of HRV.