12 research outputs found

    Incidence of Carpal Tunnel Syndrome after Distal Radius Fracture

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    PURPOSE: Carpal tunnel syndrome (CTS) can present following distal radius fracture (DRF) and may progress to require carpal tunnel release (CTR). The primary aim of this study was to determine the incidence of CTS within 6 months of a DRF and the rate of CTR in this population. METHODS: We used the PearlDiver national insurance database to determine the incidence of CTS after DRF. Patients were identified by International Classification of Diseases-10 codes, and treatment modalities for DRF and CTS were determined by respective Current Procedural Terminology codes. Patients with less than 6 months of follow-up, bilateral DRF, or preexisting CTS were excluded. Patient demographic characteristics were recorded. The time from DRF diagnosis to CTS diagnosis and CTR was determined. A multivariable analysis was performed to determine the differences between patients who underwent a CTR compared with those who were treated conservatively. RESULTS: We identified 23,733 patients (6,015 men; 17,718 women) who sustained a DRF. Of these patients, 79.1% were treated nonsurgically and 20.9% underwent surgical fixation. In total, 9.2% (N = 2,179) were diagnosed with CTS in their ipsilateral extremity within 6 months of sustaining the DRF. Of the patients whose DRF was treated nonsurgically, 6.3% (N = 1,198) developed CTS and 2.9% (N = 546) required CTR. Of those patients whose DRF was treated surgically, 19.8% (N = 981) developed CTS and 13.3% (N = 661) required CTR. Of those patients with symptoms severe enough to warrant CTR, 18.5% required a second surgical intervention for the CTR. CONCLUSIONS: Distal radius fractures severe enough to require surgical fixation are associated with a higher incidence of perioperative CTS. Accordingly, careful evaluation for and counseling on CTS during surgical fixation may decrease the chance of a second surgery. We have identified a cohort of patients with DRFs who may benefit from prophylactic CTR. TYPE OF STUDY/LEVEL OF EVIDENCE: Diagnostic IV

    Surgical Games: A Simulation-Based Structured Assessment of Orthopedic Surgery Resident Technical Skill.

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    BACKGROUND: Simulation-based education and objective evaluation of surgical skill have been incorporated into many surgical training programs. We describe the development and implementation of a timed, multitask, station-based Surgical Games to evaluate orthopedic resident surgical skills. METHODS: Participants in the study were postgraduate-year 2 to 5 orthopedic surgery residents from a single institution. Residents completed 4-timed simulated tasks: cadaveric carpal tunnel release (CTR), Sawbones model of total knee arthroplasty (TKA), Sawbones model of ankle fracture open reduction internal fixation (ORIF), and knee arthroscopy simulator (KAS) of removal of loose body. Evaluations were performed using standardized score sheets by attending surgeons. Resident performance was analyzed by postgraduate-year and number of weeks of prior task-related residency training. RESULTS: A total of 32 residents were assessed at the 4 stations. Total scores were significantly different for CTR (p = 0.006), TKA (p = 0.05), and the KAS (p = 0.004) by year of training, but not for the ankle ORIF task. Residents with more task-specific experience performed significantly better on the KAS (p \u3c 0.001), TKA (p = 0.002), and CTR (p = 0.02) tasks but not on the ankle ORIF task (p = 0.1). Overall, residents rated the exercise valuable to their education with mean scores of 3.9 ± 0.54 on a 5-point Likert Scale. CONCLUSIONS: This Surgical Games exercise provided an objective evaluation of surgical skill that correlated with year-in-training and prior experience in skill-specific rotations for the KAS, TKA, and CTR tasks. This surgical skills assessment provided an opportunity for effective structured feedback and identification of areas for improvement
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