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Jeffrey Hammond

Publications and source records attributed to Jeffrey Hammond.

5 recordsLinked to original sources

Simulation in critical care and trauma education and training.

PURPOSE OF REVIEW: To review theory and practice of simulation technology in critical care and trauma training. RECENT FINDINGS: Simulators provide a safe and realistic environment in which active learning, enhanced by repetition and feedback, can take place. Simulation and computer-based education address the needs of knowledge and skill acquisition across a continuum of professional development. SUMMARY: Simulation appears poised to revolutionize education, training, and credentialing in critical care, surgery, and anesthesiology. However, advances in computing and technology have outpaced the evaluative and validation studies of simulation-based education.

Computer Simulation↗

Effective use of human simulators in surgical education.

BACKGROUND: We initiated a teaching module utilizing a human simulator midway through 2001-2002 to improve student skills specific to the evaluation of patients in shock during a required clerkship in surgery for fourth-year medical students. We tested the hypothesis that student skills would improve after implementation of this module and identified factors that predicted student performance. MATERIALS AND METHODS: Students (n = 86) chose one of two hospital sites for a clerkship that focuses on the care of acutely ill surgical patients. A case-based lecture focusing on the diagnosis and management of a patient in shock was replaced midway through the academic year by a simulator session with a computerized life-sized mannequin. A standardized clinical final evaluation (OSCE) was used to assess student skills. We evaluated the effect of the simulator session and other factors on student exam performance using univariate and multivariate analysis. RESULTS: The site of the clerkship and the simulator session were significant factors affecting the OSCE score identified by ANOVA, P < 0.05. A stepwise multiple regression analysis testing the effect of simulator module, site, time of year, prior NBME subject exam, and prior OSCE during the third year clerkship identified that the simulator module was the only independent factor that modeled performance on all shock stations, P < 0.01. CONCLUSIONS: In a clerkship that already emphasized faculty facilitated case-based learning, the use of a teaching module employing a human simulator significantly improved test scores. This study supports the efficacy of human simulators to improve student skills related to the management of complex critically ill patients.

Clinical Clerkship↗

Incorporation of a computerized human patient simulator in critical care training: a preliminary report.

BACKGROUND: The intent of the study was to document initial experience with human patient simulation, using a full-scale computerized mannequin, in evaluating cognitive performance among junior surgery residents. METHODS: This was an observational study of eight postgraduate year-2 surgery residents during initial critical care rotation that assessed their responses to three unknown scenarios using a human patient simulator. RESULTS: No resident successfully completed the first scenario. Of note was a reluctance to call for help until the scenario reached a critical stage. Subsequent performance improved in areas previously neglected. Resident acceptance of simulation scenarios as a teaching tool was excellent. CONCLUSION: The human patient simulator is a valuable tool in critical care education, identifying weaknesses both in individual student performance and in program content.

Adult↗