Induced Membrane Reconstruction of a 6‐cm Ulnar Defect With Concurrent Revision Bone Grafting of Radial Nonunion Following Gustilo–Anderson Type IIIB Open Forearm Fracture: A Case Report
John N. Manfredi, Abdullah B. Chandasir, Mitchell Lomis, Brent Prenger, Humzah Ali, Kyra Urquhart-Foster, Caleb J. Bischoff, Abrar Adil AnsariThe induced membrane technique (IMT) is a two‐stage reconstructive procedure for critical‐sized bone defects. We report a 31‐year‐old male who sustained a Gustilo–Anderson grade IIIB open fracture of the radius and ulna following a high‐energy dirt bike injury, complicated by Serratia marcescens fracture‐related infection and septic nonunion. Intraoperative debridement at Stage 1 revealed a 6‐cm defect of the ulna, which was managed with an antibiotic‐impregnated polymethylmethacrylate (PMMA) spacer. A concomitant radial nonunion, identified on postdebridement CT, was addressed at Stage 2 with concurrent revision open reduction and internal fixation (ORIF) and autogenous femoral bone grafting. Culture‐directed oral antibiotic therapy was administered following Stage 1. Mature bridging callus was noted at 6 months and confirmed at both bones at approximately 22 months postinjury, with infection eradication confirmed at Stage 2. Prior to subsequent elbow procedures, the patient demonstrated a Mayo Elbow Performance Score of 65 (fair), with an elbow arc of motion of 60°–140° and forearm rotation of 70° pronation and 75° supination. This case illustrates the utility of IMT for ulnar reconstruction in the setting of fracture‐related infection, and highlights a forearm‐specific biomechanical consideration: Fixing the ulna at a set length via the IMT spacer construct while shortening the radius for nonunion compression may alter radioulnar variance, a single‐case observation that we hypothesize could have implications for DRUJ and elbow mechanics and warrants further study.