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Date of download: 6/9/2016 Copyright © 2016 SPIE. All rights reserved. Experimental setup. Two separate PCs were used to avoid potential losses when streaming.

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Presentation on theme: "Date of download: 6/9/2016 Copyright © 2016 SPIE. All rights reserved. Experimental setup. Two separate PCs were used to avoid potential losses when streaming."— Presentation transcript:

1 Date of download: 6/9/2016 Copyright © 2016 SPIE. All rights reserved. Experimental setup. Two separate PCs were used to avoid potential losses when streaming data from multiple recording devices to a single hard drive. Figure Legend: From: Use of ambient light in remote photoplethysmographic systems: comparison between a high-performance camera and a low-cost webcam J. Biomed. Opt. 2012;17(3):037005-1-037005-10. doi:10.1117/1.JBO.17.3.037005

2 Date of download: 6/9/2016 Copyright © 2016 SPIE. All rights reserved. A representative figure showing an example frame of a recording from (a) the CMOS camera (frame 49, t=1 s), (b) the decomposed RGB channels, and (c) the corresponding PPG (iPPG) signals. A similar approach has been adopted for exhibiting the results of the webcam (frame 29, t=1 s), panels d to f. The signal is from Sub #1 (male, age 27 years) obtained under resting conditions. The area of the image from which the PPG signal was obtained (iPPG and wPPG) is highlighted with a white box in the first frame of each recording [(a) & (d)]. A white arrow and a white dashed box show the back of the webcam in (a). The white arrow indicates the synchronization LED in (d). The axes of the frames show the pixel numbers, where in (a) and (d) the images contain four interlaced Bayer channels, and a single Bayer channel is shown in (b) and (e). Figure Legend: From: Use of ambient light in remote photoplethysmographic systems: comparison between a high-performance camera and a low-cost webcam J. Biomed. Opt. 2012;17(3):037005-1-037005-10. doi:10.1117/1.JBO.17.3.037005

3 Date of download: 6/9/2016 Copyright © 2016 SPIE. All rights reserved. Timing of the experimental protocol. Figure Legend: From: Use of ambient light in remote photoplethysmographic systems: comparison between a high-performance camera and a low-cost webcam J. Biomed. Opt. 2012;17(3):037005-1-037005-10. doi:10.1117/1.JBO.17.3.037005

4 Date of download: 6/9/2016 Copyright © 2016 SPIE. All rights reserved. A representative figure showing (a) contact, CMOS camera (green channel), and webcam PPG (green channel) signals from Fig. 2 and (b) the corresponding TFR results with color bar indicating the absolute power intensity. The iPPGGREEN and wPPGGREEN signals show a high correspondence. Figure Legend: From: Use of ambient light in remote photoplethysmographic systems: comparison between a high-performance camera and a low-cost webcam J. Biomed. Opt. 2012;17(3):037005-1-037005-10. doi:10.1117/1.JBO.17.3.037005

5 Date of download: 6/9/2016 Copyright © 2016 SPIE. All rights reserved. Bland-Altman plots showing (a) the average of the HR measured by the cPPG and iPPG and (b) the average of HR measured by the cPPG and wPPG, plotted against the difference between them for each subject at rest, post-ex1, post-ex2, and after the recovery period. In all cases, the mean difference did not differ significantly from zero. Neither was there a significant association between the mean of the two measurements and their difference. Figure Legend: From: Use of ambient light in remote photoplethysmographic systems: comparison between a high-performance camera and a low-cost webcam J. Biomed. Opt. 2012;17(3):037005-1-037005-10. doi:10.1117/1.JBO.17.3.037005

6 Date of download: 6/9/2016 Copyright © 2016 SPIE. All rights reserved. Box-and-whisker plot showing the overall spectral characteristics of ambient light across all spectrometer measurements in this study. Horizontal lines represent median value, and boxes encompass the two middle quartiles of the range. An even dispersion and positive skewness are consistent across the captured wavelength range. Figure Legend: From: Use of ambient light in remote photoplethysmographic systems: comparison between a high-performance camera and a low-cost webcam J. Biomed. Opt. 2012;17(3):037005-1-037005-10. doi:10.1117/1.JBO.17.3.037005

7 Date of download: 6/9/2016 Copyright © 2016 SPIE. All rights reserved. A representative example of the influence of ambient light intensity on the obtained wPPG signals for (a) the green channel and (b) the red channel. The boxes show data at a magnified time scale (80 to 100 s), from which a more pronounced plethysmographic waveform is shown in the green channels, although the light intensity of the red channel is markedly higher than that of the green. The recordings are from subject #9 (male, age=32 years) under resting conditions. Figure Legend: From: Use of ambient light in remote photoplethysmographic systems: comparison between a high-performance camera and a low-cost webcam J. Biomed. Opt. 2012;17(3):037005-1-037005-10. doi:10.1117/1.JBO.17.3.037005

8 Date of download: 6/9/2016 Copyright © 2016 SPIE. All rights reserved. (a) Extracted webcam pulsatile signals (green channel) for resting conditions and the two levels of exercise and (b) the corresponding TFR results with color bar indicating the absolute power intensity. The return of HR toward resting levels is clearly visible following the second period of exercise (Ex2). The HR peaks at ∼ 2 Hz after the subject finished high-intensity physical exercise and decreases clearly to ∼ 1.5 Hz during the next 100 s, after which the HR remains steady for the rest of the monitoring period. Following the medium-intensity exercise (Ex1), a similar yet weaker recovery pattern is also seen, in that the HR decreased from ∼ 1.3 Hz to the resting rate of 1.2 Hz within 40 s. These representative signals are from subject #1 (male, age=27 years). Figure Legend: From: Use of ambient light in remote photoplethysmographic systems: comparison between a high-performance camera and a low-cost webcam J. Biomed. Opt. 2012;17(3):037005-1-037005-10. doi:10.1117/1.JBO.17.3.037005


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