2013/10/01 by J. D. Fletcher, Alexander P. Wind · 15 citations
Medicine · #Computer science #Geography #Innovations in Medical Education #Medical education #Medical emergency #Medical physics #Medicine #Meteorology #Military medicine #Simulation-Based Education in Healthcare #Surgical Simulation and Training #Training (meteorology)
paper · pdf · doi:10.7205/milmed-d-13-00258
openalex publication_date 2013/10/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/30
This article reviews simulation used for medical training, techniques for assessing simulation-based training, and cost analyses that can be included in such assessments. Simulation in medical training appears to take four general forms: human actors who are taught to simulate illnesses and ailments in standardized ways; virtual patients who are generally presented via computer-controlled, multimedia displays; full-body manikins that simulate patients using electronic sensors, responders, and controls; and part-task anatomical simulations of various body parts and systems. Techniques for assessing costs include benefit-cost analysis, return on investment, and cost-effectiveness analysis. Techniques for assessing the effectiveness of simulation-based medical training include the use of transfer effectiveness ratios and incremental transfer effectiveness ratios to measure transfer of knowledge and skill provided by simulation to the performance of medical procedures. Assessment of costs and simulation effectiveness can be combined with measures of transfer using techniques such as isoperformance analysis to identify ways of minimizing costs without reducing performance effectiveness or maximizing performance without increasing costs. In sum, economic analysis must be considered in training assessments if training budgets are to compete successfully with other requirements for funding.