Msami Evarist Ngowi, Billy Haonga, Revocatus Benard Luziba, Bryson Mcharo Ikoshi, Emmanuel Roagthe Lema, Edmund Ndalama Eliezer, Patricia Rodarte, Mayur Urva, Jamieson O'Marr, John Ibrahim, Coleen Sabatini, David Shearer, Saam Morshed, Patrick F Curran
This study is the first prospective RCT assessing intramedullary K-wire versus TEN for the treatment of pediatric femoral shaft fractures in Africa. No statistically significant difference was detected in malunion, radiographic union, functional outcomes, or patient/parent reported outcome measures between groups. Although this study did not achieve its target sample size and therefore cannot formally claim non-inferiority, non-inferiority was not established. A trend toward higher reoperation rates in the K-wire group (9% vs. 0%) warrants evaluation in adequately powered future trials. Intramedullary K-wires may be considered as an alternative implant when TEN is unavailable, but the current evidence is insufficient to support a recommendation of equivalence.
BACKGROUND: Femur fractures are a common cause of disability of children in low-and middle-income countries (LMICs). The introduction of flexible intramedullary nails improved the care of children with diaphyseal femoral fractures. Application of intramedullary nails is challenging in resource-limited settings due to implant cost and availability. Intramedullary Kirschner-wire (K-wire) fixation has been proposed as a low-cost alternative option for pediatric femur fractures. This study examines the non-inferiority of intramedullary K-wire to titanium elastic nail (TEN) for diaphyseal pediatric femur fractures.
METHODS: A randomized clinical trial was performed at a tertiary orthopaedic center in Dar es Salaam, Tanzania. Children (5-14 years) with acute diaphyseal femur fractures were randomly assigned to intramedullary K-wire or TEN fixation. The primary outcome was malunion. Secondary outcomes included modified RUST score (mRUST), PedsQL questionnaire, squat depth, and complications.
RESULTS: Of the 61 patients (33 K-wire, 28 TEN), 83% completed 1-year follow-up. This trial enrolled 61 of 160 planned patients (38% of target enrollment) and was therefore underpowered to establish non-inferiority. There were 5 cases of malunion (3 K-wire, 2 TEN; Risk difference 0.034, 95% CI -0.122-0.191, P = .52). No statistically significant difference was detected in mRUST score at 1-year follow-up (K-wire 16.00 vs. TEN 16.00, P-value = .38). Reoperation was required in 3 K-wire patients (9.1%) versus 0 TEN patients (P = .145). There were no statistically significant differences in PedsQL, squat depth, or clinical complications between groups.
CONCLUSIONS: This study is the first prospective RCT assessing intramedullary K-wire versus TEN for the treatment of pediatric femoral shaft fractures in Africa. No statistically significant difference was detected in malunion, radiographic union, functional outcomes, or patient/parent reported outcome measures between groups. Although this study did not achieve its target sample size and therefore cannot formally claim non-inferiority, non-inferiority was not established. A trend toward higher reoperation rates in the K-wire group (9% vs. 0%) warrants evaluation in adequately powered future trials. Intramedullary K-wires may be considered as an alternative implant when TEN is unavailable, but the current evidence is insufficient to support a recommendation of equivalence.
KEY CONCEPTS: (1)Intramedullary K-wire fixation showed no statistically significant difference in rates of malunion, radiographic union, and functional outcomes compared to titanium elastic nails for pediatric diaphyseal femur fractures in a low-resource setting; however, the study was underpowered and non-inferiority was not formally established.(2)Two independent randomized controlled trials, conducted on two different continents, have found no statistically significant difference in outcomes between intramedullary K-wires and titanium elastic nails for pediatric femoral shaft fractures, at a fraction of the implant cost, supporting their role as a viable alternative in resource-limited settings.(3)Although this study did not achieve its target sample size and therefore cannot formally claim non-inferiority, the results are consistent with K-wires being a safe and effective alternative to titanium elastic nails.(4)The substantial cost advantage of K-wires supports their use as a strategy to expand access to operative fixation in low- and middle-income countries.(5)Patient-reported and functional outcomes, including PedsQL quality-of-life scores and squat depth, showed no statistically significant difference between K-wire and titanium elastic nail groups at one-year follow-up; however, the study was underpowered, and these findings should be interpreted accordingly.
LEVEL OF EVIDENCE: Level I.