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Published on: August 14, 2018
The Effect of Casting Simulation on Maintenance of Fracture Alignment Following Closed Reduction of Pediatric Distal
Remy V Rabinovich1, Benjamin J Shore2, Michael Glotzbecker2
1Department of Orthopaedic Surgery, Lenox Hill Hospital, New York, New York; Department of Orthopaedic Surgery, Boston Children's Hospital, Boston, Massachusetts.
Background:
The purpose of this study was to evaluate the effectiveness of a simulation curriculum on performance of closed reduction (CR) and casting of distal radius and distal both-bone forearm fractures by orthopaedic surgery residents. The secondary aim was to identify if repeated simulation training during the clinical rotation provided additional benefit.
Methods:
Orthopaedic surgery residents performed simulated distal radius fracture (DRF) reduction and cast application near the beginning and end of their 6-month pediatric orthopaedic clinical rotation at a tertiary care children's hospital. A subgroup of trainees were randomly assigned additional simulation training halfway through their rotation. Clinically, 28 residents treated 159 distal radius and/or distal both-bone forearm fractures with CR and casting during the study period. Radiographic evaluations were performed comparing postreduction fracture angulation, displacement, cast index, and loss of reduction (LOR) rates at the beginning of a resident's rotation (presimulation cases) and at the end of the resident's rotation (postsimulation cases). Comparisons were also made between residents who had and did not have additional simulation training exposure during their rotation.
Results:
Overall, postreduction radius angulation, maximal angulation, and cast index were lower in the postsimulation group than in the presimulation group with means 1.8°, 2.6°, and 0.75 vs 4.0°, 4.4° and 0.77, respectively. LOR rate was also lower (14% vs 30%). No significant differences were demonstrated for postreduction ulna angulation as well as for radius, ulna, or maximal displacement between these 2 groups. No significant differences were observed in radiographic parameters, cast indices, or LOR rates between residents who underwent additional mid-rotation training vs those who did not.
Conclusions:
The incorporation of a simulation training curriculum for CR and casting of pediatric distal forearm fractures resulted in statistically significant, however, marginally improved postreduction radiographic parameters and LOR rates among orthopaedic residents. The utility of repeated additional simulation training during the course of a clinical rotation remains unclear in the short term.
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