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Recovering pulse rate during motion artifact with a multi-imager array for non-contact imaging photoplethysmography.

, , and . SMC, page 1462-1469. IEEE, (2014)

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Effects of frame rate and image resolution on pulse rate measured using multiple camera imaging photoplethysmography., and . Medical Imaging: Biomedical Applications in Molecular, Structural, and Functional Imaging, volume 9417 of SPIE Proceedings, page 94172D. SPIE, (2015)An assessment of non-stationarity in physiological cognitive state assessment using artificial neural networks., , and . EMBC, page 6552-6555. IEEE, (2011)Physiological cognitive state assessment: Applications for designing effective human-machine systems., and . EMBC, page 6538-6541. IEEE, (2011)A survey of remote optical photoplethysmographic imaging methods., , , and . EMBC, page 6398-6404. IEEE, (2015)Recovering pulse rate during motion artifact with a multi-imager array for non-contact imaging photoplethysmography., , and . SMC, page 1462-1469. IEEE, (2014)Day-to-day variability in hybrid, passive brain-computer interfaces: Comparing two studies assessing cognitive workload., , , and . EMBC, page 1584-1590. IEEE, (2016)Fusing Partial Camera Signals for Noncontact Pulse Rate Variability Measurement., , and . IEEE Trans. Biomed. Engineering, 65 (8): 1725-1739 (2018)Measuring pulse rate variability using long-range, non-contact imaging photoplethysmography., , and . EMBC, page 3930-3936. IEEE, (2016)