Abstract
Objective: Background: Case Report: Conclusions: Unusual setting of medical care In this case report, an alternative way of treating Gustillo-Anderson IIIB type fractures with severe soft-tissue damage is provided for cases where, for various reasons, it is not possible to close a soft-tissue defect with a flap. An artificial deformity-creating technique was applied for a patient with a right distal tibial open fracture (Gustillo IIIB type) with complete tibial cartilage and bone loss of 10 cm and severe soft-tissue defect after high-energy trauma. This technique includes damaged limb shortening, translation, angulation, and rotation for closure of soft-tis-sue defects using orthopedic hexapod and bifocal bone transport without need for plastic surgery. Because of the timely planning and application of the orthopedic hexapod for the artificial deformity correction, the final alignment of the limb was close to the physiological standard and had good functional outcomes. Despite the extremely severe shortening and acute angles, the total treatment time was only 75 weeks. At the 1-year follow-up after treatment completion, the patient had good functional outcomes with the 36-Item Short Form Survey score: general health, 80%; physical functioning, 85%; and social functioning, 100%. In conclusion, we show that the artificial deformity-creating with subsequent orthopedic hexapod application and lengthening of a limb is a robust method that can be applied even for the treatment of severe open fractures with significant soft-tissue damage and bone loss, which can be performed outside high-level trauma hospitals and has good clinical outcomes without significant complications.
Original language | English |
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Article number | e934788 |
Number of pages | 9 |
Journal | American Journal of Case Reports |
Volume | 23 |
Issue number | 1 |
DOIs | |
Publication status | Published - 2022 |
Keywords*
- Ilizarov Technique
- Open Fracture Reduction
- Tibial Fractures
Field of Science*
- 3.2 Clinical medicine
Publication Type*
- 1.1. Scientific article indexed in Web of Science and/or Scopus database