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. Profilakticheskaya meditsina 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