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Updated: Jul 16, 2026

Establishment of a Segmental Femoral Critical-size Defect Model in Mice Stabilized by Plate Osteosynthesis
Published on: October 12, 2016
Use of Nonvascularized Structural Bone Allografts for Reconstruction of Massive Post-Traumatic Segmental Femoral Bone
Arpad Solyom1, Mihai Mathe1, Fodor Pal1
1Faculty of Medicine, "George Emil Palade" University of Medicine, Pharmacy, Sciences and Technology, Street Gheorghe Marinescu 38, 540139 Targu Mures, Romania.
Abstract:
Background: Massive post-traumatic segmental bone defects exceeding 5 cm-particularly those resulting from Gustilo-Anderson type IIIB open fractures-present a formidable reconstructive challenge. Autologous bone graft, though biologically superior, is restricted in this context by limited harvest volume and donor-site morbidity. Nonvascularized structural bone allografts provide unrestricted graft volume and immediate mechanical support, but data on their performance in severely compromised post-traumatic environments remain sparse. Methods: This retrospective case series evaluated three patients with massive distal femoral bone loss following high-energy trauma. All were managed with a staged protocol: radical debridement and temporary joint-spanning external fixation at index surgery, followed by definitive reconstruction with a matched nonvascularized structural allograft and retrograde intramedullary nailing once the host bed was aseptic and soft-tissue coverage was established. Results: Limb salvage was achieved in all three patients at a mean follow-up of 18 months. Two patients attained stable biological integration and restored anatomical alignment; one of these progressed to full unassisted weight-bearing by four months postoperatively. The third patient developed symptomatic pseudarthrosis at the distal host-graft junction. The proximally integrated allograft had preserved sufficient femoral bone stock to serve as anchorage for a segmental total knee arthroplasty performed two years after the index reconstruction, ultimately preventing amputation. Conclusions: Nonvascularized structural allografts combined with rigid intramedullary nailing constitute a reproducible limb salvage strategy for massive femoral defects. The allograft functions not only as a vehicle for primary biological union, but as a structural reserve-maintaining femoral axis and bone stock that remains available for secondary arthroplasty reconstruction should union fail.

