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. 2011 Feb:25 Suppl 1:S4-7.
doi: 10.1097/BOT.0b013e318207093e.

Biomechanical principles and mechanobiologic aspects of flexible and locked plating

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Biomechanical principles and mechanobiologic aspects of flexible and locked plating

Lutz Claes. J Orthop Trauma. 2011 Feb.

Abstract

The goal of minimally invasive surgery in extramedullary internal fixation has led to the development of flexible plates, bridging plates, and locked internal fixators. The change from conventional compression plates to these new implants, however, resulted in different biomechanics of fixation and different mechanobiologic processes for fracture healing. The aim of a flexible fixation is the stimulation of fracture healing by callus formation. Fracture healing follows mechanobiologic rules based mainly on interfragmentary strain, which is dependent on the stability of the fixation construct and the type of fracture. Knowledge of the mechanobiologic processes and the factors influencing the stability of fracture fixation are necessary for the surgeon to choose the correct technique for fracture fixation. Problems in the selection of the correct technique and limitations with the available implants as well as possible future developments are discussed.

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