The role of mechanical stimulation in the enhancement of bone healing
- PMID: 33041020
- DOI: 10.1016/j.injury.2020.10.009
The role of mechanical stimulation in the enhancement of bone healing
Abstract
The biomechanical environment plays a dominant role in the process of fracture repair. Mechanical signals control biological activities at the fracture site, regulate the formation and proliferation of different cell types, and are responsible for the formation of connective tissues and the consolidation of the fractured bone. The mechanobiology at the fracture site can be easily manipulated by the design and configuration of the fracture fixation construct and by the loading of the extremity (weight-bearing prescription). Depending on the choice of fracture fixation, the healing response can be directed towards direct healing or towards indirect healing through callus formation. This manuscript summarizes the evidence from experimental studies and clinical observations on the effect of mechanical manipulation on the healing response. Parameters like fracture gap size, interfragmentary movement, interfragmentary strain, and axial and shear deformation will be explored with respect to their respective effects on fracture repair. Also, the role of externally applied movement on the potential enhancement on the fracture repair process will be explored. Factors like fracture gap size, type and amplitude of the mechanical deformation as well as the loading history and its timing will be discussed.
Keywords: Bone; Fracture; Fracture healing; Fracture repair; Interfragmentary movement; Strain, Biomechanics, Stimulation.
Copyright © 2021 The Authors. Published by Elsevier Ltd.. All rights reserved.
Conflict of interest statement
Declaration of Competing Interest All authors have significantly contributed to the work and the writing of the manuscript. Peter Augat is member of the Research Committee of the Osteosynthesis and Trauma Care Foundation. None of the authors has to declare any additional conflict of interest.
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