Published on in Vol 10, No 2 (2022): February

Preprints (earlier versions) of this paper are available at https://preprints.jmir.org/preprint/24916, first published .
Continuous Noninvasive Remote Automated Blood Pressure Monitoring With Novel Wearable Technology: A Preliminary Validation Study

Continuous Noninvasive Remote Automated Blood Pressure Monitoring With Novel Wearable Technology: A Preliminary Validation Study

Continuous Noninvasive Remote Automated Blood Pressure Monitoring With Novel Wearable Technology: A Preliminary Validation Study

Journals

  1. Heimark S, Bøtker-Rasmussen K, Stepanov A, Haga Ø, Gonzalez V, Seeberg T, Fadl Elmula F, Waldum-Grevbo B. Accuracy of non-invasive cuffless blood pressure in the intensive care unit: Promises and challenges. Frontiers in Medicine 2023;10 View
  2. Tolmachev I, Kaverina I, Vrazhnov D, Starikov Y, Starikova E, Korolyuk E, Soldatov A, Buyakov A. Possibilities and limitations of the artificial intelligence-enabled software information devices use for diagnosing and treatment of diseases. Russian Journal of Preventive Medicine 2023;26(4):108 View
  3. Heimark S, Hove C, Stepanov A, Boysen E, Gløersen Ø, Bøtke-Rasmussen K, Gravdal H, Narayanapillai K, Fadl Elmula F, Seeberg T, Larstorp A, Waldum-Grevbo B. Accuracy and User Acceptability of 24-hour Ambulatory Blood Pressure Monitoring by a Prototype Cuffless Multi-Sensor Device Compared to a Conventional Oscillometric Device. Blood Pressure 2023;32(1) View
  4. Şahan S, Güler S. Hipertansiyon Hastalarının Giyilebilir Kan Basıncı Cihazlarına Yönelik Görüşleri. Ordu Üniversitesi Hemşirelik Çalışmaları Dergisi 2024;7(1):20 View
  5. Tanbeer S, Sykes E. MiVitals– xed Reality Interface for Monitoring: A HoloLens based prototype for healthcare practices. Computational and Structural Biotechnology Journal 2024;24:160 View
  6. Hove C, Sæter F, Stepanov A, Bøtker-Rasmussen K, Seeberg T, Westgaard E, Heimark S, Waldum-Grevbo B, Hisdal J, Larstorp A. A prototype photoplethysmography-based cuffless device shows promising results in tracking changes in blood pressure. Frontiers in Medical Technology 2024;6 View
  7. Tandon A, Cobb B, Centra J, Izmailova E, Manyakov N, McClenahan S, Patel S, Sezgin E, Vairavan S, Vrijens B, Bakker J. Human Factors, Human-Centered Design, and Usability of Sensor-Based Digital Health Technologies: Scoping Review. Journal of Medical Internet Research 2024;26:e57628 View
  8. Cheung M, Sabharwal A, Coté G, Veeraraghavan A. Wearable Blood Pressure Monitoring Devices: Understanding Heterogeneity in Design and Evaluation. IEEE Transactions on Biomedical Engineering 2024;71(12):3569 View
  9. Singh J, Ellingson C, Gagarinova M, Thakkar R, Mehta N, Ahmad K, Sultana S, Bhat S, Dehghani P. Wearable Devices for Hemodynamic Assessment in Cardiovascular Disease: A Short Literature Review. Cardiology in Review 2025 View
  10. Flores-Castañeda R, Olaya-Cotera S, Iparraguirre-Villanueva O. Exploring wearable technologies for health monitoring: a systematic review of applications, advantages and disadvantages. Neural Computing and Applications 2025;37(33):27957 View
  11. Hellou E, Jamal T, Zuroff E, Kalhor P, Delgado-Lelievre M, Manzato M, Lerman L, Lerman A, Kachel E, Zoghby Z. Performance of a cuffless photoplethysmography-based device for continuous monitoring of blood pressure after cardiac surgery: a preliminary validation study. Journal of Human Hypertension 2025;39(12):894 View
  12. Fang J, Ji N, Deng M, Du C, Xiang T, Liu Z, Zhang Y, Pan T. Perspectives of Global Standards on Validation of Blood Pressure Measuring Devices. IEEE Transactions on Biomedical Engineering 2026;73(2):542 View