ArticleBMC medical education2025
Critical thinking gamification in medical education.
Article in BMC medical education, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 2 papers.
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Who cites it
2 citing papers in PubMed.
- Application and practice of a 3D model-driven clinically oriented, three-stage progressive teaching program in histology and embryology.BMC medical education · 2026Article
- Design and evaluation of a gamified mobile application for teaching cardiac rhythm interpretation to nursing students: a quasi-experimental pre-post study.BMC medical education · 2026Article
Corrections and comments
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Authors and funding
7 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundAdvancements in health and medical education are key to a promising future, but sustaining their exponential pace requires innovative approaches. Gamification offers a powerful tool to foster engagement and enhance the educational journey of medical professionals. By integrating interactive and motivational elements into training, gamification not only boosts knowledge acquisition but also addresses the monotony of traditional methods, encouraging deeper cognitive engagement and reducing errors in practice. Critical thinking is essential for accurate and timely medical decisions, particularly in diagnosing new patients at emergency department. Enhancing these skills can significantly reduce errors and improve patient outcomes, including lowering mortality rates.
methodsThis project introduces a critical thinking game designed to improve the clinical reasoning skills of pediatric students before they enter the field. The game simulates realistic clinical cases, where students draw randomized cards presenting patient profiles, symptoms, and test results, then race against the clock to deliver most relevant diagnoses and actions. The game employs a Case-Based Morning Report format designed to provide hands-on learning experiences. The gameplay involves three cards presented to students, each containing different types of medical information: a patient's description, their symptoms, and their examination results. Based on this data, students must create a diagnostic scenario and discuss it with a licensed pediatrician, who serves as the moderator. The moderator ultimately determines the best scenario based on logical reasoning and medical accuracy. The moderator is always an expert in the domain and a university professor, which already ensures a high level of reliability. In addition, we conducted a single-arm, exploratory pilot study with undergraduate medical students (n = 100) from first to fourth year (Med1-Med4) at the Holy Spirit University of Kaslik (USEK). Participants engaged with the DMRCT platform during scheduled sessions. After gameplay, they completed a structured Likert-scale survey measuring perceived critical thinking improvement, engagement, interface usability, and competitive pressure. Objective gameplay metrics (reaction time, diagnostic accuracy, number of errors) were recorded automatically by the platform's backend. This problem-based learning approach fosters excitement, interactivity, and competitiveness, transforming critical training into an engaging experience.
resultsOur multiplayer educational game is hosted on a web-based platform, enabling students to engage in critical thinking exercises remotely. The participants in each session consist of two opposing teams of medical students, who analyze and discuss the case information before presenting their scenarios. The moderator evaluates the scenarios and awards points based on the accuracy and reasoning presented. Our critical thinking game was tested with 100 medical students (Med1-Med4) through randomized clinical scenarios. Feedback revealed that students viewed the game as a valuable complement to traditional morning rounds, enhancing diagnostic synthesis, problem-solving, and decision-making, particularly for advanced learners. Students reported increased motivation, teamwork, and the ability to practice decision-making in a low-risk environment. Technical evaluations confirmed the platform's reliability, real-time scoring, and analytics integration, with pilot sessions showing active participation, multiple valid diagnoses, and meaningful moderator-student interactions that deepened clinical reasoning skills.
conclusionBy immersing students in dynamic, field-relevant scenarios, our critical thinking game enriches analytical reasoning, problem-solving abilities, and clinical judgment. Transforming education into an interactive, game-based experience cultivates skilled, confident practitioners prepared to meet the complex challenges of real-world pediatric care. The pilot evaluation among medical students revealed high engagement, improved diagnostic accuracy, and a positive perception of clinical reasoning development.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.