SAFER: a simulation-based assessment tool for emergency robotic undocking with multisource validity evidence

Abstract Background Emergency undocking is a high-acuity, low-occurrence event in robotic surgery. Existing robotic curricula do not address this skill, and no validated instrument has been developed to assess performance. We developed the Structured Approach for Fast Emergency Robotic-Undocking (SAFER), a simulation-based assessment tool, and hypothesized it would be reliable, responsive to educational intervention, and able to distinguish between trainee experience levels. We present multisource validity evidence. Methods Using a quasi-experimental design, 58 general surgery residents at a single academic institution completed two simulation assessment scenarios—hemorrhage and hemodynamic instability—at two timepoints 6 months apart. Each scenario was evaluated using a 9-item checklist and a global rating scale (maximum score 20 points), scored independently by two trained faculty raters. Between timepoints, participants received a structured teaching session and self-directed learning materials. Validity evidence was gathered across five domains: content, response process, internal structure, relationships to other variables, and consequences of testing. Psychometric analyses included intraclass correlation coefficients (ICC), Cronbach's α , standard error of measurement (SEM), and minimal detectable change at the 95% confidence level (MDC95). Results Interrater reliability was excellent overall (ICC = 0.95, 95% CI 0.94–0.96) and across both scenarios and timepoints. Internal consistency was acceptable to good (Cronbach's α = 0.72–0.83). The MDC95 was 2.5 points, with 72% of paired learners exceeding this threshold at the second assessment. Mean total score improved by 5.73 points (Cohen's d = 1.38), with largest gains among junior residents. Baseline scores increased significantly with postgraduate year (PGY) level [ F (4,102) = 3.99, p = 0.005], supporting known-groups validity. Conclusions SAFER, a novel assessment tool for robotic emergency undocking, demonstrated strong reliability, acceptable internal consistency, large responsiveness to training, and expected performance patterns across trainee levels. Further multicenter validation and transfer studies are needed before use in higher-stakes assessments, such as credentialing or advancement decisions.

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Publication Details

Journal
Surgical Endoscopy
Published
2026-09-21
DOI
https://doi.org/10.1007/s00464-026-13329-9
Primary Topic
Surgical Simulation and Training
Type
article
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article

SAFER: a simulation-based assessment tool for emergency robotic undocking with multisource validity evidence

Michael M. Awad, Abigail J Hatcher, Blake T Beneville
Surgical Endoscopy
Surgical Simulation and Training
article

SAFER: a simulation-based assessment tool for emergency robotic undocking with multisource validity evidence

Michael M. Awad, Abigail J Hatcher, Blake T Beneville
article en

Abstract

Abstract Background Emergency undocking is a high-acuity, low-occurrence event in robotic surgery. Existing robotic curricula do not address this skill, and no validated instrument has been developed to assess performance. We developed the Structured Approach for Fast Emergency Robotic-Undocking (SAFER), a simulation-based assessment tool, and hypothesized it would be reliable, responsive to educational intervention, and able to distinguish between trainee experience levels. We present multisource validity evidence. Methods Using a quasi-experimental design, 58 general surgery residents at a single academic institution completed two simulation assessment scenarios—hemorrhage and hemodynamic instability—at two timepoints 6 months apart. Each scenario was evaluated using a 9-item checklist and a global rating scale (maximum score 20 points), scored independently by two trained faculty raters. Between timepoints, participants received a structured teaching session and self-directed learning materials. Validity evidence was gathered across five domains: content, response process, internal structure, relationships to other variables, and consequences of testing. Psychometric analyses included intraclass correlation coefficients (ICC), Cronbach's α , standard error of measurement (SEM), and minimal detectable change at the 95% confidence level (MDC95). Results Interrater reliability was excellent overall (ICC = 0.95, 95% CI 0.94–0.96) and across both scenarios and timepoints. Internal consistency was acceptable to good (Cronbach's α = 0.72–0.83). The MDC95 was 2.5 points, with 72% of paired learners exceeding this threshold at the second assessment. Mean total score improved by 5.73 points (Cohen's d = 1.38), with largest gains among junior residents. Baseline scores increased significantly with postgraduate year (PGY) level [ F (4,102) = 3.99, p = 0.005], supporting known-groups validity. Conclusions SAFER, a novel assessment tool for robotic emergency undocking, demonstrated strong reliability, acceptable internal consistency, large responsiveness to training, and expected performance patterns across trainee levels. Further multicenter validation and transfer studies are needed before use in higher-stakes assessments, such as credentialing or advancement decisions.

Surgical Endoscopy
Washington University in St. Louis (US)
Quality Education
Openalex Percentile: Top 9%
Surgical Simulation and Training
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