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February 14, 2026Journal of Medical Education and Curricular Development0 citationsOpen Access

Feasibility and Effectiveness of a Simulation-Based Flipped Classroom for Teaching Surgical Suturing Skills in a Low-Resource Setting

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KMKirya MusaMiddle East InstituteJNJosephine NamugenyiSoroti HospitalCMCharity MutesiMinistry of Health

Key Points

  • This study aims to evaluate the feasibility and effectiveness of a simulation-based flipped classroom model for teaching surgical suturing skills.
  • Conducted a quasi-experimental study with 55 third-year medical students.
  • Implemented a flipped learning module with pre-class materials and in-class simulations.
  • Measured outcomes using multiple-choice tests and Objective Structured Assessment of Technical Skills (OSATS) scores.
  • Post-test knowledge scores improved significantly with a mean gain of 39.9 and normalization gain of 70%.
  • 49% of students rated as competent and 33% as excellent in OSATS immediately after training.
  • At 3-month follow-up, knowledge retention remained high at 88%, although statistically significant decline was noted.
  • OSATS performance scores improved by 3 points at 3 months, indicating procedural consolidation.

Abstract

Background Surgical skills training in low-resource settings, such as Uganda, often relies on traditional didactic methods with limited hands-on experience, resulting in competence gaps among graduates. The flipped classroom model, a student-centered approach where foundational content is learned outside the classroom, and in-class time is used for active practice, offers a promising alternative, particularly for skill-based instruction. This study explored the feasibility and effectiveness of a simulation-based flipped classroom in teaching surgical suturing skills to third-year medical students at Soroti University. Methods This was a quasi-experimental study in which 55 third-year students participated in a flipped learning module that incorporated pre-class materials (videos, readings, and suturing kits) and in-class simulations using porcine skin. Outcomes were measured through pre-, post-, and 3-month follow-up multiple-choice tests for knowledge, as well as Objective Structured Assessment of Technical Skills (OSATS) scores for skill performance. Results Post-test knowledge scores showed a marked improvement compared to pre-test scores (mean gain = 39.9, P < 0.0001), with a normalization gain of 70%. In the OSATS observation checklist, most students were rated as competent (49%) or excellent (33%) immediately after training. At 3 months, knowledge retention was 88% despite a statistically significant decline ( P < 0.0001). Interestingly, OSATS performance scores improved at 3-month follow-up (+3 points, P = 0.0011), suggesting procedural consolidation over time. Conclusion The flipped simulation model appears feasible and may be effective in enhancing early surgical skill, and knowledge acquisition and retention among medical students in low-resource settings. It fosters experiential learning and improves both cognitive and psychomotor competence. These findings support the potential for expansion to other skills and subsequent integration of this approach into undergraduate surgical training curricula in LMICs. Clinical trial number Not applicable.

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Cite This Study

Musa et al. (2026) studied this question.

synapsesocial.com/papers/699011172ccff479cfe57836https://doi.org/10.1177/23821205261424382
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