Soft tissue degloving wounds overlying fractures present a technical surgical challenge and have a high rate of recurrence. Despite several current treatment methods, there remains a need for improved therapies to address this complex issue. The purpose of this study was to introduce a novel technique for managing soft tissue degloving wounds in the setting of fractures requiring operative fixation. Eleven consecutive patients with soft tissue degloving wounds overlying operatively managed fractures were treated with our novel technique for “dead space” elimination in the peri-operative period. The technique entails placing Jackson Pratt drain(s) within the degloving wound during operative debridement and placing them to low continuous wall suction postoperatively. This patient series shows that the application of 40 to 60 mm Hg of negative pressure allows for thorough drainage of the hemolymphatic fluid collection and elimination of dead space, allowing the delaminated tissue layers to heal together and preventing recurrence. [ Orthopedics . 202x;4x(x):xx–xx.]
Background:Trisomy 21 or Down syndrome is associated with multiple orthopaedic manifestations. Although cervical instability is the most common spinal condition associated with Down syndrome, the prevalence of scoliosis has been estimated at 4.8% to 8.7%. Very few prior studies have documented the role of spinal fusion in this population, and all have included ≤10 patients.Methods:An institutional review board-approved multicenter retrospective analysis of patients with Down syndrome treated with spinal fusion between January 2009 and December 2019 was performed by cross-referencing Current Procedural Terminology (CPT) and International Classification of Diseases, Ninth and Tenth Revisions (ICD-9 and ICD-10) codes. Patients were followed for ≥2 years, with a mean follow-up of 3.77 years. Clinical and radiographic outcomes were collected, and complications were documented using the Clavien-Dindo-Sink (CDS) classification.Results:A total of 23 patients were included: 96% had ≥1 medical comorbidities, including 16 (70%) with congenital heart disease, of whom 88% had previous cardiac surgery, and 10 (44%) with thyroid disorders. All 23 patients underwent posterior spinal fusion. The mean estimated blood loss was 617 ± 459 mL, the mean length of the surgical procedure was 290 ± 92.7 minutes, and the mean length of hospital stay was 6.03 ± 2.91 days. The major Cobb angle measured 61.7° ± 17.6°, which corrected to 19.4° ± 14.8° (68.6% correction; p < 0.001), with well-maintained correction at 2 years of 22.0° ± 10.3° (64.3% correction; p = 0.158). Thirteen (57%) of 23 patients had a change in curve of >5°. There were no intraoperative complications; however, 12 patients (52%) sustained postoperative complications (e.g., need for reoperation, implant failure, and pulmonary complications), including 6 patients with CDS type 3 or 4 (e.g., wound dehiscence, late superficial abscess, pleural effusion, pseudarthrosis, and readmission for hypoxia). Four patients (17%) required a revision surgical procedure. One patient (4%) required an unplanned intensive care unit admission.Conclusions:Although instrumented spinal fusion can effectively correct spinal deformity in these patients, complications are more frequent than in children with adolescent idiopathic scoliosis, with over half of patients sustaining a complication.Level of Evidence:Prognostic Level III. See Instructions for Authors for a complete description of levels of evidence.
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