Objective: Bone allografts and vascularized fibula autografts were combined (the fibula inside the massive allograft) for skeletal reconstruction in a homogeneous group of patients. To verify the biologic behavior of the grafts, we followed the series using conventional radiography and CT analysis.
Materials And Methods: Twenty-four patients with bone tumors had intercalary segments of tibia or femur reconstructed and were followed up for 36-120 months. Sequential radiographs and CT scans were analyzed.
Results: Three types of behavior were observed. In 13 patients, the allograft maintained its architecture without fracture, although a regular enlargement of the inlaid fibula led to progressive integration with the allograft. A dense line on allograft endosteum was the first sign of bone bridges heralding fusion of the two grafts. In eight patients, fracture or nonunion of the allograft occurred, and the autograft reacted with rapid appearance of dense hypertrophy that again induced bridges to the allograft. In three patients, no changes in autograft size and density were followed by fracture with no callus formation. This behavior was interpreted as unsuccessful vascularization of the autograft.
Conclusion: Sequential radiography and CT analysis enabled us to understand the changes in a combined graft offering an original way to revascularize bone allografts.
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http://dx.doi.org/10.2214/ajr.182.4.1820963 | DOI Listing |
JPRAS Open
March 2025
Department of Plastic and Reconstructive Surgery, Keio University School of Medicine, Tokyo, Japan.
A vascularized free fibula flap is often used to reconstruct bone defects. However, bone resorption within the osteotomized segment is often observed. This may be attributed to damage to bone blood flow supplied by nonpenetrating periosteal vessels (NPPVs); however, there are few studies on NPPVs in the fibula.
View Article and Find Full Text PDFMicrosurgery
January 2025
Pediatric Hand Surgery and Microsurgery Unit, Instituto de Investigación Sanitaria HM Hospitales, Barcelona, Spain.
Background: The periosteum is the main organ responsible for bone regeneration. Vascularized Periosteal Grafts (VPG) have demonstrated exceptional efficacy and speed in facilitating bone union among children with challenging bone healing conditions. Despite their promising results, the overall impact of these interventions has yet to be comprehensively evaluated through systematic review.
View Article and Find Full Text PDFGMS Interdiscip Plast Reconstr Surg DGPW
December 2024
University Center for Orthopedics, Trauma and Plastic Surgery, Department of Plastic and Hand Surgery, University Hospital Carl Gustav Carus at the TU Dresden, Germany.
Background: Significant osseous defects or osteonecrosis, precipitated by open fractures, infections, or neoplastic conditions, represent infrequent yet critical medical conditions. The free vascularized fibular graft (FVFG) is a challenging but straightforward, reliable surgical intervention for the reconstruction of defects across various anatomical regions. This study aims to compare, quantify, and demonstrate the FVFG's versatility.
View Article and Find Full Text PDFActa Orthop
January 2025
Department of Orthopedic Surgery, Aarhus University Hospital, Aarhus, Denmark.
Background And Purpose: Vascularized fibular grafting following tumor resection is an essential treatment option in limb salvage surgery. We aimed to evaluate: (I) bone healing, (II) complications and reoperations, (III) limb salvage, and (IV) survival.
Methods: We present a retrospective evaluation of a national cohort comprising 27 patients.
J Hand Microsurg
March 2025
Department of Orthopedics Surgery and Traumatology, Faculty of Medicine, Assiut University, Assiut, Egypt.
Background: Vascularized bone grafts (VBGs) are currently the main surgical option for the restoration of humeral bone defects particularly when defects are larger than 6 cm. Because it offers a strong, rapid blood supply, VBGs easily integrate into the recipient sites and undergo active resorption and remodeling into healthy bone through primary bone healing. Additionally, they support the recipient site's immune system in preventing and reducing infection.
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