Evaluation of distal tibial fractures with soft tissue injury treated using locking plate as an external fixator: a prospective study
DOI:
https://doi.org/10.18203/issn.2455-4510.IntJResOrthop20262906Keywords:
AOFAS score, Distal tibial fracture, External fixation, Locking plate, Supercutaneous plating, Soft tissue injuryAbstract
Background: Distal tibial fractures are frequently associated with significant soft tissue injury because of the subcutaneous location and limited vascularity of the distal tibia. Management of these fractures remains challenging, as conventional internal fixation may increase the risk of wound complications, infection, and delayed healing. The use of a locking plate as an external fixator, also known as supercutaneous plating, has emerged as a minimally invasive alternative that provides stable fixation while preserving soft tissue integrity. Objective was to evaluate the clinical, functional, and radiological outcomes of distal tibial fractures associated with soft tissue injury treated using a locking plate as an external fixator.
Methods: This prospective hospital-based study included 32 patients with distal one-third tibial fractures associated with soft tissue injury treated between October 2022 and March 2024. Closed fractures with significant soft tissue compromise and open fractures up to Gustilo-Anderson type IIIA were included. Patients were followed up at regular intervals with clinical and radiological assessment. Outcome measures included time to fracture union, time to full weight bearing, complications, and functional outcomes assessed using the American Orthopedic Foot and Ankle Society (AOFAS) ankle-hindfoot score and visual analog scale (VAS).
Results: The mean age of the patients was 42.9±11.4 years. Road traffic accidents were the most common mechanism of injury. Eighteen patients had open fractures. The mean time to radiological union was 15.66±2.25 weeks. Full weight bearing was achieved at a mean of 14.22±2.52 weeks, and the mean time to plate removal was 19.25±2.45 weeks. Pin tract infection occurred in 6 patients and was superficial in all cases. The mean postoperative AOFAS score was 93±2.59, indicating excellent functional outcome.
Conclusions: Locking plate used as an external fixator is a safe, effective, and minimally invasive technique for the management of distal tibial fractures associated with soft tissue injury, providing excellent functional and radiological outcomes with low complication rates.
References
Helfet DL, Koval KJ, Pappas J, Sanders RW, DiPasquale T. Intra-articular pilon fractures of the tibia. Clin Orthop Relat Res. 1994;(298):221-8.
Lee YS, Chen SW, Chen SH, Wang CJ. Stabilisation of the fractured fibula plays an important role in the treatment of pilon fractures: a retrospective comparison of fibular fixation methods. Int Orthop. 2009;33:695-9.
Petrisor BA, Bhandari M, Schemitsch E. Fractures of the tibia and fibula. In: Rockwood CA Jr, Green DP, Bucholz RW, Heckman JD, eds. Rockwood and Green’s Fractures in Adults. 6th edn. Philadelphia: Lippincott Williams and Wilkins; 2006:2084-2085.
Collinge C, Protzman R. Outcomes of minimally invasive plate osteosynthesis for metaphyseal distal tibia fractures. J Orthop Trauma. 2010;24(1):24-9.
Solanki MR, Patil SR, Chanchpara GC, Alwani PL, Pawar JB. A comparative study of plating versus nailing in distal tibia metaphyseal fracture. Int J Orthop Sci. 2017;3(2):86-9.
Hasenboehler E, Rikli D, Babst R. Locking compression plate with minimally invasive plate osteosynthesis in distal tibial fractures: a retrospective study of 32 patients. Injury. 2007;38(3):365-70.
Lau TW, Leung F, Chan CF, Chow SP. Wound complications of minimally invasive plate osteosynthesis in distal tibial fractures. Int Orthop. 2008;32:697-703.
Leonard M, Magill P, Khayyat G. Minimally invasive treatment of high-velocity intraarticular distal tibial fractures. Int Orthop. 2009;33:1149-53.
Hedin H. Surgical treatment of femoral fractures in children: comparison between external fixation and elastic intramedullary nails. Acta Orthop Scand. 2004;75:231-40.
Ma CH, Wu CH, Tu YK, Lin TS. Metaphyseal locking plate as a definitive external fixator for treating open tibial fractures: clinical outcome and a finite element study. Injury. 2013;44:1097-101.
Kerkhoffs GM, Kuipers MM, Marti RK, van der Werken C. External fixation with standard AO plates: technique, indications, and results in 31 cases. J Orthop Trauma. 2003;17:61-4.
Kloen P. Supercutaneous plating: use of a locking compression plate as an external fixator. J Orthop Trauma. 2009;23:72-5.
Xu D, Wu J, Chen YH, Guo W, Luo P. Supercutaneous locking plate fixation in orthopedics: a systematic review based on clinical studies. SM J Trauma Care. 2017;1(1):1004.
Tulner SA, Strackee SD, Kloen P. Metaphyseal locking compression plate as an external fixator for the distal tibia. Int Orthop. 2012;36:1923-7.
Arfa A, Mortazavi SMJ, Firoozabadi MJ, Zarei M. External fixation by locking plate as a definitive treatment of distal tibial metaphyseal fractures. J Orthop Spine Trauma. 2017.
Sriram S, Jajee N, Dhanraj P, Sai SK. Functional outcome of tibial fractures in children treated by supracutaneous locking plates. Int J Orthop. 2021;7(1):738-41.
Hidayat L, Triangga AF, Cein CR, Irfantian A, Rahayu BF, Resubun AP, et al. Low profile external fixation using locking compression plate for open tibia fracture grade IIIA: a case series. Int J Surg Case Rep. 2022;93:106882.
Janssen SJ, Kloen P. Supercutaneous locking compression plate in the treatment of infected nonunion and open fracture of the leg. Arch Orthop Trauma Surg. 2021.
Yildirim C, Muratoğlu OG, Ordu S, Ceylan H, Muslu DC, Atlihan D. Biomechanical comparison of three surgical methods in distal tibial metaphyseal fractures: an animal study. Ulus Travma Acil Cerrahi Derg. 2023;29(10):1091-7.
Tscherne H, Gotzen L. Fractures with Soft Tissue Injuries. New York: Springer; 1984.
Gustilo RB, Anderson JT. Prevention of infection in the treatment of open fractures of long bones. J Bone Joint Surg Am. 1976;58:453-8.
Orthopedic Trauma Association Committee for Coding and Classification. Fracture and dislocation compendium. J Orthop Trauma. 1996;10:1-154.
Dougherty PJ, Kim DG, Meisterling S, Wybo CD, Yeni YN. Biomechanical comparison of bicortical versus unicortical screw placement of proximal tibia locking plates: a cadaveric study. J Orthop Trauma. 2008;22:399-403.
Stoffel K, Dieter U, Stachowiak G, Gächter A, Kuster MS. Biomechanical testing of the LCP: stability in locked internal fixators. Injury. 2003;34:11-9.
Kitaoka HB, Alexander IJ, Adelaar RS, Nunley JA, Myerson MS, Sanders M. Clinical rating systems for the ankle-hindfoot. Foot Ankle Int. 1994;15:349-53.
Raja S, Imbuldeniya AM, S G, Groom G. Difficulties encountered removing locked plates. Ann Royal Coll Surg Engl. 2012;94(7):502-5.