• DocumentCode
    1419680
  • Title

    Denoising of the uterine EHG by an undecimated wavelet transform

  • Author

    Carré, Philippe ; Leman, Hélène ; Fernandez, Christine ; Marque, Catherine

  • Author_Institution
    Ircom-SIC Lab., CNRS, France
  • Volume
    45
  • Issue
    9
  • fYear
    1998
  • Firstpage
    1104
  • Lastpage
    1113
  • Abstract
    The authors propose two original methods of denoising of the uterine electrohysterography (EHG) signal by wavelets. This external electrophysiological signal is corrupted by electronic, electromagnetic noises and by the remaining electrocardiogram of the mother. The interfering signals have overlapping spectra. Therefore, a classical filtering is unusable. Wavelets should be a very well-suited denoising tool. The first proposed method uses the algorithm "a trou" with nonsymmetrical filters. The computation is rapid and the results are satisfying compared to the classical denoising techniques. The second algorithm is an improvement of the first method. It uses orthogonal wavelets and the result of the thresholding corresponds to the average of all circulant shifts denoised by a decimated wavelet transform. Results are compared to traditional denoising algorithms by wavelet (orthogonal, maximally decimated). The proposed algorithms are more efficient on simulated signals as well as on uterine EHG.
  • Keywords
    bioelectric potentials; interference (signal); medical signal processing; noise; wavelet transforms; circulant shifts; classical filtering; corrupted signal; denoising tool; electrodiagnostics; electromagnetic noise; electronic electromagnetic noises; external electrophysiological signal; interfering signals; orthogonal wavelets; overlapping spectra; simulated signals; thresholding; undecimated wavelet transform; uterine EHG denoising; uterine electrohysterography signal; Abdomen; Biomedical measurements; Electromagnetic interference; Filtering; Filters; Monitoring; Noise reduction; Pregnancy; Signal processing; Wavelet transforms; Algorithms; Electromyography; Female; Fourier Analysis; Humans; Male; Monitoring, Physiologic; Pregnancy; Signal Processing, Computer-Assisted; Uterine Contraction;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/10.709554
  • Filename
    709554