Published on in Vol 24, No 5 (2022): May

Preprints (earlier versions) of this paper are available at https://preprints.jmir.org/preprint/33380, first published .
Use of Robots in Critical Care: Systematic Review

Use of Robots in Critical Care: Systematic Review

Use of Robots in Critical Care: Systematic Review

Authors of this article:

Rachel Teng1 Author Orcid Image ;   Yichen Ding1 Author Orcid Image ;   Kay Choong See2 Author Orcid Image

Journals

  1. Hong G. The Current State and Future of Artificial Intelligence in Health. Journal of Internal Medicine and Emergency Research 2022 View
  2. Schulz-Schaeffer I, Wiggert K, Meister M, Clausnitzer T. The self-perpetuation of the promise of care robots. Work Organisation, Labour & Globalisation 2023;17(1) View
  3. Mahdavi A, Atlasi R, Ebrahimi M, Azimian E, Naemi R. Human resource management (HRM) strategies of medical staff during the COVID-19 pandemic. Heliyon 2023;9(10):e20355 View
  4. See K. Improving environmental sustainability of intensive care units: A mini-review. World Journal of Critical Care Medicine 2023;12(4):217 View
  5. Youssef K, Said S, Al Kork S, Beyrouthy T. Telepresence in the Recent Literature with a Focus on Robotic Platforms, Applications and Challenges. Robotics 2023;12(4):111 View
  6. Ma S, Li L, Lv D, Yang X, Su H, Zhang L, Zhang M, Ma Y, Guo T, Cai H. Establishment and implementation of a clinical application and research database for surgical robots in China. WIREs Data Mining and Knowledge Discovery 2024;14(2) View
  7. Chen A, Chen X, Huang S, Zheng X. A commentary on ‘BF.7 omicron subvariant (BA.5.2.1.7) posing fears of a rise in COVID-19 cases again: a critical appraisal and salient counteracting strategies’. International Journal of Surgery 2023 View
  8. Li Y, Wang M, Wang L, Cao Y, Liu Y, Zhao Y, Yuan R, Yang M, Lu S, Sun Z, Zhou F, Qian Z, Kang H. Advances in the Application of AI Robots in Critical Care: Scoping Review. Journal of Medical Internet Research 2024;26:e54095 View
  9. Ever Leonardo R. Transformative Convergence: Exploring the Nexus of Engineering, Science and Technology in Intensive Care. Archives of Case Reports 2024;8(2):056 View
  10. Babalola G, Gaston J, Trombetta J, Tulk Jesso S. A systematic review of collaborative robots for nurses: where are we now, and where is the evidence?. Frontiers in Robotics and AI 2024;11 View
  11. Pashangpour S, Nejat G. The Future of Intelligent Healthcare: A Systematic Analysis and Discussion on the Integration and Impact of Robots Using Large Language Models for Healthcare. Robotics 2024;13(8):112 View
  12. Rangappa R, Deshpande R, Moola N. Toward Green Intensive Care Unit: Implementing Sustainable Practices. Journal of Acute Care 2024;3(2):77 View
  13. Tulk Jesso S, Greene C, Zhang S, Booth A, DiFabio M, Babalola G, Adegbemijo A, Sarkar S. On the potential for human-centered, cognitively inspired AI to bridge the gap between optimism and reality for autonomous robotics in healthcare: a respectful critique. Proceedings of the International Symposium on Human Factors and Ergonomics in Health Care 2024;13(1):106 View
  14. Naranjo Moposita W, Francisco Pérez J. Care and Robotics as Health Assistive Technologies: An Integrative Review of the Literature.. Salud, Ciencia y Tecnología 2024;4 View
  15. Chacko B. Care Beyond Cure: Humanizing the Intensive Care Unit Journey. Indian Journal of Critical Care Medicine 2024;28(10):901 View
  16. Han Z, Lei Y, Yu J, Lei B, Ye H, Zhang G. Satisfaction analysis of 5G remote ultrasound robot for diagnostics based on a structural equation model. Frontiers in Robotics and AI 2024;11 View
  17. Khanam M, Akther S, Mizan I, Islam F, Chowdhury S, Ahsan N, Barua D, Hasan S. The Potential of Artificial Intelligence in Unveiling Healthcare's Future. Cureus 2024 View

Books/Policy Documents

  1. Sorrentino A, Magnotta A, Fiorini L, Piccinino G, Anselmo A, Laurieri N, Cavallo F. Social Robotics. View