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Updated: Dec 14, 2025

Author Spotlight: Learning Systematic Bronchoscopy in a Simulation-Base Setting
Published on: June 23, 2023
Simulation-Based Mastery Learning of Bronchoscopy-Guided Percutaneous Dilatational Tracheostomy: Competency
Eduardo Kattan1, Rene De la Fuente, Francisca Putz
1From the Departamento de Medicina Intensiva (K.E., P.F., V.M., R.J., B.S.), División de Anestesiología (D.F.R., C.M.), Centro de Simulación (C.M.), Departamento de Anatomía Normal (I.O.), Departamento de Cirugía Digestiva (I.M., A.P.), Facultad de Medicina, and Departamento de Ciencia de la Computación (M.G.J., S.M., G.V.), Facultad de Ingeniería, Pontificia Universidad Católica de Chile, Santiago; and Departamento de Medicina Interna (P.N.), Facultad de Medicina, Universidad de Concepción, Concepción, Chile; and Institute for Biological and Medical Engineering, Schools of Engineering, Medicine and Biological Sciences (R.J.), Pontificia Universidad Católica de Chile, Santiago, Chile.
Introduction:
Although simulation-based training has demonstrated improvement of procedural skills and clinical outcomes in different procedures, there are no published training protocols for bronchoscopy-guided percutaneous dilatational tracheostomy (BG-PDT). The objective of this study was to assess the acquisition of BG-PDT procedural competency with a simulation-based mastery learning training program, and skills transfer into cadaveric models.
Methods:
Using a prospective interventional design, 8 trainees naive to the procedure were trained in a simulation-based mastery learning BG-PDT program. Students were assessed using a multimodal approach, including blind global rating scale (GRS) scores of video-recorded executions, total procedural time, and hand-motion tracking-derived parameters. The BG-PDT mastery was defined as proficient tracheostomy (successful procedural performance, with less than 3 puncture attempts, and no complications) with GRS scores higher than 21 points (of 25). After mastery was achieved in the simulator, residents performed 1 BG-PDT execution in a cadaveric model.
Results:
Compared with baseline, in the final training session, residents presented a higher procedural proficiency (0% vs. 100%, P < 0.001), with higher GRS scores [8 (6-8) vs. 25 (24-25), P = 0.01] performed in less time [563 (408-600) vs. 246 (214-267), P = 0.01] and with higher movement economy. Procedural skills were further transferred to the cadaveric model.
Conclusions:
Residents successfully acquired BG-PDT procedural skills with a simulation-based mastery learning training program, and skills were effectively transferred to a cadaveric model. This easily replicable program is the first simulation-based BG-PDT training experience reported in the literature, enhancing safe competency acquisition, to further improve patient care.
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