Published on in Vol 3, No 1 (2019): Jan-Jun

This is a member publication of Centre for Global eHealth Innovation, Toronto, ON, Canada

Preprints (earlier versions) of this paper are available at https://preprints.jmir.org/preprint/12122, first published .
Use of Free-Living Step Count Monitoring for Heart Failure Functional Classification: Validation Study

Use of Free-Living Step Count Monitoring for Heart Failure Functional Classification: Validation Study

Use of Free-Living Step Count Monitoring for Heart Failure Functional Classification: Validation Study

Journals

  1. Zhao Q, Chen C, Zhang J, Ye Y, Fan X. Effects of self-management interventions on heart failure: Systematic review and meta-analysis of randomized controlled trials. International Journal of Nursing Studies 2020;110:103689 View
  2. Vetrovsky T, Clark C, Bisi M, Siranec M, Linhart A, Tufano J, Duncan M, Belohlavek J. Advances in accelerometry for cardiovascular patients: a systematic review with practical recommendations. ESC Heart Failure 2020;7(5):2021 View
  3. Singhal A, Cowie M. The Role of Wearables in Heart Failure. Current Heart Failure Reports 2020;17(4):125 View
  4. De Cannière H, Corradi F, Smeets C, Schoutteten M, Varon C, Van Hoof C, Van Huffel S, Groenendaal W, Vandervoort P. Wearable Monitoring and Interpretable Machine Learning Can Objectively Track Progression in Patients during Cardiac Rehabilitation. Sensors 2020;20(12):3601 View
  5. Arvanitaki A, Michou E, Kalogeropoulos A, Karvounis H, Giannakoulas G. Mildly symptomatic heart failure with reduced ejection fraction: diagnostic and therapeutic considerations. ESC Heart Failure 2020;7(4):1477 View
  6. Vetrovsky T, Frybova T, Gant I, Semerad M, Cimler R, Bunc V, Siranec M, Miklikova M, Vesely J, Griva M, Precek J, Pelouch R, Parenica J, Belohlavek J. The detrimental effect of COVID‐19 nationwide quarantine on accelerometer‐assessed physical activity of heart failure patients. ESC Heart Failure 2020;7(5):2093 View
  7. Yarahmadi S, Gholami M, Cheraghian T. Establishment of a Monitoring Clinic Based on Wearables for Patients with Heart Failure. Journal of Archives in Military Medicine 2020;8(3) View
  8. Shapiro A, Bradshaw B, Landes S, Kammann P, Bois De Fer B, Lee W, Lange R. A novel digital approach to describe real world outcomes among patients with constipation. npj Digital Medicine 2021;4(1) View
  9. Duncker D, Ding W, Etheridge S, Noseworthy P, Veltmann C, Yao X, Bunch T, Gupta D. Smart Wearables for Cardiac Monitoring—Real-World Use beyond Atrial Fibrillation. Sensors 2021;21(7):2539 View
  10. Zhao Q, Chen C, Zhang J, Ye Y, Fan X. Effects of self-management interventions on heart failure: Systematic review and meta-analysis of randomized controlled trials – Reprint. International Journal of Nursing Studies 2021;116:103909 View
  11. Stamp K, Prasun M, McCoy T, Rathman L. Providers’ assignment of NYHA functional class in patients with heart failure: A vignette study. Heart & Lung 2022;51:87 View
  12. Frodi D, Kolk M, Langford J, Andersen T, Knops R, Tan H, Svendsen J, Tjong F, Diederichsen S. Rationale and design of the SafeHeart study: Development and testing of a mHealth tool for the prediction of arrhythmic events and implantable cardioverter-defibrillator therapy. Cardiovascular Digital Health Journal 2021;2(6):S11 View
  13. Ignacio A, Shah K, Bernier-Latmani J, Köller Y, Coakley G, Moyat M, Hamelin R, Armand F, Wong N, Ramay H, Thomson C, Burkhard R, Wang H, Dufour A, Geuking M, McDonald B, Petrova T, Harris N, McCoy K. Small intestinal resident eosinophils maintain gut homeostasis following microbial colonization. Immunity 2022;55(7):1250 View
  14. Kolk M, Frodi D, Andersen T, Langford J, Diederichsen S, Svendsen J, Tan H, Knops R, Tjong F. Accelerometer-assessed physical behavior and the association with clinical outcomes in implantable cardioverter-defibrillator recipients: A systematic review. Cardiovascular Digital Health Journal 2022;3(1):46 View
  15. Jang Y, Sim J, Yang J, Kwon N. Improving heart rate variability information consistency in Doppler cardiogram using signal reconstruction system with deep learning for Contact-free heartbeat monitoring. Biomedical Signal Processing and Control 2022;76:103691 View
  16. Huhn S, Axt M, Gunga H, Maggioni M, Munga S, Obor D, Sié A, Boudo V, Bunker A, Sauerborn R, Bärnighausen T, Barteit S. The Impact of Wearable Technologies in Health Research: Scoping Review. JMIR mHealth and uHealth 2022;10(1):e34384 View
  17. Frodi D, Manea V, Diederichsen S, Svendsen J, Wac K, Andersen T. Using Consumer-Wearable Activity Trackers for Risk Prediction of Life-Threatening Heart Arrhythmia in Patients with an Implantable Cardioverter-Defibrillator: An Exploratory Observational Study. Journal of Personalized Medicine 2022;12(6):942 View
  18. Wong C, Un K, Zhou M, Cheng Y, Lau Y, Shea P, Lui H, Zuo M, Yin L, Chan E, Wong I, Sin S, Yeung P, Chen H, Wibowo S, Wei T, Lee S, Chow A, Tong R, Hai J, Tam F, Siu C. Daily ambulatory remote monitoring system for drug escalation in chronic heart failure with reduced ejection fraction: pilot phase of DAVID-HF study. European Heart Journal - Digital Health 2022;3(2):284 View
  19. Golbus J, Gosch K, Birmingham M, Butler J, Lingvay I, Lanfear D, Abbate A, Kosiborod M, Damaraju C, Januzzi J, Spertus J, Nallamothu B. Association Between Wearable Device Measured Activity and Patient-Reported Outcomes for Heart Failure. JACC: Heart Failure 2023;11(11):1521 View
  20. Shiwani M, Chico T, Ciravegna F, Mihaylova L. Continuous Monitoring of Health and Mobility Indicators in Patients with Cardiovascular Disease: A Review of Recent Technologies. Sensors 2023;23(12):5752 View
  21. ALONSO W, LEE C. Digital Walking Behaviors: Could They Be the “Gait-way” to Monitoring Heart Failure Progression in Community-based Settings?. Journal of Cardiac Failure 2024 View

Books/Policy Documents

  1. Chowdhury M, Khandaker A, Qiblawey Y, Haque F, Ezeddin M, Rahman T, Ibtehaz N, Islam K. Predicting Heart Failure. View