Surgical Simulation Education
Conditions
Keywords
surgical simulation, banana peel, OSATS, NON ANIMAL MODELS, Randomised control trial
Brief summary
This study evaluated two low-cost, non-animal biological simulation models for teaching basic surgical skills to undergraduate medical students. Banana peel was used as a model for practicing interrupted skin suturing, and rose stem was used as a model for practicing Modified Kessler tendon repair. Each plant-based model was compared with a commercially available simulation model. The study was designed to determine whether these low-cost biological models could be used for surgical skills training and to assess technical performance, learner experience, and material costs associated with the different simulation models. Participants were randomly assigned to practice using either the plant-based model or the corresponding commercial simulator. The study hypothesis was that the non-animal biological models would provide training outcomes and learner satisfaction comparable to commercial simulation models while requiring substantially lower material costs.
Detailed description
Surgical simulation provides undergraduate medical students with an opportunity to develop basic operative skills in a controlled environment before performing procedures on patients. However, commercially available simulation models may be costly, particularly when repeated practice is required for large groups of students or in resource-limited educational settings. This prospective, parallel-group randomized controlled study was conducted over three months from June to August 2025 in the Department of Burns, Plastic & Maxillofacial Surgery at the All India Institute of Medical Sciences (AIIMS), New Delhi, India. Institutional Ethics Committee approval was obtained before participant recruitment (IEC-AIIMSA3409, dated 27 March 2025), and written informed consent was obtained from all participants. The study evaluated two plant-based, non-animal biological simulation models and compared each with a corresponding commercial simulator. For suturing training, semi-ripe banana peel was prepared to simulate a superficial skin laceration and was compared with a commercially available suture training pad. For tendon repair training, fresh rose stems obtained from discarded garden material were prepared to simulate a transverse tendon injury and were compared with silicone tubing. The models were prepared using standardized methods and dimensions. Participants underwent standardized one-hour training sessions conducted by the same experienced instructor. Each session included an introductory teaching component, demonstration of the procedure, and supervised hands-on practice. Suturing training included needle loading, needle placement, knot tying, and wound-edge approximation using interrupted sutures. Tendon repair training involved alignment of the transected model ends followed by performance of a Modified Kessler core suture using instrument-tied square knots. The same surgical instruments were used across the respective study groups. A total of 45 first- and second-year MBBS students were enrolled. Participants were assigned to the suturing or tendon-repair training arm and were randomly allocated within each arm to either the plant-based biological model or the corresponding commercial simulator. Randomization was performed by drawing numbered lots from a sealed container by a research assistant who was not involved in training or assessment. Technical performance was assessed using procedure-specific assessment checklists developed according to the Objective Structured Assessment of Technical Skills (OSATS) framework. Learner feedback regarding the training experience was collected using an 11-item, 5-point Likert-scale questionnaire. Participants also provided self-reported assessments of their skills before and after training. Direct material costs of the simulation models were recorded for comparison; reusable surgical instruments were common to the groups and were excluded from the material-cost comparison. The study was designed to compare the technical performance, learner experience, and material requirements of plant-based biological simulation models with commercially available simulation models for basic suturing and tendon-repair training. The findings were intended to inform the potential use of accessible, low-cost, non-animal materials in undergraduate surgical skills education, particularly in settings where conventional simulation resources may be limited.
Interventions
Standardized training in interrupted skin suturing using either a semi-ripe banana peel model or a commercially available suture training pad. The suturing procedure included needle loading, needle entry, appropriate bite depth, knot tying, knot security, wound-edge eversion, and appropriate suture spacing.
Standardized training in Modified Kessler tendon repair using either a fresh rose stem model or commercial silicone tubing. The procedure included alignment of the transected model ends, grasp placement, needle entry, core suture placement, knot tying, and assessment of repair integrity.
Sponsors
Study design
Eligibility
Inclusion criteria
* Eligible participants were first- and second-year MBBS undergraduate students at AIIMS New Delhi who voluntarily consented to participate * were available for the full training and assessment schedule
Exclusion criteria
* prior advanced surgical or simulation training * any current disabling upper limb injury or severe tremor * unwillingness to participate.
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Suturing Technical Proficiency - OSATS Score | Immediately after completion of the suturing training session | Technical proficiency in skin suturing was assessed using an 8-item procedure-specific checklist developed according to the Objective Structured Assessment of Technical Skills (OSATS) framework. Each item was scored according to predefined criteria. The total score ranges from 0 to 8, with higher scores indicating better technical performance. |
| Tendon Repair Technical Proficiency - OSATS Score | Immediately after completion of the tendon repair training session | Technical proficiency in tendon repair was assessed using a 9-item procedure-specific checklist developed according to the Objective Structured Assessment of Technical Skills (OSATS) framework. Each item was scored according to predefined criteria. The total score ranges from 0 to 9, with higher scores indicating better technical performance. |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| Learner Feedback Survey Score | Immediately after completion of the training session | Learner experience was assessed using an 11-item, 5-point Likert-scale questionnaire covering training clarity, instructor guidance, model realism, procedural confidence, and overall satisfaction. The total score ranges from 11 to 55, with higher scores indicating more positive learner feedback. |
| Self-Reported Pre- and Post-Training Skill Score | Immediately before and immediately after the training session | Participants self-assessed their perceived surgical skill using a numerical rating scale ranging from 0 to 10. Skill scores were recorded immediately before and immediately after the training session. Higher scores indicate greater self-perceived skill. |
| Direct Material Cost per Simulation Model | Immediately after preparation of the simulation models | The direct material cost required to prepare one simulation model was recorded for each study group. Costs were calculated in Indian Rupees (INR) based on the materials required to prepare each model. Reusable surgical instruments were common to all groups and were excluded from the cost calculation. Lower cost represents lower material expenditure. |
Countries
India