Published on in Vol 6, No 11 (2022): November

Preprints (earlier versions) of this paper are available at https://preprints.jmir.org/preprint/36340, first published .
Measurement of Vital Signs Using Lifelight Remote Photoplethysmography: Results of the VISION-D and VISION-V Observational Studies

Measurement of Vital Signs Using Lifelight Remote Photoplethysmography: Results of the VISION-D and VISION-V Observational Studies

Measurement of Vital Signs Using Lifelight Remote Photoplethysmography: Results of the VISION-D and VISION-V Observational Studies

Journals

  1. Wiffen L, Brown T, Brogaard Maczka A, Kapoor M, Pearce L, Chauhan M, Chauhan A, Saxena M. Measurement of Vital Signs by Lifelight Software in Comparison to Standard of Care Multisite Development (VISION-MD): Protocol for an Observational Study. JMIR Research Protocols 2023;12:e41533 View
  2. Kiddle A, Barham H, Wegerif S, Petronzio C. Dynamic Region of Interest Selection in Remote Photoplethysmography: Proof-of-Concept Study. JMIR Formative Research 2023;7:e44575 View
  3. Boiko A, Martínez Madrid N, Seepold R. Contactless Technologies, Sensors, and Systems for Cardiac and Respiratory Measurement during Sleep: A Systematic Review. Sensors 2023;23(11):5038 View
  4. van Putten L, Bamford K, Veleslavov I, Wegerif S. From video to vital signs: using personal device cameras to measure pulse rate and predict blood pressure using explainable AI. Discover Applied Sciences 2024;6(4) View
  5. Kapoor M, Holman B, Cohen C. Contactless and Calibration-Free Blood Pressure and Pulse Rate Monitor for Screening and Monitoring of Hypertension: Cross-Sectional Validation Study. JMIR Cardio 2024;8:e57241 View
  6. Garanin A, Rogova V, Tolkacheva E, Osadchaya P. Clinical aspects of using remote sensing photoplethysmography: a narrative review. Russian Journal of Preventive Medicine 2024;27(8):101 View