• DocumentCode
    2490994
  • Title

    Statistical approach for the detection of motion/noise artifacts in Photoplethysmogram

  • Author

    Selvaraj, Nandakumar ; Mendelson, Yitzhak ; Shelley, Kirk H. ; Silverman, David G. ; Chon, Ki H.

  • Author_Institution
    Dept. of Biomed. Eng., Worcester Polytech. Inst., Worcester, MA, USA
  • fYear
    2011
  • fDate
    Aug. 30 2011-Sept. 3 2011
  • Firstpage
    4972
  • Lastpage
    4975
  • Abstract
    Motion and noise artifacts (MNA) have been a serious obstacle in realizing the potential of Photoplethysmogram (PPG) signals for real-time monitoring of vital signs. We present a statistical approach based on the computation of kurtosis and Shannon Entropy (SE) for the accurate detection of MNA in PPG data. The MNA detection algorithm was verified on multi-site PPG data collected from both laboratory and clinical settings. The accuracy of the fusion of kurtosis and SE metrics for the artifact detection was 99.0%, 94.8% and 93.3% in simultaneously recorded ear, finger and forehead PPGs obtained in a clinical setting, respectively. For laboratory PPG data recorded from a finger with contrived artifacts, the accuracy was 88.8%. It was identified that the measurements from the forehead PPG sensor contained the most artifacts followed by finger and ear. The proposed MNA algorithm can be implemented in real-time as the computation time was 0.14 seconds using Matlab®.
  • Keywords
    biomechanics; entropy; mathematics computing; medical signal detection; medical signal processing; photoplethysmography; signal denoising; statistical analysis; MNA detection algorithm; Matlab; PPG signal; Shannon entropy; ear sensor; finger sensor; forehead PPG sensor; kurtosis; motion artifact; noise artifact; photoplethysmogram; real time monitoring; statistical approach; Accuracy; Ear; Fingers; Motion segmentation; Noise; Polynomials; Sensitivity; Motion and noise artifacts; Photoplethysmography; Shannon entropy; kurtosis; Algorithms; Artifacts; Data Interpretation, Statistical; Diagnosis, Computer-Assisted; Humans; Movement; Oxygen; Photoplethysmography; Reproducibility of Results; Sensitivity and Specificity;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Engineering in Medicine and Biology Society, EMBC, 2011 Annual International Conference of the IEEE
  • Conference_Location
    Boston, MA
  • ISSN
    1557-170X
  • Print_ISBN
    978-1-4244-4121-1
  • Electronic_ISBN
    1557-170X
  • Type

    conf

  • DOI
    10.1109/IEMBS.2011.6091232
  • Filename
    6091232