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Reconstruction of long bone defects with a vascularized fibular graft after tumor resection in children and adolescents: 13 cases with 50-month follow-up - 27/03/08

Doi : rce-06-2007-93-6-0035-1040-101019-200520001 

J.-M. Laffosse [1],

F. Accadbled [1],

A. Abid [1],

J. Kany [1],

P. Darodes [1],

J. Sales de Gauzy [1]

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Purpose of the study

The vascularized fibular graft is a widely used technique for the reconstruction of long bone defects after tumor resection. Complications are not uncommon despite good vascular supply. We report our experience with long bone reconstructions in children and adolescents after resection of primary malignant bone tumors.

Material and methods

This retrospective analysis included thirteen patients aged 4-17 years (mean age, 12 years). Preoperatively, the pathological diagnosis was Ewing tumor (n = 7), osteogenic sarcoma (n = 5), and neuroepithelioma (n = 1). All patients except one were given chemotherapy preoperatively and postoperatively and four received adjuvant radiotherapy. Tumor resection created a gap (n = 8) or involved resection-arthrodesis (n = 5, three knees, one ankle, one elbow). All reconstructions used a vascularized fibular flap with a complementary corticocancellous autograft for seven.

Results

Complete tumor resection was achieved in all cases. Mean follow-up was 50 months (range, 12-144 months). There were no cases of local recurrence. Three patients presented lung metastasis, two of whom died. Eleven of the 12 patients who underwent tumor resection involving the lower limb were able to walk with full weightbearing at 13.9 months (range, 841 months), half of them without any supportive device. The MSTS score was 21/30 (range, 7-29). Both ends healed for 11 of 13 grafts. Outcome was good in four cases at 7.7 months (range,  6-11), fair in seven (with one to five complementary procedures) at 14.8 months (range, 10-45), and poor in two (nonunion at last follow-up). Among the fibular grafts that healed, primary healing of the distal end was noted in all cases, but not for the proximal end. Significant transplant hypertrophy was noted in 62% of patients, measured at a mean 77.1% (range, 25%-128%). Complications were skin necrosis (n = 2), nonunion (n = 4, three aseptic and one septic), disassembly (n = 3 with two transplant fractures), and spontaneous fracture that healed (n = 5, all but one treated orthopedically). There were four donor-site complications: retraction of the hallux flexor (n = 3) and regressive paresis of the common fibular nerve (n = 1).

Discussion

The rate of healing in this series was similar to earlier reports. Healing was always achieved for the distal focus but not for the proximal focus, which receives its blood supply from a branch of the anterior tibial artery that is not harvested. The defective blood supply can thus hinder bone healing. It is necessary to spare the proximal quarter of the fibula or harvest a bipediculated graft. The rate of graft hypertrophy was also similar, as was the rate of complications. The MSTS score was lower due to the poor results obtained with resection-arthrodesis of the knee joint. Graft fractures and aseptic nonunion are the most common complications but septic complications are more serious and can threaten graft survival. Complications at the donor site are exceptional.

Conclusion

Long bone reconstruction using an autologous vascularized fibular graft is a reliable technique providing satisfactory functional results. Complications can be prevented by making solid fixation and using a corticocancellous graft, creating a favorable osteoinducing environment. A massive allograft is another solution providing good immediate mechanical stability.

Keywords: Vascularized fibular graft , bone reconstruction , tumor resection , children , adolescent , nonunion , fibular vascularization , bone healing


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Vol 93 - N° 6

P. 555-563 - ottobre 2007 Ritorno al numero
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