RESUMEN
BACKGROUND: Extracorporeal membrane oxygenation (ECMO) is effective in a selected critically ill patient population with promising results in refractory hypoxemia related to the novel coronavirus disease (COVID-19). However, it requires specialized clinicians and resources in advanced technology. Moreover, the COVID-19 remains an ongoing global emergency, and there is no evidence-based practice in preparedness. This article proposes an innovative and optimized nursing care protocol, the Standard Operating Procedure (SOP), that regulates safety and efficiency in using personal protective equipment (PPE) during ECMO-relevant procedures while providing ECMO therapy for patients with COVID-19. METHODS: After performing a narrative literature search, we developed a high-fidelity translational simulation scenario. It included practicing appropriate donning and doffing PPE during work organization, ECMO-related procedures, and routine daily nursing care and management of ECMO over nine hours. In addition, we held supplementary constructive debrief meetings to consult international expert in the field. RESULTS: A proposal for nursing standardized operating procedures was created, divided into categories. They included work organization, workload references, competences, infrastructural conditions, cannulation equipment, daily routine nursing care, and procedures during ECMO. CONCLUSIONS: High-fidelity medical simulation can play an important role in staff training, improvement in previously gained proficiency, and development of optimal SOP for nursing care and management during ECMO in patients with COVID-19. Optimal SOPs may further guide multidisciplinary teams, including intensive care units and interventional departments.
RESUMEN
Introduction: Despite increasing implementation of sophisticated and logistically challenging techniques to support patients in life-threatening conditions in the last years, there were no devoted education centres, especially in coronavirus pandemic. Aim: To assess the value of gaining evidence-based knowledge and improving the skills of physicians by means of simulation techniques in the safe use of extracorporeal technologies to support patients in the life-threatening conditions. Material and methods: In 2019, the National Education Centre for Artificial Life Support and Patient Safety and the frame program of the course of "Artificial Life Support with ECMO". was created. In years 2019-2023, we managed to organise 34 such courses for 405 physicians, which were additionally endorsed by ELSO (Extracorporeal Life Support Organisation). The physicians' cognitive, behavioural, and technical skills were evaluated before and after the courses. Results: The participants' gender was well balanced (54% men and 46% women). Most of them (mainly at the age between 31-40 years) presented more than 5 years of clinical experience, predominantly in anaesthesiology and intensive care (63%). Of note, 54% of them had no experience with ECMO application. In all detailed aspects of cognitive, behavioural, and technical assessment and knowledge scores, significant improvement was observed after the course. Conclusions: The development of a simulation-based education centre was found to be an invaluable achievement that enabled not only successful standardised training and testing of novel or previously accepted procedures, but also the upgrading of technical skills, even in the challenging COVID-19 pandemic period.
RESUMEN
BACKGROUND: Successful implementation of medical technologies applied in life-threatening conditions, including extracorporeal membrane oxygenation (ECMO) requires appropriate preparation and training of medical personnel. The pandemic has accelerated the creation of new ECMO centers and has highlighted continuous training in adapting to new pandemic standards. To reach high standards of patients' care, we created the first of its kind, National Education Centre for Artificial Life Support (NEC-ALS) in 40 million inhabitants' country in the Central and Eastern Europe (CEE). The role of the Center is to test and promote the novel or commonly used procedures as well as to develop staff skills on management of patients needing ECMO. METHOD: In 2020, nine approved and endorsed by ELSO courses of "Artificial Life Support with ECMO" were organized. Physicians participated in the three-day high-fidelity simulation-based training that was adapted to abide by the social distancing norms of the COVID-19 pandemic. Knowledge as well as crucial cognitive, behavioral and technical aspects (on a 5-point Likert scale) of management on ECMO were assessed before and after course completion. Moreover, the results of training in mechanical chest compression were also evaluated. RESULTS: There were 115 participants (60% men) predominantly in the age of 30-40 years. Majority of them (63%) were anesthesiologists or intensivists with more than 5-year clinical experience, but 54% had no previous ECMO experience. There was significant improvement after the course in all cognitive, behavioral, and technical self-assessments. Among aspects of management with ECMO that all increased significantly following the course, the most pronounced was related to the technical one (from approximately 1.0 to more 4.0 points). Knowledge scores significantly increased post-course from 11.4 ± SD to 13 ± SD (out of 15 points). The quality of manual chest compression relatively poor before course improved significantly after training. CONCLUSIONS: Our course confirmed that simulation as an educational approach is invaluable not only in training and testing of novel or commonly used procedures, skills upgrading, but also in practicing very rare cases. The implementation of the education program during COVID-19 pandemic may be helpful in founding specialized Advanced Life Support centers and teams including mobile ones. The dedicated R&D Innovation Ecosystem established in the "ECMO for Greater Poland" program, with developed National Education Center can play a crucial role in the knowledge and know-how transfer but future research is needed.