• DocumentCode
    81089
  • Title

    Automatic Annotation of Seismocardiogram With High-Frequency Precordial Accelerations

  • Author

    Khosrow-khavar, Farzad ; Tavakolian, Kouhyar ; Blaber, Andrew P. ; Zanetti, John M. ; Fazel-Rezai, Reza ; Menon, Carlo

  • Author_Institution
    MENRVA Res. Group, Simon Fraser Univ., Burnaby, BC, Canada
  • Volume
    19
  • Issue
    4
  • fYear
    2015
  • fDate
    Jul-15
  • Firstpage
    1428
  • Lastpage
    1434
  • Abstract
    Seismocardiogram (SCG) is the low-frequency vibrations signal recorded from the chest using accelerometers. Peaks on dorsoventral and sternal SCG correspond to specific cardiac events. Prior research work has shown the potential of extracting such peaks for various types of monitoring and diagnosis applications. However, annotation of these peaks is not a trivial task and complicated in some subjects. In this paper, an automated method is proposed to annotate these peaks. The high-frequency accelerations obtained from the same accelerometer, used to record SCG with, were used to facilitate the annotation of the SCG. Algorithms were developed for detection of isovolumic moment (IM) and aortic valve closure (AC) points of SCG. Four different envelope calculation methods were used: cardiac sound characteristic waveform (CSCW), Shannon, absolute, and Hilbert. The algorithms were evaluated based on a dataset including 18 subjects undergoing lower body negative pressure and were further tested with another dataset, which included 67 subjects. These datasets had been previously manually annotated. The algorithm based on CSCW envelope calculation produced the highest detection accuracy for both IM and AC. The overall CSCW algorithm detection accuracy for the test dataset was 98.7% and 99.1% for the IM and AC points, respectively.
  • Keywords
    accelerometers; electrocardiography; medical signal detection; medical signal processing; AC points; CSCW algorithm detection accuracy; CSCW envelope calculation; IM points; accelerometers; aortic valve closure; cardiac sound characteristic waveform; chest; dorsoventral SCG; high-frequency precordial accelerations; isovolumic moment detection; low-frequency vibration signal recording; patient diagnosis; patient monitoring; seismocardiogram; specific cardiac events; sternal SCG; Acceleration; Accelerometers; Accuracy; Educational institutions; Electrocardiography; Heart rate; Informatics; High-frequency accelerometer (HFACC); Phonocardiogram (PCG),; Seismocardiogram (SCG); phonocardiogram (PCG); seismocardiogram (SCG);
  • fLanguage
    English
  • Journal_Title
    Biomedical and Health Informatics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    2168-2194
  • Type

    jour

  • DOI
    10.1109/JBHI.2014.2360156
  • Filename
    6907933