Published on in Vol 5, No 1 (2017): January

Assessing the Influence of a Fitbit Physical Activity Monitor on the Exercise Practices of Emergency Medicine Residents: A Pilot Study

Assessing the Influence of a Fitbit Physical Activity Monitor on the Exercise Practices of Emergency Medicine Residents: A Pilot Study

Assessing the Influence of a Fitbit Physical Activity Monitor on the Exercise Practices of Emergency Medicine Residents: A Pilot Study

Journals

  1. Shin G, Jarrahi M, Fei Y, Karami A, Gafinowitz N, Byun A, Lu X. Wearable activity trackers, accuracy, adoption, acceptance and health impact: A systematic literature review. Journal of Biomedical Informatics 2019;93:103153 View
  2. Panda N, Solsky I, Huang E, Lipsitz S, Pradarelli J, Delisle M, Cusack J, Gadd M, Lubitz C, Mullen J, Qadan M, Smith B, Specht M, Stephen A, Tanabe K, Gawande A, Onnela J, Haynes A. Using Smartphones to Capture Novel Recovery Metrics After Cancer Surgery. JAMA Surgery 2020;155(2):123 View
  3. Marek A, Nygaard R, Liang E, Roetker N, DeLaquil M, Gregorich S, Richardson C, Van Camp J. The association between objectively-measured activity, sleep, call responsibilities, and burnout in a resident cohort. BMC Medical Education 2019;19(1) View
  4. Wei S, Kao L. Personalised recovery after general and gynaecologic surgery. The Lancet 2018;392(10141):6 View
  5. Buckingham S, Williams A, Morrissey K, Price L, Harrison J. Mobile health interventions to promote physical activity and reduce sedentary behaviour in the workplace: A systematic review. DIGITAL HEALTH 2019;5:205520761983988 View
  6. Stehman C, Clark R, Purpura A, Kellogg A. Wellness: Combating Burnout and Its Consequences in Emergency Medicine. Western Journal of Emergency Medicine 2020;21(3) View
  7. Henriksen A, Sand A, Deraas T, Grimsgaard S, Hartvigsen G, Hopstock L. Succeeding with prolonged usage of consumer-based activity trackers in clinical studies: a mixed methods approach. BMC Public Health 2020;20(1) View
  8. Buchholz A, Henderson F, Lowe S, Alshareef M, Wolgamott L, Patel S, Spiotta A. Perspectives from a Residency Training Program Following the Implementation of a Wellness Initiative. World Neurosurgery 2018;119:e947 View
  9. Nuss K, Moore K, Nelson T, Li K. Effects of Motivational Interviewing and Wearable Fitness Trackers on Motivation and Physical Activity: A Systematic Review. American Journal of Health Promotion 2021;35(2):226 View
  10. Brakenridge C, Healy G, Winkler E, Fjeldsoe B. Usage, Acceptability, and Effectiveness of an Activity Tracker in a Randomized Trial of a Workplace Sitting Intervention: Mixed-Methods Evaluation. Interactive Journal of Medical Research 2018;7(1):e5 View
  11. Wilde L, Ward G, Sewell L, Müller A, Wark P. Apps and wearables for monitoring physical activity and sedentary behaviour: A qualitative systematic review protocol on barriers and facilitators. DIGITAL HEALTH 2018;4:205520761877645 View
  12. Jack nd R, Lintner D, Harris J, McCulloch P. Omegawave: an emerging technology and application in professional baseball pitchers. The Journal of Sports Medicine and Physical Fitness 2019;59(7) View
  13. Wong-Parodi G, Dias M, Taylor M. Effect of Using an Indoor Air Quality Sensor on Perceptions of and Behaviors Toward Air Pollution (Pittsburgh Empowerment Library Study): Online Survey and Interviews. JMIR mHealth and uHealth 2018;6(3):e48 View
  14. Buckingham S, Morrissey K, Williams A, Price L, Harrison J. The Physical Activity Wearables in the Police Force (PAW-Force) study: acceptability and impact. BMC Public Health 2020;20(1) View
  15. Holtzclaw L, Arlinghaus K, Johnston C. The Health of Health Care Professionals. American Journal of Lifestyle Medicine 2021;15(2):130 View
  16. Kwon S, Burns R, Kim Y, Bai Y, Byun W. Inter-Device Agreement between Fitbit Flex 1 and 2 for Assessing Sedentary Behavior and Physical Activity. International Journal of Environmental Research and Public Health 2021;18(5):2716 View
  17. de Looff P, Nijman H, Didden R, Noordzij M. Usability and Acceptance of Wearable Biosensors in Forensic Psychiatry: Cross-sectional Questionnaire Study. JMIR Formative Research 2021;5(5):e18096 View
  18. St Fleur R, St George S, Leite R, Kobayashi M, Agosto Y, Jake-Schoffman D. Use of Fitbit Devices in Physical Activity Intervention Studies Across the Life Course: Narrative Review. JMIR mHealth and uHealth 2021;9(5):e23411 View
  19. Kapoor A, Enayati M, Chaudhry A, Farahani N, Arunachalam S, Nestler D, Pasupathy K. Estimating Physical Work-Load on ED Clinicians and Staff Using Real-Time Location Systems. IEEE Journal of Radio Frequency Identification 2021;5(3):331 View
  20. Maiti A, Ye A, Schmidt M, Pedersen S. A Privacy-Preserving Desk Sensor for Monitoring Healthy Movement Breaks in Smart Office Environments with the Internet of Things. Sensors 2023;23(4):2229 View
  21. Niotis K, Saif N, Simonetto M, Wu X, Yan P, Lakis J, Ariza I, Buckholz A, Sharma N, Fink M, Isaacson R. Feasibility of a wearable biosensor device to characterize exercise and sleep in neurology residents. Expert Review of Medical Devices 2021;18(11):1123 View
  22. Nuss K, Moore K, Marchant T, Courtney J, Edwards K, Sharp J, Nelson T, Li K. The combined effect of motivational interviewing and wearable fitness trackers on motivation and physical activity in inactive adults: A randomized controlled trial. Journal of Sports Sciences 2023;41(1):45 View
  23. Lara D, Alaniz-Cantú E, Siddalingaiaha S, Oliveira I, Chávez-Iñiguez A, DeJesus E, Fuller D, Marquez D, Vásquez E, Li D, McIntosh S, Ossip D, Cupertino A, Cartujano-Barrera F. Actívatexto: Feasibility and Acceptability of a Mobile Intervention That Promotes Smoking Cessation and Physical Activity among Latinos. Cancer Research Communications 2024;4(4):1016 View