Biomechanical analysis comparing titanium elastic nails with locked plating in two simulated pediatric femur fracture

Scott E Porter1, George R Booker, Douglas E Parsell

  • 1Department of Orthopaedic Surgery, Greenville Hospital System, University Medical Center, Greenville, SC 29605, USA. sporter@ghs.org

Insights

Locked plating offers superior biomechanical stability for pediatric femur fractures compared to flexible intramedullary nailing. This study supports plating as a viable option for unstable pediatric femur fracture patterns.

Area of Science:

  • Orthopedic surgery
  • Pediatric orthopedics
  • Biomechanical engineering

Background:

  • Pediatric femur fracture fixation methods are influenced by patient size and weight.
  • Limited biomechanical data compares flexible intramedullary nailing and locked plating.
  • This study addresses the need for comparative data on fixation stability.

Purpose of the Study:

  • To compare the mechanical stability of unstable pediatric diaphyseal femur fractures.
  • To evaluate fixation with titanium flexible intramedullary nails versus titanium locking plates.
  • To provide biomechanical evidence for treatment choices in pediatric femur fractures.

Main Methods:

  • Synthetic femur models were used to simulate unstable pediatric femur fractures.
  • Fractures were stabilized using either titanium elastic nails or titanium locking compression plates.
  • Axial and rotational mechanical testing, including modulus and yield load determination, was performed.

Main Results:

  • Locked plating demonstrated significantly higher axial compressive modulus for both comminuted (1.63 GPa vs 0.466 GPa) and oblique (0.657 GPa vs 0.326 GPa) fractures.
  • Plate constructs showed a higher yield load to failure compared to elastic nails in both fracture types.
  • P-values were <0.0001 for oblique fractures and <0.001 for comminuted fractures, indicating statistical significance.

Conclusions:

  • Locked plating provides superior biomechanical stability over elastic intramedullary nailing for pediatric femur fractures.
  • Submuscular plating is a viable alternative for treating length-unstable pediatric femur fracture patterns.
  • Biomechanical evidence supports the use of plating techniques in this patient population.
Abstract

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