DocumentCode
107846
Title
Remote Detection of Photoplethysmographic Systolic and Diastolic Peaks Using a Digital Camera
Author
McDuff, Daniel ; Gontarek, Sarah ; Picard, Rosalind W.
Author_Institution
Media Lab., Massachusetts Inst. of Technol., Cambridge, MA, USA
Volume
61
Issue
12
fYear
2014
fDate
Dec. 2014
Firstpage
2948
Lastpage
2954
Abstract
We present a new method for measuring photoplethysmogram signals remotely using ambient light and a digital camera that allows for accurate recovery of the waveform morphology (from a distance of 3 m). In particular, we show that the peak-to-peak time between the systolic peak and diastolic peak/inflection can be automatically recovered using the second-order derivative of the remotely measured waveform. We compare measurements from the face with those captured using a contact fingertip sensor and show high agreement in peak and interval timings. Furthermore, we show that results can be significantly improved using orange, green, and cyan color channels compared to the tradition red, green, and blue channel combination. The absolute error in interbeat intervals was 26 ms and the absolute error in mean systolic-diastolic peak-to-peak times was 12 ms. The mean systolic-diastolic peak-to-peak times measured using the contact sensor and the camera were highly correlated, ρ = 0.94 (p <; 0.001). The results were obtained with a camera frame-rate of only 30 Hz. This technology has significant potential for advancing healthcare.
Keywords
biomedical optical imaging; cameras; health care; medical disorders; photoplethysmography; ambient light; camera frame rate; contact fingertip sensor; contact sensor; cyan color channels; digital camera; green color channels; healthcare; interbeat intervals; mean systolic-diastolic peak-peak times; orange color channels; photoplethysmogram signals; photoplethysmographic diastolic peaks; photoplethysmographic systolic peaks; remote detection; remotely measured waveform; second-order derivative; waveform morphology; Biomedical measurement; Digital cameras; Heart rate variability; Morphology; Photoplethysmography; Blood volume pulse; heart rate variability; morphology; remote;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/TBME.2014.2340991
Filename
6863634
Link To Document