• DocumentCode
    239728
  • Title

    Motion artifacts suppression for remote imaging photoplethysmography

  • Author

    Litong Feng ; Lai-Man Po ; Xuyuan Xu ; Yuming Li

  • Author_Institution
    Dept. of Electron. Eng., City Univ. of Hong Kong, Hong Kong, China
  • fYear
    2014
  • fDate
    20-23 Aug. 2014
  • Firstpage
    18
  • Lastpage
    23
  • Abstract
    Remote imaging photoplethysmography (RIPPG) is able to access human vital signs without physical contact. However most of the conventional RIPPG approaches are susceptive to motions of subjects or camera. Overcoming motion artifacts presents one of the most challenging problems. Focusing on the motion artifacts problem, the effects of motion artifacts on RIPPG signals were analyzed. In order to suppress motion artifacts for RIPPG, region of interest (ROI) is stabilized by using face tracking based on feature points tracking. And adaptive bandpass filter is further used to suppress the residual motion artifacts. With the addition of motion artifacts, the sorting of independent component analysis (ICA) outputs becomes more important, hence reference sine signals are generated to be correlated with ICA output components, and the cardiac pulse wave is automatically picked up from ICA output components, with the largest correlation coefficient. Fourteen subjects were enrolled to test the robustness with large motion artifacts for the proposed RIPPG method. Experimental results show that the proposed method could obtain a much better performance in accessing pulse rates for moving subjects, compared to the state-of-the-art method. The effectiveness of our method in motion artifacts suppression was verified by comparison with a commercial oximeter using Bland-Altman analysis and Pearson´s correlation. With the efficient motion artifact suppression, RIPPG method has good potential in broadening the application of vital signs accesses.
  • Keywords
    bioelectric potentials; biomedical optical imaging; biomedical telemetry; cardiology; independent component analysis; medical image processing; motion compensation; photoplethysmography; remote sensing; Bland-Altman analysis; ICA output components; Pearson correlation; RIPPG signals; adaptive bandpass filter; camera; cardiac pulse wave; face tracking based feature point tracking; human vital signs; independent component analysis; oximeter; region-of-interest; remote imaging photoplethysmography; residual motion artifact suppression; Band-pass filters; Digital signal processing; Face; Monitoring; Noise; Pulse measurements; Tracking; biological sensing and sensors; motion compensation; photoplethysmography; video processing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Digital Signal Processing (DSP), 2014 19th International Conference on
  • Conference_Location
    Hong Kong
  • Type

    conf

  • DOI
    10.1109/ICDSP.2014.6900813
  • Filename
    6900813