Published on in Vol 24, No 3 (2022): March

Preprints (earlier versions) of this paper are available at https://preprints.jmir.org/preprint/25906, first published .
The Effectiveness of Physical Activity-Promoting Web- and Mobile-Based Distance Weight Loss Interventions on Body Composition in Rehabilitation Settings: Systematic Review, Meta-analysis, and Meta-Regression Analysis

The Effectiveness of Physical Activity-Promoting Web- and Mobile-Based Distance Weight Loss Interventions on Body Composition in Rehabilitation Settings: Systematic Review, Meta-analysis, and Meta-Regression Analysis

The Effectiveness of Physical Activity-Promoting Web- and Mobile-Based Distance Weight Loss Interventions on Body Composition in Rehabilitation Settings: Systematic Review, Meta-analysis, and Meta-Regression Analysis

Journals

  1. Lahtio H, Heinonen A, Paajanen T, Sjögren T. The Added Value of Remote Technology in Cardiac Rehabilitation on Physical Function, Anthropometrics, and Quality of Life: Cluster Randomized Controlled Trial. Journal of Medical Internet Research 2023;25:e42455 View
  2. Noukpo S, Triccas L, Bonnechère B, Adoukonou T, Feys P, Kossi O. Physical Activity Level, Barriers, and Facilitators for Exercise Engagement for Chronic Community-Dwelling Stroke Survivors in Low-Income Settings: A Cross-Sectional Study in Benin. International Journal of Environmental Research and Public Health 2023;20(3):1784 View
  3. Sinkkonen E, Korpi H, Sjögren T. The added value of remote technology and the background factors explaining the changes in biopsychosocial functioning in cardiac rehabilitation: cluster randomised controlled trial. European Journal of Physiotherapy 2024;26(4):188 View
  4. Hellstén T, Arokoski J, Sjögren T, Jäppinen A, Kettunen J. Remote physiotherapy in Finland—suitability, usability and factors affecting its use. European Journal of Physiotherapy 2023;25(6):378 View
  5. Kupila S, Joki A, Suojanen L, Pietiläinen K. The Effectiveness of eHealth Interventions for Weight Loss and Weight Loss Maintenance in Adults with Overweight or Obesity: A Systematic Review of Systematic Reviews. Current Obesity Reports 2023;12(3):371 View
  6. Haworth L, Danes-Daetz C, Stainton P, Birdsall D, Chohan A. Promoting physical activity for health benefits via a 10-week mobile-application-based personal training programme. International Journal of Health Promotion and Education 2024:1 View
  7. Fichtner U, Tinsel I, Sehlbrede M, Maiwald P, Bischoff M, Metzner G, Schlett C, Brame J, Kohl J, König D, Bredenkamp R, Wurst R, Farin-Glattacker E. Effects of a digital intervention on physical activity in adults: A randomized controlled trial in a large-scale sample. Internet Interventions 2024;37:100762 View
  8. Doherty C, Lambe R, O’Grady B, O’Reilly-Morgan D, Smyth B, Lawlor A, Hurley N, Tragos E. An Evaluation of the Effect of App-Based Exercise Prescription Using Reinforcement Learning on Satisfaction and Exercise Intensity: Randomized Crossover Trial. JMIR mHealth and uHealth 2024;12:e49443 View
  9. Hagiwara Y, Adachi T, Kanai M, Shimizu K, Ishida S, Miki T. Interactive Effects of Weight Recording Frequency and the Volume of Chat Communication With Health Care Professionals on Weight Loss in mHealth Interventions for Noncommunicable Diseases: Retrospective Observational Study. Interactive Journal of Medical Research 2025;14:e65863 View
  10. Motevalli M, Drenowatz C, Tanous D, Ruedl G, Kirschner W, Schauer M, Rosemann T, Wirnitzer K. Guideline-Based Digital Exercise Interventions for Reducing Body Weight and Fat and Promoting Physical Activity in Adults With Overweight and Obesity: Systematic Review and Meta-Analysis. Interactive Journal of Medical Research 2025;14:e73656 View
  11. Adachi T, Miki T, Shimizu K, Kanai M, Hagiwara Y. Trajectories of Physical Activity During a 6‐Month Mobile App‐Based Lifestyle Modification Intervention in Physically Inactive Adults With Cardiovascular Risk Factors. Scandinavian Journal of Medicine & Science in Sports 2025;35(8) View