Evaluation and Further Development of an Artificial Intelligence-based Algorithm for Clinical Decision Support
Start Date
1/1/2023
Completion Date
9/1/2026
Summary
Invasive mechanical ventilation is one of the most important and life-saving therapies in the intensive care unit (ICU). In most severe cases, extracorporeal lung support is initiated when mechanical ventilation is insufficient. However, mechanical ventilation is recognised as potentially harmful, because inappropriate mechanical ventilation settings in ICU patients are associated with organ damage, contributing to disease burden. Studies revealed that mechanical ventilation is often not provided adequately despite clear evidence and guidelines. Variables at the ventilator and extracorporeal lung support device can be set automatically using optimization functions and clinical recommendations, but the handling of experts may still deviate from those settings depending upon the clinical characteristics of individual patients. Artificial intelligence can be used to learn from those deviations as well as the patient's condition in an attempt to improve the combination of settings and accomplish lung support with reduced risk of damage.
Eligibility Criteria
Age Range: 18 years to No maximum
Interventions
Artificial Intelligence-based Decision support
Conditions
Locations
Cleveland Clinic Foundation, Cleveland, USA
Cleveland, Ohio 44195
United States
University Hospital Carl Gustav Carus Dresden
Dresden,
Germany
Institut Fur Angewandte Informatik (Infai) Ev
Leipzig,
Germany
Institut Mihajlo Pupin
Belgrade,
Serbia
Better Care Sl
Sabadell,
Spain
Fundacio Parc Tauli
Sabadell,
Spain
Fundacion Publica Andaluza Progreso Y Salud
Seville,
Spain
Inselspital, Universitätsspital Bern
Bern,
Switzerland