Dynamic Stabilization of Simple Fractures With Active Plates Delivers Stronger Healing Than Conventional Compression Plating

J Orthop Trauma. 2017 Feb;31(2):71-77. doi: 10.1097/BOT.0000000000000732.

Abstract

Objectives: Active plates dynamize a fracture by elastic suspension of screw holes within the plate. We hypothesized that dynamic stabilization with active plates delivers stronger healing relative to standard compression plating.

Methods: Twelve sheep were randomized to receive either a standard compression plate (CP) or an active plate (ACTIVE) for stabilization of an anatomically reduced tibial osteotomy. In the CP group, absolute stabilization was pursued by interfragmentary compression with 6 cortical screws. In the ACTIVE group, dynamic stabilization after bony apposition was achieved with 6 elastically suspended locking screws. Fracture healing was analyzed weekly on radiographs. After sacrifice 9 weeks postsurgery, the torsional strength of healed tibiae and contralateral tibiae was measured. Finally, computed tomography was used to assess fracture patterns and healing modes.

Results: Healing in both groups included periosteal callus formation. ACTIVE specimens had almost 6 times more callus area by week 9 (P < 0.001) than CP specimens. ACTIVE specimens recovered on average 64% of their native strength by week 9, and were over twice as strong as CP specimens, which recovered 24% of their native strength (P = 0.008). Microcomputed tomography demonstrated that compression plating induced a combination of primary bone healing and gap healing. Active plating consistently stimulated biological bone healing by periosteal callus formation.

Conclusions: Compared with compression plating, dynamic stabilization of simple fractures with active plates delivers significantly stronger healing.

Publication types

  • Comparative Study
  • Evaluation Study

MeSH terms

  • Animals
  • Bone Plates*
  • Bone Screws
  • Equipment Failure Analysis
  • Fracture Fixation, Internal / instrumentation*
  • Fracture Fixation, Internal / methods*
  • Fracture Healing*
  • Prosthesis Design
  • Sheep
  • Tibial Fractures / diagnostic imaging*
  • Tibial Fractures / physiopathology
  • Tibial Fractures / surgery*
  • Tomography, X-Ray Computed
  • Treatment Outcome